1 >B1 Mouse B1 repetitive sequence - a consensus.
2 GCCGGGCATGGTGGCGCACGCCTTTAATCCCAGCACTTGGGAGGCAGAGGCAGGCGGATTTCTGAGTTCGAGGCCAGCCTGGTCTACANAGTGAGTTCCAGGACAGCCAGGGCTACACAGAGAAACCCTGTCTCG
3 >B2 Mouse B2 repetitive sequence - a consensus.
4 GGGCTGGAGAGATGGCTCAGTGGTTAAGAGCACCTGACTGCTCTTCCAGAGGTCCTGAGTTCAATTCCCAGCAACCACATGGTGGCTCACAACCATCTGTAATGAGATCTGATGCCCTCTTCTGGTGTGTCTGAAGACAGCTACAGTGTACTTACATATAATAAATAAATAAATAAATAAATCTTAAAAAAAAAAAAAAGAAAGAAAAA
5 >BC1 BC1 (identifier) repetitive sequence - a consensus.
6 GGGGTTGGGGATTTAGCCAGTGGTAGAGCGCTTGCCTAGCAAGCGCAAGGCCCTGGGTTCGGTCCTCAGCTCTTGG
7 >BGLII Mouse Bgl II repeat fragment (clone 51B).
8 TGTTAGGGATACTTGGGGCTAATTATATTTGATGTTAATTCTGTTCTCCTGTGAGTGGTAGTGAACAAGGAATGAGTCAGCACCCAGGTGATTCCCTGTAAACCTGCTTCCCACCTTAATTTGTAAAATAAAGGAGAGCTGATGATTGGGCAGATAAAAGGTAAGGTGGAGTGGAGGGTGGGGGATGAAGGAGAAAGTGGAAGAGGAAGAGAATGCAGAGGAGGAGGAAGACAAAGAAAAGCAGAGCAGAAGCACTTGGCCAGGAGAAACTGCAAGTTCTAAGGGGTCTCATAAGCTGTGGAAGATGGTAATGTAGCGATAGATCT
9 >CCL1 Guinea-pig LINE repeat sequence.
10 AAGCTTTTTAACAAGATGAGCTTCCAGTTGTTGATTTTTTGTGAACGTTTCTATGCAACAGAAGTTTTGTTCATGAAGTCTTTTGCCTATACCAATGTCTTCAAGAGTTCTACCTAGTCTATCTTCCAGCAGGTTTAACATTTCTGTTTTAATACTTAGGTTTTGATTCATTTCAATTTTAGTTTAGAGTGTGGTGAAAGATGTGGGTATAATTTTAATCTTCAGCATGTGGAAAGCCAATTTTTCCAGCACCATTTACTAAAGAGGCTTTTTTCCAGCAAAGGTGTTTGGCTTTTTTGTAAAAAATAAAGGGGCTGAGTGTGTTGGAGTTGTCTCTGTATCTTCTAACCTGTTCCACTATTCCTTGGGTCTGTTTTTTTGCCAGTACCATGCTGTTTTTATCACAGTAGCTTTATGGTATAATTTCAAGTCAGGGTGGGTGATGCCCCCTTCTTGGTCTTTGTTGCCCATAATTTCCTGTACTATTATAGGTCTCTTCTGGTTCCAAATGAATTTTATAATTTCTCTAATTCTGCAAGATATGCTCTTGGAATTTTAATCAGAATTGCATTAAATCTGTATAATGATTTTGAAAGCATGGCCATTTTCACTATTGGTTCTTCCTACTCAAGAGCAAGGGATTTCTTCCCATTTTCTGATATCCTATTCAATCTCCTTA
11 >CPL1 Conilurus penicillatus (LxCPx2) LINE 1 repeat element, 3' UTR.
12 GGGGATCCATCCCATATGCTGACACCGAGCCCAGTCACTATTGCTGATGCCAAGAACTGCTCGCTGACAGGAGCCTGATAAAGCTGTCTCCTGAGAGGCTCTGCCAGAGCCTGACAAATACAGATGCAAATGCATGCCACCAAACGTCAGACTGAGCACAGGTCCACATTGGAGGAGTTTAGGGAAGGACTGAAGGAGCTGAAG
13 >DI2 Mouse repetitive dna sequence, di-2 family.
14 CACAAAACATGCACACAAGCATTTATTCATTTTCTTCGCTGCGTAGCCTGGCGTTGGGATTGGTGACTCTGATGGCCAGATGTGCTGCTCTTTCTATGATGGCTTTTCGGTTCTTAGAGGACACATTGTGTGCAATCTCAGCACAGTAAAATTTGTTGCACATCAGCAGCACCTCCAGCTCCTTGACATTGTGGACCAGGAACTTTCGGAAGTCGCTGGGCAGCACTGCTTGGTTTTCTTGTTGCTCCTCCCAAAAACGACGTTGGGCATCAGGACTGGCCCTTGAACCTTCTCCACACCCTGTTGTCAATGCCTCTGGGTTTCCGCCAGTTTCGCTTAATTTTCACATATCAGTCTGACTGGTGTCTGATGAACTTCTTGGTCCTCTTTTTGACAATCTTGGGCTTCACCAGAAGCCGGAGGGCAGCCATGATGCCGCAAAACAGATGGCAGCCACCTTGTAGGCAGTGCCGAGGAAGAAGCAACACACATTATTTTTAACCAGGTAAATGTTAATTCATCATTTACTAATCTTTCATGAATTCTCTGCTATAAACTAAATGTGTGCCTTCAGTGCTATTCCTACCAGAGCCTCATATGTTGAAAACCCTAATCTCCAATGTAATGGGGCTTGAGGTGGGCCCTTTGGGAAATAGGATTACATAAGGGTTGGAGCTACAGTGATGGGGTTAGGCATTTCATGAAAG
15 >I Rat satellite I repetitive sequence.
16 TGGTGATTTCGGTTAGTTCCAAATAGGCCGCAGTAGTAATAAGTGGACTGTCGGGATATAGAAAAATTTTACGAATGGAATCAAAATTTCTAGGCGAATTCAGTGAGTTCCCAATGGACATGCTTGTATTAGTGTGCTTTTAGATATATAGCAACATTTTAAGGAACGGAATCTAAGTATCATGGTGAATTCAGTAGTTTCGCAATAGGATTAGCATGTAATAAGCTTGTTATTCAAGATAAAGCAACGTTTTTACGAATGAAACAATGTATCTTTGTGAATTCAGTTAGTTCCAAGTAGCAGGCCCTTTTAATATGTGTACTTTTAAAGATTTATCAAAATATGGTGAGCCGAATCTGATGAACATGGTGAATTCGGTTAGATTCCAATAGGCC
17 >LTRIS Mouse LTR-IS sequence.
18 TGAAAGATCCTGGCATAATGTAAAAGGACACAGAAGCCCTGAAATTGGCAAGATAGATGTCAGTGTTAGCAGAACTAGCTTCACTGATTTAGAAAAATAGAGGTGCACAATGCTCTGGCCACTCCTTGAACCTGTGTGTCTGCCAATGTTCTGACCAGGTGTGTGCCCATTGCTGCACCTTCATTAGACTCTTTCCTTGTACCCCTCCCATACCCATTTCTTGAGAATAGACATTGTTTAGATCTGGAAATCTCCTACTCTCCCCCTTCTCCTTTCCCCCCTGAGGGCCTATAAAAACTGGGAACTCTTTCCCCTCGAGGACGACTCCTCTACCCCTGCGTGGGATATGAGTCGTACCCAGAGCTCTGGCTTTCCCCGAATAAAGCCTCATGTGGTTTGCAACAAGCTCGGTCTGTCATGAGTTCTTGGGTGTCCGCTACTGTCATGAGTTCTTGGGTGTCCGCTACTGTCCTGAGGCCTGAGCGAGGGGCTCCTCTCGGAGTCTTTCA
19 >MAIAPLTR Syrian hamster intracisternal A particle (IAP) LTR.
20 TGTGAGGAGCCGCCCTCGCTATCGCTATTGCCGTTAGAAGATGGCGCTGACATCCACTGTCAGTTGGAGTTAACTGTCGCTGTCAGTTGGAGTTAACTGTCGCTGTCAGTTGGAGTTAACTGTCGCTGTCAGTTGGAGTTAACCGTTTAAACTGTGCCTCTCCCGTGACGTCATCTGGGGTGATGTGCAAACCACCAATCCCGGCTCTACACATCTCACTCGGAGCTCCTAGGCTTATATAAGGGGCTGGGTTTCTTAGCTTGGGGTCTCCCTCTAAGAAGCTGATCATCTATGTCTCAAGATGCATTAAAGCTTTACTGCAGAAGGATCCGAGTGTTCTGCGTCGTTCTTGCTGGCGAGACGGTAGCGCGGGACA
21 >MALTR1 Hamster proviral LTR encoding pp60v-src protein.
22 TGTAGTCTTATGCAATACTCCTGTAGTCTTGCAACATGCTTATGTAACGATGAGTTAGCAATATGCCTTACAAGGAAAGAAAAGGCACCGTGCATGCCGATTGGTGGTAGTAAGGTGGTACGATCGTGCCTTATTAGGAAGGTATCAGACGGGTCTAACATGGATTGGACGAACCACTGAATTCCGCATCGCAGAGATATTGTATTTAAGTGCCTAGCTCGATACAATAAACGCCATTTTACCATTCACCACATTGGTGTGCACCTGGGTTGATGGCCGGACCGTCGATTCCCTAACGATTGCGAACACCTGAATGAAGCAGAAGGCTTCATT
23 >MAPMS33 Golden Syrian Hamster repetitive DNA pMS33.
24 TCTAATTTTAATGCATGGTGGTCTGATAAGATACAGGGGGTTATACCAATTTTTTTGTATCTGTGAAGATTAGAATGTTTCCTATTATGTGGTCAATTTTAGAGAAGGTTCCATGTGGTTCCTAGAAGAAGGTATATCCTTTGTATTGGGGTGGAATGTTGTATAGATATCTGTTAAACCCAGTTGGGCTATAACTTCTTTTTTTTTTTAGGCATATTATTTTTTTTTTTATTTTTCCATTTTAAATTTAGATAAGAAACAAGGTTGCTTCACAAGTCAGTTCGAGGTCCTCTCCCTTTACCCTCCCCTCCTCCCGTAGTCCGCCCCCCATCCCCCCCCGTTATCCCCTCATTCCCCCAGGGAGGGTGAGGCCCTCCATGGGGGTGTTCCATAGTCTGTCATTTCATATAGGGCAGGGCCTAGACCCTTCCCCAAGAGTTCAGGGTGAGAGTGCACCTCACATTGTTCTATGGGAGTCCAGAGTCCGTGTGTATACTTGGGATGGGTACTGATCTGATCTGCTGTCCAAGGCTCAATAGATTACCTAGGCCTACTCACTGACACCCAGATTCAGGGGGTCTTGATCAGTCCCATGCTGGATTCCCAGGCTGATGCCTGGGATTCAAGAGTTAAGCTTTGTCTGGTCAGCTGTTTCTGGGGGTTAAACCAGCCCAGTCTTAAACCCTTTGATCATCAGTCCTCCCTCTCTGATACTGGCTTTCTTAGAGTTCAGCTCAGTACTTAAGCAGCCACTAAATGAAGTTTCTGTTTCCCAGAGA
25 >MCMREP Murine middle repetitive DNA.
26 GAATTCCAAGGTAAATGCTGATACACAATGCCATATTGAGGTAAGTGTTGTTATCTGACACTGGATAGAAAATTGATGTCTGAGATCCTACCCACCACAGGAAGTTCTGTTGATGTCCCTGATGCATTCATGTAGCTCCTGTTGTGAAACATGTATGGTATTTTCATTATTATGATTCTACCTGTAAAAAAAAAAAGAAAACTATGTTGATGCCAGTGATGTATGCTGTGATCAGCAATTTTGATGGAGTCCAAGTTTGATTTTATTCCTATTGCTAATGGAAACCTAGTGGTGGCTATGATCTGTGCTACTGCTTGAAAATATAATGAACCTCAAGGTCCACAATAATGCCCAAGTTTATTTTGAGGGAAGTATTCTTATCTGGTTCTGGAGATCAGATTAAAATCTGGAAACCTACCTGCCACAGGATCATCAGTTGGTATTTCTCATGTATGTGTATAGCTCACAATATCTAACATGTGATAAATATTGATAATTGTGATCCTGCTGGAAACCTGAAGCTATTTTGAAGTCAGTGATGCAGCTATGACCAGCAATCATGGTGGGGTCTTTTATCCCTGTTGCTAATTGAGACCCTGGTGATGGCTATGATCTGTGTTGTTTCTTGAGAACCTGATGAATTC
28 AATGGGCTTGAATTCATTGCAGACATTCACTGGTACCCTGTTTCCTTATCTGACCTGCTTTAACTGGGTAAGCTTATGAAAAGTCTGGTGTAGAAGAGAAAGGGGTAATAACCTGTG
29 >MIF Mouse repetitive sequence C37 of the MIF family
30 TAGTAAAAGCTTTAGGTCAGGCATGGTGATTCCACCAGAGGTTCTTTTATCCTTGAGAAGACTTTTTGCTATCCTAGGTTTTTTGTTATTCCAGATGAATTTGCAAATTGCTCCTTCTAATTCGTTGAAGAATTGAGTTGGAATTTTGATGGGGATTGCATTGAATCTGTAGATTGCTTTTGGCAAGATAGCCATTTTTACAATGTTGATCCTGCCAATCCATGAGCATGGGAGATCT
31 >MIR mammalian-wide interspersed repeat (MIR) - a consensus
32 ACAGYAYAGCATAGTGGTTAAGAGCACGGRCTCTGGAGCCAGACTGCCTGGGTTCGAATCCCGGCTCTGCCACTTACTAGCTGTGTGACCTTGGGCAAGTTACTTAACCTCTCTGTGCCTCAGTTTCCTCATCTGTAAAATGGGGATAATAATAGTACCTACCTCATAGGGTTGTTGTGAGGATTAAATGAGTTAATAYATGTAAAGCGCTTAGAACAGTGCCTGGCACATAGTAAGCGCTCAATAAATGTTRGYTATTATT
33 >MMCHYREP Mus musculus (clone C573) chromosome Y DNA repeat region.
34 GAATTCTGTGGTTAAATTGTTTTGAAATGTCAGTCATGGGTCTTAGATGAAGGCTTTGGTCCACAGTACAATGTTCATAGGTAGTACAATATGCACTCTGAAAAGTGATTGGAACCTGAGGGCTTTAATCAATGAGTTAATCAACCAATGGATATACAAGGAATGGGTAAGAAACTTGTAAATGAACGCGGTCATTTGGACATGTCTTCAAAGCTGTTTATTGTCTTTGGTCCCTTCTTGTGTTAATGCTGACTAGCTGCCAATAATTTGAACAATTGTGCTGCTTCATGCCCCTTTCATATTCATGTGATCATGGATCCTTCTTTCATTTGTGATAGTAACATGTCAGGTTCAGAGGAAACATTGCTTAATTCTTTAATTTTTTTTTCTAGAAACGGCATGCTAAGTGTAGAACCAATGTTACCTAGTTGTTGTAGTTGGAATATTCAGCCATGGTATCTGTTGTCTTTGAGACTCAAGAACTTTGCTGCTACCCACACCACTGGTCTTTCTTCTGAATTC
35 >MMLTR1 Mouse long terminal repeat.
36 TGAGAGAAAGATGAAATTTTAGGACCTACAATTCATGTAAAATATACCAGAAAGTTGTTTGTGAGCCTAAGAGGCTGCCTGAGACTGAGAACAAAGAGGAACAGGCCCAGGCATGTCCTAGCAGGCCGGTCGTTAAGGTATTCCTAAGAACAGCTAAAGATCATAAGATAAAAGATCCTAAGATCATAAAGATAAAAAAAGAGTGCAAGGACAGAACAAGGCTATCTCAGCTTAGTCAATACCATCTGGCCCAGCACCTCCCTCTGCCCACTGACCTTCTGACTCAGTTCAGAGTCATATATTAACCAGATGTTCCAAGCACCCAGCCCTCAGACTTCCTGATACCCCGATCTATACGTACACTTTTACTAGTGTATAACTATTCTGTTGAAGTTTAAATTGTCCAATTGTGTGAAACCACACCAATTCCTTCCCCAGCCCCAGACCCTTTTCTATAAAAACCCCTAGCTTTCAAGCCTCGAGGCCGACTACCGCTGTCCCCTATGGGAGATATGTATAGGCCCGGAGCTCCGTCATTAAACTACCTCACGTGTTTGCATCAAGACGGTCTCTCGTGATTCTTTGGGTGCACGCCGAATCGGGAATGGGGGTTTCCCCACTAGGCTCTTTCA
37 >MMETNLTR Mouse LTR (E.Tn sequence).
38 TGTAGTCTCCCCTCCCCTAGCCTGAAACCTGCTTGCTCAGGGGTGGAGCTTCCTGCTCATTCGTTCTGCCACGCCCACTGCTGGAACCTGCGGAGCCACACACGTGCACCTTTCTACTGGACCAGAGATTATTCGGCGGGAATCGGGTCCCCTCCCCCTTCCTTCATAACTAGTGTCGCAACAATAAAATTTGAGCCTTGATCAGAGTAACTGTCTTGGCTACATTCTTTTCTCTCGCCACCTAGCCCCTCTTCTCTTCCAGGTTTCCAAAATCGCTTTCCAGGCTAGAACCCAGGTTGTGGTCTGCTGGCCAGACACAACA
39 >MMGSAT Mouse gamma-satellite repetitive sequence.
40 GACCTGTAATATGGCGAGAAAACAGAAAATCACGGAAAATGAGAAATACACACTTTAGGACGTGAAATATGGCGAGGAAAACTGAAAAAGGTGGAAAATTTAGAAATGTCCACTGTAGGACGTGGAATATGGCAAGAAAACTGAAAATCATGGAAAATGATAAACATCCACTTGACGACTTGAAAAATGACGAAATCACTAAAAGACGTCAAAAATGAGAAATGCACACTGAAAGACCTGGAATATGGCGAGAAAACTTAAAATCACGGAACATGAGAAATACACACTTTAGGACGTGAAATATGGCAAGGAAAACTGAAAAAGGTGGAAAATTTAGAAATGTCCACTGTAGGACGTGGAATATGGCAAGAAAACTGAAAATCATGGAAAATGAGAAAAATCCACTTGACGACTTGAAAAATGACGAAATCACTAAAAGACGTGAAAAATGTGAAATGCACACTGAAGGAC
41 >MMIAPLTR1 Mouse intracisternal IAP 3' LTR.
42 TGTTATTCGACGCGTTCTCACGACCGGCCAGGAAGAACACCACAGACCAGAATCTTCTGCGGCAAAGCTTTATTCTTACATCTTCAGGAAAAGAGAGCAAGAAGCAAGAGAGAGAAGCAAGAGAGAGAGAAAAACGAAAACCCCGTCCCTCTTAAGGAGCATTCTCCTTCGCCTCGGACGTGTCACTCCTTGATTGGCTGCAGCCCATCGGCCGAGTTGACGTCACGGGGAAGGCAGAGCACAAGTAGTCATAAGATACCCTTGGCACATGCGCAGATTATTTGTTTACCACTTAGAACACAGGATGTCAGCGCCATCTTGTAACGGCGAATGTGGGCGCGGCTCCCAACA
43 >MMIAPA Repeat associated with intracisternal A particle.
44 ATTGGTGCCGAATTCCGGGACGAGAAAATCCGGGACGAGAAAAAACTCCGGACTGGCGCAGGAGGGATACCTCATTCCAGAACCAGAACTGCGAATCAAGGTTATAAGGTTCCCGTAACACAGACTGTTGAGAAGGATTCAACTGCCGAATTCAGAACTCATCAGCTGGGGAACGACGGTGATAAAGGTTCCCGTAAAGCAGACTGTTAAGAAGGATTCAACTGTATGAATTCAGAACTTTTCAGCTGGGGAACGAGGTAAGTCTGATCTTGAACTTTCTAAGGAAATTCAAGACAGTCTATCAGAAGTAAAGTGGAAAATGGCTTTACAAGTT
45 >MMIAPLTR2 Mouse intracisternal A particle (IAP) long LTR.
46 TGTTGGGAGCCGCCCCCACATTCGCCGTCACAAGATGGCGCTGACATCCTGTGTTCTAAGTGGTAAACAAATAATCTGCGCATGTGCCAAGGGTATTTCTCTACCCCATGTACTCTGCCTTCCCCGTGGCAACAACTCGGTCATGGCTGCAGNCAATCAGGGAGTGATGCGTCCTAGGCGAAGGATGATTCTCCTTAAAAGGGGACGGGGTTTCCGCCATTCTCTCTCTTGCCTGCGCTCTTGCGCTTTTGCTCTCTGGCTCTGGCTCTTGCTTCTGGCTCCTAAAGATGTAAACAATAGAGCTCGTGCTCTGCGCTCTGGCGCCTGGCGGCCTGGCGCCTGGCTCCTAAAGATGTAAGCGGGGGGGGCTTTCGTTTTTGGGGCTTGGGGCTTGCGCTCCTGGCCCCTGAAGATGTAAGCAATAAAGTTTTGCCGCAGAAGATTCTGGTTTGTTGTGTTCTTCCTGGCCGGTCGTGAGAACGCGGAGTAAGA
47 >MML1 Mouse L1 repetitive sequence.
48 AACCTACCTCTAGCCCTTCCGCTCGACTCGTGACTCGAGCCCCGGGCTACCTTGCCAGCAGAGTCTTGCCCAACACCCGCAAGGGTCCACACGGGACTCCCCACGGGACCCTAAGACCTCTGGTGAGTGGATCACAGTGCCTGCCCCAATCCAATCGCGCGGAACTTGAGACTGCGGTACATAGGGAAGCAGGCTACCCGGGCCTGATCTGGGGCACAAGTCCCTTCCGCTCGACTCGAGACTCGAGCCCCGGGCTACCTTGCCAGCAGAGTCTTGCCCAACACCCGCAAGGGTCCACACGGGACTCCCCACGGGACCCTAAGACCTCTGGTGAGTGGAACACAGCGCCTACCCCAATCCAATCGCGTGGAACTTGAGACTGCGGTACATAGGGAAGCAGGCTTCCCCGGGCTTGATCTGGGGCACAAACCCCTTCCACTCCACTCGAGCCCCGGCTACCTTGCCAGCTGAGTCGCCTGACACCCGCAAGGGCCCACACAGGATTCCACACGTGATCCTAAGACCTCTAGTGAGTGGAACACAACTTCTGCCAGGAGTCTGGTTCGAACACCAGATATCTGGGTACCTGCCTTGCAAGAAGAGAGCTTGCCTGCAGAGAATACTCTGCCCACTGAAACTAAGGAGAGTGCTACCCTCCAGGTCTGCTCATAGAGGATAACAGAGTCACCTGAAGAACAAGCTCTTAACAGTGACAACTAAAACAGCTAGCTTCAGAGATTACCAGATGGCGAAAGGCAAACGTAAGAATCCTACTAACAGAAATCAAGACCGCTCACCATCATCAGAACGCAGCACTCCCACCCCACCTAGTCCTGGGCACCCCAACACAACCGAAAATCTAGACCCAGATTTAAAAACATTTCTCATGATGATGATAGAGGACATCAAGAAGGACTTTCATAAGTCACTTAAAGATTTACAGGAGAGCACTGCTAAAGAGTTACAGGCTCTTAAAGAAAAGCAGGAAAACACAGCCAAACAGGTGATGGAAATGAACAAAACCATACTAGAACTAAAAGGGGAAGTAGACACAATAAAGAAAACCCAAAGCGAGGCAACGCTGGAGATAGAAACCCTAGGAAAGAGATCTGGAACCATAGATGCGAGCATCAGCAACAGAATACAAGAAATGGAAGAGAGAATCTCAGGTGCAGAAGATTCCATAGAGAACATCGACACAACAGTCAAAGAAAATACAAAATGCAAAAGGATCCTAACTCAAAACATCCAGGTAATCCAGGACACAATGAGAAGACCAAACCTACGGATAATAGGAATTGATGAGAATGAAGATTTTCAACTTAAAGGGCCAGCTAATATCTTCAACAAAATAATAGAAGAAAACTTCCCAAACATAAAAAAAGAGATGCCCATGATCATACAAGAAGCATACAGAACTCCAAATAGACTGGACCAGAAAAGAAATTCCTCCCGACACATAATAATCAGAACAACAAATGCACTAAATAAAGATAGAATATTAAAAGCAGTAAGGGAGAAAGGTCAAGTAACATATAAAGGAAGGCCTATCAGAATTACACCAGACTTTTCACCAGAGACTATGAAAGCCAGAAGAGCCTGGACAGATGTTATACAGACACTAAGAGAACACAAATGCCAGCCCAGGCTACTATACCCGGCCAAACTCTCAATTACCATAGATGGAGAAACCAAAGTATTCCACGACAAAACCAAGTTCACACAATATCTTTCCACGAATCCAGCCCTTCAAAGGATAATAACAGAAAAGAAGCAATACAAGGACGGAAATCACGCCCTAGAACAACCAAGAAAGTAATCATTCAACAAACCAAAAAGAAGACAGCCACAAGAACAGAATGCCAACTCTAACAACAAAAATAAAAGGGAGCAACAATTACTTTTCCTTAATATCTCTTAATATCAATGGACTCAATTCCCCAATAAAAAGACATAGACTAACAGACTGGCTACACAAACAGGACCCAACATTCTGCTGCTTACAGGAAACCCATCTCAGGGAAAAAGACAGACACTACCTCAGAGTGAAAGGCTGGAAAACAACTTTCCAAGCAAATGGACTGAAGAAACAAGCTGGAGTAGCCATTTTAATATCGGATAAAATCGACTTCCAACCCAAAGTTATCAAAAAAGACAAGGAGGGACACTTCATACTCATCAAAGGTAAAATCCTCCAAGAGGAACTCTCAATTCTGAATATCTACGCACCAAATGCAAGGGCAGCCACATTCATTAGAGACACTTTAGTAAAGCTCAAAGCATACATTGCACCTCACACAATAATAGTGGGAGACTTCAACACACCACTTTCTTCAAAGGACAGATCGTGGAAACAGAAACTAAACAGGGACACAGTGAAACTAACAGAAGTTATGAAACAAATGGACCTGACAGATATCTACAGAGCATTTTATCCTAAAACAAAAGGATATACCTTCTTCTCAGCACCTCACGGGACCTTCTCCAAAATTGACCATATAATTGGTCACAAAACAGGCCTCAATAGATACAAAAATATTGAAATTGTCCCATGTATCCTATCAGACCACCATGGCCTAAGACTGATCTTCAATGACAACATAAATAATGGAAAGCCAACATTCACGTGGAAACTGAATAACACTCTTTTCAATGATACCTTGGTCAAGGAAGGAATAAAGAAAGAAATTAAAGACTTTTTAGAGTTTAATGAAAATGAAGCCACAACGTACCCAAACCTATGGGACACAATGAAAGCATTTCTAAGAGGGAAACTCATAGCGCTGAGTGCCTCCAAGAAGAAACGGGAGACAGCACATACTAGCAGCTTGACAACACATCTAAAAGCCCTAGAAAAAAAGGAAGCACATTCACCCAAGAGGAGTAGACGGCAGGAAATAATCAAACTCAGGGGTGAAATCAACCAAGTGGAAACAAGAAGAACTATTCAAAGAATTAACCAAACGAGGAGTTGGTTCTTTGAGAAAATCAACAAGATAGATAAACCCTTAGCTAGACTCACTAAAGGGCACAGGGACAAAATCCTAATTAACAAAATCAGAAATGAAAAGGGAGACATAACAACAGATCCTGAAGAAATCCAAAACACCATCAGATCCTTCTACACAAGGCTATACTCAACAAAACTGGAAAACCTGGACGAAATGGACAAATTTCTGGACAGATACCAGGTACCAAAGTTGAATCAGGATCAAGTTGACCATCTAAACAGTCCCATATCACCTAAAGAAATAGAAGCAGTTATTAATAGTCTCCCAACCAAAAAAAGCCCAGGACCAGATGGGTTTAGTGCAGAGTTCTATCAGACCTTCAAAGAAGATCTAATTCCAATTCTGCACAAACTATTTCACAAAATAGAAGTAGAAGGTACTCTACCCAACTCATTTTATGAAGCCACTATTACTCTGATACCTAAACCACAGAAAGATCCAACAAAGATAGAGAACTTCAGACCAATTTCTCTTATGAATATCGATGCAAAAATCCTCAATAAAATTCTCGCTAACCGAATCCAAGAACACATTAAAGCAATCATCCATCCTGACCAAGTAGGTTTTATTCCAGGGATGCAGGGATGGTTTAATATACGAAAATCCATCAATGTAATCCATTATATAAACAAACTCAAAGACAAAAACCACATGATCATCTCGTTAGATGCAGAAAAAGCATTTGACAAGATCCAACACCCATTCATGATAAAAGTTTTGGAAAGATCAGGAATTCAAGGCCCATACCTAAACATGATAAAAGCAATCTACAGCAAACCAGTAGCCAACATCAAAGTAAATGGAGAGAAGCTGGAAGCAATCCCACTAAAATCAGGGACTAGACAAGGCTGCCCACTTTCTCCCTACCTTTTCAACATAGTACTTGAAGTATTAGCCAGAGCAATTCGACAACAAAAGGAGATCAAGGGGATACAAATTGGAAAAGAGGAAGTCAAAATATCACTTTTTGCAGATGATATGATAGTATATATAAGTGACCCTAAAAATTCCACCAGAGAACTCATAAACCTGATAAACAGCTTCGGTGAAGTAGCTGGATATAAAATAAACTCAAACAAGTCAATGGCCTTTCTCTATACAAAGAATAAACAGGCTGAGAAAGAAATTAGGGAAACAACACCCTTCTCAATAGTCACAAATAATATAAAATATCTTGGCGTGACTCTAACTAAGGAGGTGAAAGATCTGTATGATAAAAACTTCAAATCTCTGAAGAAAGAAATTAAAGAAGATCTCAGAAGATGGAAAGATCTCCCATGCTCATGGATTGGCAGGATCAACATTGTAAAAATGGCTATCTTGCCAAAAGCAATCTACAGATTCAATGCAATCCCCATCAAAATTCCAACTCAATTCTTCAACGAATTGGAAGGAGCAATTTGCAAATTTGTCTGGAATAACAAAAAACCTAGGATAGCAAAAAGTCTTCTCAAGGATAAAAGAACTTCTGGCGGAATCACCATGCCAGACCTAAAGCTTTACTACAGAGCAATTGTGATAAAAACTGCATGGTACTGGTATAGAGACAGACAAGTAGACCAATGGAATAGAATTGAAGATCCAGAAATGAACCCACACACCTATGGTCACTTGATCTTCGACAAGGGAGCTAAAACCATCCAGTGGAAGAAAGACAGCATTTTCAACAATTGGTGCTGGCACAACTGGTTGTTATCATGTAGAAGAATGCGAATCGATCCATACTTATCTCCTTGTACTAAGGTCAAATCTAAGTGGATCAAGGAACTTCACATAAAACCAGAGACACTGAAACTTATAGAGGAGAAAGTGGGGAAAAGCCTTGAAGATATGGGCACAGGGGAAAAATTCCTGAACAGAACAGCAATGGCTTGTGCTGTAAGATCGAGAATCGACAAATGGGACCTAATGAAACTCCAAAGTTTCTGCAAGGCAAAAGACACCGTCAATAAGACAAAAAGACCACCAACAGATTGGGAAAGGATCTTTACCTATCCTAAATCAGATAGGGGACTAATATCCAACATATATAAAGAACTCAAGAAGGTGGACTTCAGAAAATCAAATAACCCCATTAAAAAATGGGGCTCAGAACTGAACAAAGAATTCTCACCTGAGGAATACCGAATGGCAGAGAAGCACCTGAAAAAATGTTCAACATCCTTAATCATCAGGGAAATGCAAATCAAAACAACCCTGAGATTCCACCTCACACCAGTCAGAATGGCTAAGATCAAAAATTCAGGTGACAGCAGATGCTGGCGAGGATGTGGAGAAAGAGGAACACTCCTCCATTGTTGGTGGGAGTGCAGGCTTGTACAACCACTCTGGAAATCAGTCTGGCGGTTCCTCAGAAAACTGGACATAGTACTACCGGAGGATCCAGCAATACCTCTCCTGGGCATATATCCAGAAGATGCCCCAACAGGTAAGAAGGACACATGCTCCACTATGTTCATAGCAGCCTTATTTATAATAGCCAGAAGCTGGAAAGAACCTAGATGCCCCTCAACAGAGGAATGGATACAGAAAATGTGGTACATCTACACAATGGAGTACTACTCAGCTATTAAAAAGAATGAATTTATGAAATTCCTAGCCAAATGGATGGACCTGGAGGGCATCATCCTGAGTGAGGTAACACATTCACAAAGAAACTCACACAATATGTATTCACTGATAAGTGGATATTAGCCCCAAACCTAGGATACCCAAGATATAAGATATAATTTGCTAAACACATGAAACTCAAGGAGAATGAAGACTGAAGTGTGGACACTATGCCCCTCCTTAGATTTGGGAACAAAACACCCATGGAAGGAGTTACAGAGACGGAGTTTGGAGCTGAGATGAAAGGATGGACCATGTAGAGACTGCCATAGCCAGGGATCCACCCCATAATCAGCATCCAAACGCTGACACCATTGCATACACTAGCAAGATTTTATTGAAAGGACGCAGATGTAGCTGTCTCTTGTGAGACTATGCCGGGGCCCAGCAAACACAGAAGTGGATGCTCACAGTCAGCTAATGGATGGATCATAGGGCTCCCAATGGAGGAGCTAGAGAAAGTAGCCAAGGAGCTAAAGGGATCTGCAACCCTATAGGTGGAACAACATTATGAGCTAACCAGTACCCCGGAGCTCTTGACTCTAGCTGCATATATATCAAAAGATGGCCTAGTCGGCCATCACTGGAAAGAGAGGCCCATTGGACTTGCAAACTTTATATGCCCCAGTACAGGGGAATACCAGGGCCAAAAAGGGGGAGTGGGTGGGCAGGGGAGTGGGGGTGGGTGGATATGGGGGACTTTTGGTATAGCATTGGAAATGTAAATGAGTTAAATACCTAATAAAAAATGGAAAAAAAAAAAAAACCTACCTCTAG
49 >MMLTR2 Mouse endogenous retroviral DNA, 3' LTR of lambda-13.
50 CTGCAGCAATCAGGAGTGAACGTCCGGGCGAAGAGATGCTCCTAAGAGGGACGGGCGTCTCTCTCTGCTTCTCCCTCTCTGCTTCTTGCTCTCTGCTTCTTGCTCTCTGCTTCTTACACGCTGCTCCTAAGATCGTCAAGACACACTAAAGCTT
51 >MMPER Mouse period repetitive DNA (lambda Sp28).
52 CAGGGGTGTCAGGCACAGGGTTGTCAGGCATAGGGGTGTCAGGCACAGGGGTGTCAGCAGGGTCTCTGGGGC
53 >MMREPECORI Mouse repetitive sequence (clone pMD006) region (2).
54 TGAAATGCGCTTCTTCACTGGATGGTTTTGGCTCCCTGTCGAAGATCAAGTGACCGTAGGTGTGTGGGTTCGTTTCTGGGTCTTCAATTCTGTTCCGTTGGTTTCGCTTGTCTGTCTCTGTGCCG
55 >MMSQR1 Mouse simple repetitive DNA (sqr family).
56 TATATATATATATATTATTCTAACATTATATATTAACATCACTAATATACCCTTCAGCTTTTGTTTTGAGCCATCCAGTACACATGACTCTATAAAAAATAGCCTCTCAGAAATCCACTTCAAATATACCCCTGGCACTCTGAGTTAGATCTTGCATTACCCCAGCACCGTGTAAGCTTCTGAAATCCAGCGGGGTCTCTCACCCTCTCCTCTTGGGAAATGTTCGATTAGTTGAGCTCACTGTTTCCTTCCTCAGTTTTTTTCTCTGAATCTTTGCTGTGCCTCTGGCTTTCTTGTGCTTCTGGAGGGGCACTGGTCTACTTACAAGAGGCCATTGTAGCTAGAGTAAAAGATAAAAGAGATCTGAGCCGGCTTCTGTAGAGCTGAACCACAGACAGACAGACAGACAGACAGACCATCCCTCACAAACACCAAAGCCTAAGTTTCAAATCAGCTCAGTTCTTCACAAGGTATGAGCCATGTTACTTCACCTGCCTGCCAGGAGCATAATCATTTCTTGGGGAAAAAAAATCTACAGATTCTCAAAACACCTGCACATCCAATGCCCAGCATTGATTAAGATGTCCAGGCATGACAGCAGGTATGCCAGGATGCATTCCTTCAACTTGATGGTTCATTAGTTCAGGGATTAAGGCTTGGCTCAGGCTTGTGGTCAGTCCCAACATA
57 >MMSQR2 Mouse simple repetitive DNA (sqr family).
58 TCTAAACATGGAAGGACTGCTGTTTTCATCTTCACCCTTACTCAGATGTGGGGCTAGTGACATGGCGCAATGGTTAAAGCATATACCACTAGGCCCTGACAACCTAAGTTTGACCCTTGGGACTCATGTGATGGAAAAAGAGAATAAAATCCTACAAGTTTTCCTCTGACCTCCTCATGCATAGCTGTGTGTGCACGCATGAGAGAGAGAGAAAGAAGAGAGGGACACAGACAGACAGATAAACACAGAGAGGGAGAGAAAGAGAAAGACAGACAGGCAGAGACACAGAGACAGAGAAACAGACACAGAGAAAGAGAGACAGGCAGGCAGACAGACACAGATAAACTGTGACAGACAGACAGACAGACAGACAGAGACAAAGAAAGGGAATAATCTTTAAAAATGAAAACAATTTGCCTTTGATGAAGCAAGCGCATTTCGTGCTGGGTTTCTGGCTTAAGCATCGCTTTAGTTCATGTCTGGAATAAGTCTGCTGGCTCTTCATTTCTACATTTGTGAGGAGGTAATCAAATGTGCTTCCTTTGAATCAAACACTCAAGAACTATTCAAGTCACATTGATTAATACAATGAAGTGTAAGTACAAGGCTAGCTGGCTTCGAGAATCCTATCG
59 >MMSQR4 Mouse simple repetitive DNA (sqr family).
60 TTTTTTGCTACATTCATATATAGAAGTGTACTGAAATTGAAGTAAGTTTTTCTACACCATTAAACTACAATTTGCCCCGTTCTTTCAGCATCTTGAATCCTGGGTCTTGAAGACACAGTTCTGAATAGGCCATCAAAAGTTGATACCATGCTCATAATTGTTTTATTGATAACAACTGTTTTGCCTAGGCTAGCAGTCAATCCGGATCATACTTATCTGTTTCATACTTAACAGTGGAATAGCCAGTGTTTTCTGCTTCAGGAACAGCAAGCTCTAAGGGCTTATACTGGTAAAATAAATAAATAGATAGATAGATAGATAGATAGATAGATAGATAGATAGATAGATAGATAGATAGATAAAGTCTTGACTGTTACATGATGATATCTTGGGAGGCCTGGTAGCATATATCCATAATCCCAGCACTCA
61 >MMSYNREP Mouse synaptonemal repetitive DNA sequence.
62 GAACAGATTAGATGAGTAAGTTACACTGAAAAACACATTCGTTGGAAACGGGATTTGTAGAACAGTGTATATCAATGAGTTACAATGAGAAACATGGAAAATGATAAAAACCACACTGTAGAACAGATTAGATGAGTGAGTTACACTGAAAAACACATTCGTTGGAAACGGGATTTGTAGAACAGTGTATATCAATGAGTTACAATGAAAAACATGGAAAATGATAAAAATCACACTGTAGAACATATTAGATGAGTGAGTTAGGG
63 >MMTHE1L Repetitive segment of integrated DNA.
64 TCTTACCGGGTTGGACTCAAGACGATAGTTACCGGATAAGTCCAAGGATCTAGCAGTTACTCAGTCTCACGCAGCAAGCAGGCGAAGGAGCAAGAGCAAGAGCTAGACTCCCTTCTTCCAATGTCCTTATATTGTCTCCAGCAAAAGGTGTAGCCCAGATTAAAGGTGTGTTCCACCACACCTTTAATCCCAGATGAAAGCATAGCCCAGATTAAAGGTGTGTTCCTTAACTCGGAGATTCAATCTTCTGGAATCCATAGCCACTATGGCTCAAGATCTTCAAACCAAGATCCAGATAAGGATCTCCAAGCCTCCAGATAAGGGTCACTGGTGAGCCTTCCAATTCCGGATTGTAGTTCATTCCAAATATTGTCAAGTTGACAACCAGGAATAGCCACTACAATCCACCCCTTGTCAACTTGACACAAATAATATCTCATGTTCACATGAAACAATAACAAGGTTGTAAATACGCCTAACATGATATAACTATCCCTCGTACAATCGCAAACGCATTAGTAAATTTACAATGGGCATTCATATTACTTTATAATCCTCGTTTCTGCAACTGGTTATCTTTCATTATGCGACTGATCGATT
65 >MMYREPA11 Mus musculus (clone A11) chromosome Y DNA sequence, repeat region.
66 GAATTCTGAACATGTTCTCACATAGGGCATTTGAATATACTTTTTAGGTTAACCCCATATGATCACAAGAAACAAAATGTAGCAAGAAGATCAGAGTCAGAAGTATATCTCAGACTCATGTCAAAGACAGTCTGGGAGGCACACCATGCTTCGGTTTTCAAAGTTCCAGAGAGTGGTTCTCCACCTTTTTAATGCTGCAGTTCCTTCATATATATACTTCCTTATGCTGTGTGGTGCACCAACTGTAAAAATATTTTTTGCTGCTTCATAACTGAAATGTCCTACTGATATGAATTGTAACATACATTTCTGACATACAGATAGTCTTAGACAACTCCTGTGAAATTTGTCACAAGGACTAGCAACCTACAGGTTGCCAACCACAGTGCCAGCAACTGGGAAAACTAGCCAGCCCCTTGATTTTTACAATGTTGACTTCCGTAACTATAGTAGAATAGATGTGCTCTATTTTAGTGGTCTAAGCATGTGAGGATCTGTAACACTACCTGGAAACACACATACCAAATTGGATGAGGGAGTCTATTTTTTCTGTCCTGGACCTTGCAGGTTTGAGTCAGCTCTAATCAAATAGAAGAGAAAGGATACTAGATGAATTC
67 >MMZP3A Repetitive segment of ZP3 gene.
68 AGAGCACCTGCCTAGAGTACCCCTGTAAAGCGCTTGGGGGCATGGCTCAGTGGTAGAGTCCCTGCCTAGAATCCCCCAGGGAGGGGTTGGGGGGCTGGCTCAGGGGTAGAGCCCCTGCCTAGAATCCTCCAGTGAGGGGCTGGGGGCGTGGCTCAGGGGTAGAGCCCCTGCCTAGAATCCTCCAGTGAGGGGCTGGGGCATGGCTCAGGGGTAGAGCCCCCTGCCTAGAATCCCCCATTGAGGGGCTGGAGGCGTGGCTCAGTAGCAGAGCCCCTGCCTAAAATGCCCCAGGGAGGGGGTGGGTGCCTCACTAGAGCACT
69 >PSLTR1 Dwarf hamster retrovirus MRS-Ps LTR.
70 TGCACACTAGCCCATGTGGAGACAGTGTAGAACTGCTGAGAGAATCTCAATGGCTATCTGTCAGAGGTTCGACACATGTGGTTACGCTCTGGGAAAATGGTTCAGGTCCCTGCAGCTGCTTGCATGGCTGGCTGTTTGGAATGGGTGCTAGATGTGTTTTGTGCTATGATAACAATATTGCCTTTTATTCAAGGATATTTTATTCAAGGATATTTTAGCCTGTAAGCTCACTAGTAATTCAGAGATGCCTAGAGAGCACTTAGATATAGTTTCAGGAACTGAAAGAGATACAGATCAGCAGTCAATAGGTGGGTATTGCCCTCTGTGCCTTCAGACACAGATCCTAAGGTGCCAGTTGTGACTTCAGATGTCAGCCAGGGCCTGATAAATCAATTAGGGCTAAGGCTATAGGAAGCAGCCCACAATGAGACCCTGCCTGTAATTAACCCGCCCACAACAAACATGCTGTGGGATTCACAACAATACTCTAATTTGGGATCTTAGGGCCCCTAAATCAACACTATAAAAGTTTACTATCTAGAGACAAGATTAGCCTCTAAACTCAATAAATCAAATCTCTGATATGCTGACCACAAGCAGGCCAAAATAAACAGAGGTTCCTAATATGCACTTGCTGAGAAACTTCAAAGGGAATTGTTAACATCTGTAGAATCCTGTTTATCTTTAAACTGTGACCAAAGATCTGTTCTTTGAGCTTTCTGTATAAAAACCCAGTACTTTGAAGTAAACTTTGCAGCAGTTCGCAAACCTCCTCAGGTGTGTTTGTGTCTGTCTGTCAAGCCGAAGCCATTCCTGACCTGGTCATCTGAGTCTTGGTCTCCACACAGACCTGCAACCCACTGAGCAGTCTGTGGCAGCTGGTGCCCAAAACAGGGAC
71 >MTA Rodent MTa MaLR-LTR - a consensus
72 TGTACTGGCTAGTTTTGTGTCAACTTGACACAAGCTGGAGTTATCACAGAGAAAGGAGCTTCAGTTGAGGAAATGCCTCCATGAGATCCAACTGTAAGGCATTTTCTCAATTAGTGATCAAGGGGGAAAGGCCCCTTGTGGGTGGTACCATCTCTGGGCTGGTAGTCTTGGGTTCTATAAGAAAGCAGGCTGAGCAAGCCAGGGGAGGCAAGCCAGTAAAGAACATCCCTCCATGGCCTCTGCATCAGCTCCTGCTTCCTGACCTGCTTGAGTTCCAGTCCTGACTTCCTTTGGTGATGAACAGCAGTATGGAAGTGTAAGCCGAATAAACCCTTTCCTCCCCAACTTGCTTCTTGGTCATGATGTTTGTGCAGGAATAGAAACCCTGACTAAGACA
73 >MTB Rodent MTb MaLR-LTR - a consensus
74 TGTACTGGCTAGTTTTGTGTGTCAACTTGACACAAGCTGGAGTTATCACAGAGAAAGGAGCCTCCCTTGAGGAAATGCCTCCATGAGATCCAGCTGTAAGGCATTTTCTCAATTAGTGATCAAGGGGGRAGGGCCCAGCCCATTGTGGGTGGTGCCATCCCTGGGCTGGTAGTCTTGGGTTCTATAAGAAAGCAGGCTGAGCAAGCCAAGGGAAGCAAGCCAGTAARYARCAYCCCTCCATGGCCTCTGCATCAGCTCCTGCCTCCAAGTTCCTGNCCTRCTTGAGTTCCAGTCCTGACTTCCTTTGGTGATGAACAGCAATGTGGAAGTGTAAGCTGAATAAACCCTTTCCTCCCCAACTTGCTTCTTGGTCATGATGTTTGTGCAGGAATAGAAACCCTGACTAAGACA
75 >MTC Rodent MTc MaLR-LTR - a consensus
76 TGTGCTGGCTAGTTTTATGTCAACTTGACACAAGCTAGAGTCATYTGAGARGAGRGAACCTCAATTGAGAAAATGCCTCCATAAGATTGGCCTGTAGGCAAGCCTRTAGGRCATTTTCTTAATTAGTGATTGATGGGGGAGGGCCCAGCCCATTGTGGGTGGTGCCAYCCCTGGGCTGGTGGTCCTGGGTTCTATAAGAAAGCAGGCTGAGCAAGCCATGAGGAGCAAGCCAGTAAGCAGCACTCCTCCATGGCCTCTGCATCAGTTCCTGCCTCCAGGTTCCTGCCCTGCTTGAGTTCCTGTCCTGACTTCCTTCGATGATGAACTGTGATGTGGAAGTGTAAGCCAAATAAACCCTTTCCTCCCCAAGTTGCTTTGGTCATGGTGTTTCATCACAGCAAATGTAACCCTRACYAAGACA
77 >MTD Rodent MTd MaLR-LTR - a consensus
78 TGTGCTGGCTAGTTTTATGTCAACTTGACACAAGCTAGAGTYATCTGGGAAGAGGGAACCTCAATTGAGAAAATGCCTCCATCAGATTRGCCTGTGGGCAAGTCTANAGGACATTTTCTTRATTGATGATTGATRTGGAAGGGCCCAGCCCACTGTGGGTGGTGCCAYYCCTGGGCAGGTGRTCCTGGRTGGTATAAGAAAGCAGGCTGAGCAAGCCATGAGGAGCAAGCCAGTAAGCAGCGTTCCTCCATGGTCTCTGCTTCAGTTCCTGCCTTAGGTTCCTGCCTCGAGTTCCTGCCCTGACTTCCTTCARTGATGGACTGTAACGTGGAACTGTAAGCCGAAATAAACCCTTTCCTCCCCAAGTTGCTTTTGGTCATGGTGTTTCATCACAGCAACAGAAACCCTAACTAAGACA
79 >MMLTR3 Mouse mammary tumor virus LTR.
80 AATCCAATAGGTAGATTATTAATTACTATGTTAAGAAATGAATCATTATCTTTTAGTACTATTTTTACTCAAATTCAGAAGTTAGAAATGGGAATAGAAAATAGAAAGAGACGCTCAGCCTCAGTTGAAGAACAGGTGCAAGAGCTAACGGCCGCAGGCCTAGAAGTAAAAAAGGGAAAGAAGAGTGTGCTTGTCAAAATAGGAGACAGGTGGTGGCAACCAGGGACTTATAGGGGACCTTACATCTACAGACGGTTAGCTTGGCTTCCCAGGGTTCAAACTGTTCTTAAAACAAGGATGTGAGACAAGTGCGCAACGGTTAGCTTGGCTTCCCAGGGTTCAAACTGTTCTTAAAACAAGGATGTGAGACAAGTGGTTTCCTGAGTTGGTTTGGTATCAAATGTTCTAATCTGAGCTCTTAGTGTTCTATTTTCCTATGTTCTTTTGGAATCTATCCAAGTCTTATGTAAATGCTTATGTAAACCATGATATAAAAGAGTGCTGATTTTTTTGAGTAAACTTGCAAC
81 >MMLTR4 Murine leukemia virus (MuLV) LTR.
82 TGAAAGACCCCACCATAAGGCTTAGCAAGCTAGCTGCAGTAACGCCATTTTGCAAGGCATGAAAAAGTACCAGAGCTGAGTTCTCAAAAGTTACAAGGAAGTTCAGTTATAGATTAACAGTTAAAGATCAAGGCTGAATAGCACTGGGACAGGGGCCGAGCAGGATATCGGTGGTCAAGCACCTGGGCCCCGGCTCAGGGCCAAAGAACAGATGGTTCTCAGATAAAGCGGAACCAGCAACAGACACAGAAGCCCCGATAGACGTCAGTGTTAGCAGAACTAGCTTCACTGATTTTAAAAAATAGAGGTGCACAGTGCTCTGGTCACTCCTTAAACCTGTGTGTCTGCCAATGTTCTGACCAGATATGTGCCCATTGCTGAACCTTCATTAGACTCTTTCCTCGTACCCCTCCCCTACCCATTTCTTGAAAATAGACATTGTTTAGATCTAAAAAGTCCCACCTCAGTTTCCCCAAATGACCGGGAAATACCCCAAACCTTATTCAAACTAACCAACCAGCTCGCTTCTCGCTTCTGTAACCGCGCTTTTTGCTCCCCAGCCCTAGCCCTATAAAAAGGGTAAAAACCCCACACTCGGCGCGCCAGTCCTCCGATAGACTGAGTCGCCCGGGTACCCGTATTCCCAATAAAGCCTCTTGCTGTTTACATCCGAATCGTGGACTCGCTGATCCTTGGGAGGGTCTCCTCAGATTGATTGACTGCCCACCTGGGGGGTCTTTCA
83 >MMLTR5 Mouse endogenous retrovirus (MuRVY) LTR.
84 TGAACAGCAAAAACTTATAATTTTGGGTCTTATAGCATTGTGGTATGTAAGTTCAAGAAATTCAGGGCTGAAGAATAGACCCAGGCGGGTCCAGGCACAGCCATACTCACCCTGTAGCTAAGAATGTCCGGCCATAAAAGATTAAAAAGAGAATGCAGGAACTAGCCACTGCTAACAGGGCGGACCAAATGGCCATCTGGCAGGATGGCACCTCCCTATAGACCCCATAAATCATACATTGACCAGGTGTCCTGCTGACCTCGAGAAGTCCCAAGCCCTTGTGTCTTTCTCCATTTTAGCAGGTACATATTACCCTGCTAATTTGTAATCATCCTGCCGCCATTTAAATAAGCCAATTATGTGTAATGGCGCAAATTCTTTTGGCTCCCCTGTTTTTGGTTTGTGGTTTTTGCCTTTATAAGCCTGTAAAAAGTTTGGGCTGGGGTTGAACTCCCCTGCCCCCTGCGCGGTGCATGAGTTTCGGTCCTCAGCATTCTGGCTTGAGCGAACCTTTGTTGTTTGTGTGTTTGTACGCCATTAAAGCCTTGTATAATTACAGTGAGTTCTGGTCTCAGTGTCCTACTGGGTGCGCGCTTGCCCGAAAAGGGACTCCCCACGGGGTCTTTCA
85 >ORR1A Rodent ORR1a MaLR-LTR - a consensus
86 TGTGRTGGTTTGWATATGCTTGGCCCAGGGAGTGGCACTATTAGGAGGTGTGGCCTTGTTGGAGGARGTGTGTCACTGTGGGTGTGGGCTTTGAGACCCTCCTCCTAGCTGCCTGGAAGYCAGTCTTCTNCTAGCTGCCTTCGGATGAAGATGTAGAACTCTCAGCTCCTCCTGCACCATGTCTGCCTGGATACTGCCATGCTCCCGCCTTGATGATAATGGACTGAACCTCTGAACCTGTAAGCCAGCCCCAATTAAATGTTGTCCTTTATAAGAGTTGCCTTGGTCATGGTGTCTGTTCACAGCAGTAAAACCCTAACTAAGACA
87 >ORR1B Rodent ORR1b MaLR-LTR - a consensus
88 TGTGGTGGTTTGAATRAAAATGGCCCCCATAGGCTYATAGGGAGTGGCACTATTAGGAGGTGTGGCCTTGTTGGAGGAAGTGTGTCACTGGGGTGGGCTTTGAGGTYTCAKATGCTCAAGCCAGGCCCAGTGTGTTCACTCTCTTCCTGCTGCCTGCAGATCAAGATGTAGAACTCTCAGCTACTTCTCCAGCACCATGTCTGCCTGCATGCTGCCATGCTTCCCGCCATGATGATAATGGACTAAACCTCTGAAACTGTAAGCCAGCCCCAATTAAATGTTTTCCTTTATAAGAGTTGCCTTGGTCATGGTGTCTCTTCACAGCAATAGAAACCCTAACTAAGACA
89 >ORR1C Rodent ORR1c MaLR-LTR - a consensus
90 TGTGGTGGTTTGAATAAGAATGGCCCCCATAGGCTCATATATTTGAATGCTTGGTCACCAGGGAGTGGCACTGTTTRAMAGGATTAGAAGGATTAGGAGGTGTGRCCTTGTTGGAGGAAGCGTGTCACTGGGGTGGGCTTTGAGGTTTCAAAAGCCCAYGCCAGGCCCAGTGTNTCTCTCTCTTYCTGNTGCCTCTGGATCAGTATGCAGCTCTCAGCTATTTCTCCAGCACTANRTCCACTGNCATGCCGCCATGCTCYCCATCATGATGYTAATGGACTAACCTCTGAAACTGTAAGCAAGCCCCCAATTAAATGTTTTCTTTTATAAGAATTGCCTTGGTCATGGTGTCTCTTCACAGCAATAGAACAGTGACTAAGACA
91 >ORR1D Rodent ORR1d MaLR-LTR - a consensus.
92 TGTGGTGGTTTGAATRAGAATGGCCCCCATAGGCTCAYATATTTGAACGCTTGGTCCCCAGTTGGTGGAACTGTTTGGGAAGGATTAGGAGGTGTGGCCTTGTTGGAGGAAGTGTGTCACTGGGGGTGGGCTTTGAGGTTTCAAAAGCCCAYGCCATGCCCAGTGTNGCTCTCTCTGYYTCTGCTTGAKGRTCAAGATGWNAGCTYTCAGCTNCTGCTCCAGCACCATGCCTRCCTGCCTGCCGYTCCCTNACCMCGACGATCACGGACTCTRACCCTCTGGAACTRTAAGCCAAATTAAATGCTTTCTTTTATAAGTTGCCTTGGTCATGGTGTTTTTTCACAGCAATAGAAAAGAAACTAAGACA
93 >PLMYS1 Mouse mys-1 transposon.
94 TGTTGCTGGAGGGCTTCTCTCCAGGTTCCCCAAGCCCCGCAGTCCCACAATCCATTTATAAAATAATCACTCAGACGCTTATATCACTTATAAACTGTATGGCCGTGGCAGGCTTCTTGCTAACTGTTCTTTTATCTTAAATTAACCCATTTTTATAAATCTATAGCTTGCCACGTGGCTGGTGGCTTACCGGCGTCTCTACATGCTCTTCTCCTGGCGGTGGCTGCAGTCTCTCTTCCTCAGCCTCCCGCTTCCCAGAATTCTCCTCTCTCCTTGTCCCACCTACCTCCTGCCTGGTCATTGGCCATCAGTGTTTTATTTACATAGAGTGATATCCACAGCACTTCCCCTTTCTTCTTTTTTTAAAAAGGAAGGTTTTAACTTTAACATGGTAAAATTACATATAACAAAACAATTACCGAGCAAGAATTATAGTTACAATATTAAAGAAGATGTCCTATCTATCTTATATTTGTGAGTTTAAGGTTTTATAGCTAACTTATCTTTTATCATAACTGAGGAAATTACGACTATCTAGCCTTCAACCACATCAAAGACCTGAGAAGGAACATAATGGTACCTGAGAAATGGTAGACGGATGCAAGCAACTTCGGGAATCTTGCAAGAGTAGACCAAGACAGCTGGCAGCCTGGACAGTCACCTGATGTTTCTCAGCATTGTTGGTGCATTCAAATTGGCTACAGGCCTAGAGTATCTGACAGACCATTTTCAGAAGCAGGAATTCTGAGAGACCATCTTACCCTGTCTTGGCAGAGTACAGTGGTCGCTTTCCTTGTGTCCCGCTTGTCCAGAAAGGACAGCATTGCATTTGTACTGTCAGCCGTCAAGGCAAGGGCAGTTCTTTGCCCAGTAGGCCATTTTGTGCCAAAAAGACAAACTTCCAAATGGAAATGTCTTAGAAGCCCAACATTCTCTCGGGATCAATTGGTGCAGCCAGGAGCAATTGTGTCTCACATCAACAGAATTCTAAGTTATTTAAATGCCATATTTTCTAGGTCTATGAAGTGTTTGAAGATTACCTATCTATCTGAAATATATCTATGTATACCTAGAAGACTTAACTAACATGGCTACAGATATGATTATCATAGATGACTAATTATTAACCTATTTTTTAATTATCCATTACAATTTTAAATGAGTTATATAAACATAATACCTCAAACAAGAATAGAAATATATATATACAGTATAACAAAATTAACTTCAAGTTTGTATCAATGAACTAAAATTTATACCAATGTAAAACATTTTAAACATAAACTAAAATCTATACCAATGTAAAACATTTTAAACAAGTTGTTCTTTAAAAGTAGGTTCATTAATCTACCCTTTTATCTTATCATCTCCATATCCTCCTATATATCATATCCCCTTTTCTTTTTTAGAAAGAGATCACATTTATAATCAACCTGTTTTAAATAAAAATATTGGTTTTTCTCTGTCCCACACCAGAGGGCTCTTCTGATTTGGGACACAAGAATCTCTTAACCATTTTTTTTTTTTTTAAAGCAATATGTCTGGGTTTAGAGGGGGAGTGAGCCAATTCCACCTCTAAAGCCAGCTTGGTATATTTGGGAATTTGGGCGTAGCATCTCTTACTGCTTCCTGCTGGAGGGGGGCGCTGTATCTTATGGGGACGCAAAGAAAATTTTAGACCTATGGGGTAGCCGTGAGGCTGTATTGTGTGAACCAGTTGCCTTGAAACCGATCTGGATGTTGGATCATCTGGGCCATGGTGTCATCGGAGTCCTTTCAGGGGGTCTTGGCTGGTGAAACCTGATGTATCTTAATCTGGAACAAGTCCACAGCCTCTGGCTTTCTGTGGAAACAAAAGCAGAACCTCTTTTCCAAAGTAACATATCCTTATATCCAAATTTTGAAGTCAAGGTACCTTTAAAATATACATTTTGGCATAACTCAACAGCTTTTGTAATCAAATGTTTTTCTTTAGTTATGAATATCAAAGAGAACATAATCCAGATTCTCTGTGTGGTAGCCATCTTTATGTGGCTTATGTTTTATATTACCTTGAGCCTTGAGCCTATTGCTTTAAACTGTACCATTGTAAGCGTGAAACGGCGCTGTGGCTGCTGGCTCCGCCCACTTCAGCTTCCCAACATGGCAGTGGTACATTTTCCGCCAGCTCTGGGAGTCATCAAGTCTCAGAAATAGTGGGTCTAAGCTTTTATCAAAGCAGCGTGTAGCCCAGAAACCTCTTTTTTTTTTTTTTAAAAAAAAAATAATAGTAAAGACTAAATCTACCACACAGCTTAATTTGCCGCTGGCAGATGCCTCATTTCCGCCATACTGCCGGTCAGACGCACCCGCCAGGAACCCGCCAGTGTCCAAACTTGCGTTTTGCCGCATCTAGCTGCCGTATAAGACAAGAAGCAGGAACCTGGTTTTGGCTCTGTTTAGAATTGGTTATTAAATATTCTCAGGTTTAAGGTGGAAACTCGAGCCGTTGGGCGCCATTT
95 >PMR111 Mouse PMR111 middle repetitive sequence.
96 GTTTCTTTATCTCAGGTCCTGCAGATTTCTCCCTGTATTATCAGGGAGGAGCAGCAGCTGAGCTATCCTAC
97 >PMR6 Mouse PMR6 middle repetitive sequence.
98 GCAGGCTAGTCTTTTGCACTGTTTGCATAGTTCTGGGGATCAATACCTAGGGCCTTGTAC
99 >PMR66 Mouse PMR66 middle repetitive sequence.
100 GCAGGAGTTGTGGTGACATCAGAAGTTGTCATCACTTCTCCAGTGGTTGTTACTTCAGCAGTGGTGGTGATGAACAGGAGTGGTGGTAACATCAGGTCTTGTAACTTGTCCAGTGGTTGTGACTTCAGAAGTGGTGGTGATGTCAGGAGTGGTGGTGACATCAGAAGTTGTCATAACTTCTCCAGTGGTTGTTACTTCAGCAGTGGTGCTGATGACGGGC
101 >PMR89 Mouse PMR89 middle repetitive sequence.
102 GCACCTGGCCCCTCCTACAACCAAGAAAGAAGCACAACGTTTAGTGGGTCTATTTGGATTCTGGAGACAACACATCCCTCACTTGGGTGTGTTACTTAGGCCTATTTACCAAGTGACTCGGAAAGCTGCTAGCTTTGTGTGGGGCCTGGAACAGGAGAAGGCCCTTCAACAGGTCCAGGCTGCTGTGCAGGCTGCTCTACCACTTGGACCATATGACCCAGCAGATCCGATGGTC
103 >PR Novel repeat element (PR).
104 TCTAGGTCAGTGTTTCTCAGCCTCAGAACGCTGTGACCCTTTAGTACAGATCCTCATGTTGTGGGGACCCCAACCATGAATATATTTCATTGTTACTTGATGACCCTAATTCTGCTAGTTATGAATTGTAATATCTGACATGCAGGATATCTGATACACAACTCCCAAAGGGTCACAGGTTGGGAAC
105 >RAL Rat RAL repetitive element.
106 TGAAAGGAAAATTATACGAATTTAAGTTTAAAAATATAAAATTAAAAGAGTAAGCCCCAAAAGCCACAAACTGAGGGCTAAGCTGCCGCCAGGAATAGCAGGCCATAAAGATAAAGAAAAGGAATACAAAAACCACCTCAGGCTATCAAGGACTGACCCATAAACCATCCAAAGACATTCCCCCAGCTTACTCAGAGTCATATTTTAACCAGATGTCCTCCAGACCCTGATAAGCCCCTACTTGTGCTTTCCAGCCATTGTGTCCTGCAGAGAGCATTCCAGGAAACCGGGTAGCCCAAGCCTAACCAGAGTGTTTCAAATACAGATCTTCATCAATTCTGACAAACCTTTAAAAATAATGAAGACCTGAAGACCCTACCCTTCTCCTGATTTAGTAGCTTTGTTCCAGGCAATCAGGGGTCCATAATACCTTCTGTCATCCCCTTATCTCCTGGAGCCATAAAACAATCCTTGTAACTTGTGGTGCCTTCCCCTTTGACATCCCCCATCCCCTGGCTACACAGCCTCTGCCTTTAAATACTCTTTCTCCCAGCCTCTCTGGGTCAGAAGAGCCTCTGTCTCCTGCTTGAGAAACGTGTCAGCGCGCAGATCTCTGTAATAGGTCTCCGTAATAAACCTCGCCTTTGCTTATTACATCCAAAATGGTCTCTCTGTGTCTGGGGTCTGCGATTTCCCAAGACTTGAGTAAGGGTCTCTCTCTGGGGTCTTTCA
107 >RDRE1 Rat R.dre.1 repetitive sequence.
108 GGCTGGGGATTTAGCTCAGTGGTAGAGCGCTTACCTAGGAAGCGCAAGGCCCTGGGTTAGGTCCCCAGCTCCGAAAAAAAGAACCAAAAAAATA
109 >RNALPHA Rat alpha-type repetitive DNA sequence (reiterated component).
110 AGCTTTGCAGTTTTATGAGATCCCATTTGTCGATTCTTGATCTTAGAGCATAAGCCATTGGTGTTTTGTTCAGGAAATTTTTTCCAGTGCCCATGTGTTCCAGATGCTTCCCTAGTTTTTCTTCTATTAGTTTGAGTGTGTCTGGTTTGATGTGGAGGTCCTTGATCCACTTGGACTTAAGCT
111 >RNALUIII Rat Alu type III-like repeat.
112 GGGCTGAGAATGTAGCTCAGTTGGTAGAATGTTTGCCTAGCATGCATGAAGCCCTGGGTTCAATCCCTTGCACCATATAAA
113 >RND Rat repetitive region D of non-transcribed ribosomal DNA.
114 ATTCATTCATTCATTCATTCGGTCGGACGGACGGACGGACGGCAGGCAACCAAGGTCTGGCCTTTAACAAGGCAGGAAGGCATACCCTGCGGGACGCACAGAGAATTC
115 >RNL1NH Rat DNA with long interspersed repeated sequence (L1NH).
116 GGATCCGGCCCGCAGCAGCTCCTCCGCTCCTAGACCCGGTGAGAGAGAGACCCAACCGCTTTGTTCAGGTGGGCACTCCTGAGGCTGCAGAGCGGAAGAGACCTACCTATACTACTTGCTCCACCCCTTGCCTTACATCCCTTGGCCCTAAGAGGAAACTGTATAAGCCTCCGGGCTCCCTTTGGGGGAGGTCCTAGG
117 >RNL1R2 Rat L1R2 sequence DNA.
118 GGATCCCCAGGTGGAGCAGGCTGTGAATGGCCATTCCTTCAGCCTCTGCTCCAAACTTTGTCTCCATATATACTCCTATGAATATTTTTGTTCCCCCATCTAAGAGGACTGAAGCATCCACACTTTAGTCATCCTTCTTCTTGAACTTCATGTGGTCTGTGGATTGTATCTTGGGTAATCTGAGCTTTTGGGCTATTTTCCACTTATCAGTGAGTTCATACCATGTGTGCTTTTTTGTGATTGGGTTACCTTGCTCAGGATGATATTTTCTACTTTCATCCACTTGCCTATGAATTTCATGAATTCATTGTTTTTAATAGCTGAGTAGTACTCCATTGTATAAATGTACCACATTTTCTGTATCCATTCCTCTGTTGAAGGGTATCTGGGTTCTTTCCAGCTTCTGGCTATTGCAAATAAGACTGCTATGAACATAGTGGAGCATGTGTCCTTGTCATATGTTGGAGCATTTTTTGGGTATTTGCCCAGAGGAGTCCTCAGGTAGTACTATGTCCAGTTTTCTGAGGAAATTCCAGACTGATTCCAGAATAGTTGTACCAGGTTGCAATTCCACCAACAATGGAGGAGTGTTCCTCTTTCTCCATATCCTCTCCAGCAATTGTTGTCACCTGAGTTTTTGATTTTAGCCATTCTGTCTGGTGTGAGGTGGAATCTCAGGTCCTTTTGATTTGCATTTCCCTGATGACTAAGAATGTTGAACATTT
120 TTATTTTTAATTAACTTGAGTATTTCTTATATACATTTCGAGTGTTATTCCCTTTCCCGGTTTCCGGGCAAACATCCCCCTAATCCCTCCCCCTTCCCCTCCCCTCCCCATCCTCCCCCCATTGCCGCTCTCCCCCCAACAATCTTGTTCACTGGGGGTTCAGTCTTAGCAGGACCCAGGGCTTCCCCTTCTACTGGTGATCTTATTAGGATATTCATTGCTACCTATGGGGTCAGAGTCAATGGTCAGTCCATGTATAGTCTTTAGGTAGTTGCTTAGTCCCTGGAAGCTCTGGTTGCTTGGCATTGTTGTACATATGGGGTCTCGAGCCCCTTCAAGCTCTTCCAGTTCTTTCTCTGATTCCTTCAACGGGGATCCTATTCTCAGTTCAGTGGTTTGCTGCTGGCATTCGCCTCTGTATTTGCTGTATTCTGGCTGTGTCTCTCAGGAGCGATCTATATCCGGCTCCTGTCGGCCTGCCCTTCTTTGCTTCATCCATCTCGTCTAATTGGATGACTGTATGTGTATGGGCCACATGTGGGGCAGGCTCTGAATGGGTGTTCCTTCTGTGTCTGTTTTAATCTTTGCCTCTCTATTCCC
121 >RNLPKG Repetitive segment of L-type pyruvate kinase.
122 GGGGGTGGGTTTGTTTTTGTTTTTGTTTTTGTTTTTTTGAGATCGGGTCTTTTTATGTTGTAGCTCTGACTGATGGATAGGCAGGTCTCAAATTTAGAAATCTCCCTACCTTTGCCTCCTGAGAGTTGGACTGGGACCACCTTGCTCCACATGAGGCTGGGTTTTTGAGACAGGGTCTCAGGTAGCCTTGGATATTTCTAGCTTATTTCATAGACCCTATTATATCGTCTTAGCCTGGTGAAAGCATAGGTATGTGATACCACACCCAACTTAACAAATGCTTGTTGAGTACCTGGAAAACAAGGTTTGGAATTGG
123 >RNLTR1 Rat oncomodulin LTR-like sequence.
124 TGTTGGCAGCCGCTATTGCTGCAGAGCCGCGCCTTAAAGATGGCGCTGCCTGTGTGAGTCAGCAAAACCTGAAGAGCAGCAACACGCATGTGCCTACTTGTCATGGCCTACGCCCGAGGCATGTGCACCAATCAGGTGGAGACACGAGTCTTCCAAGCGTACATAAGCCACACTCTTTTCTCAGTCGGGGTTCCCCTTCTCACAAGAGCTGAACAATAAAGGCGTGACTGCAGAAGAATCCTGGTGTTCCAAGTCGTTCTTGCCGGCGAGACCACCGTGCGGGACA
125 >RNSATI Rat satellite I DNA (isolated by sau3ai digest).
126 GAATTCACAGAGAAACAGTGTTTCAGTTCGTTAAAACGTTGCTCTATCTTGAATAACAAGCTTATTACATGCGAATCCTATTGGGAACCTACTGAATTCACCATGATACTTAGATTCCGTTCCTCAAAATGTTGCTCCATATTGAAAAGCAAACTCATACAAGCATGTCCCATTGGGAACTCACTGAATTCGCCTAGAAATTTTGATTCCATTCGTGAAAATTTTTCTATATCCCGAACAGTCCACTTATTACTACTGCGGCCCACTGGGAACTAACCGAATTCACCATGTTACTCAGATTCGGCTCACCAAATTTTGATAAATCTTTAAAAGTACACATATTACAAGAGCAGGCTACTGGGAACTAACT
127 >MMLTR6 Mouse virus-like 30S (VL30) LTR.
128 TGAAGAATGAAAAATTACTGGCCTCTTGTGAGAACATGAACTTTCACCTCGGAGCCCACCCCCTCCCATCTAGAAAACATTTTTGAGATAAAGGCCTCCTGGAACAACCTCAAAATGACATTGCCAAATGATAAGACATGACTCCTTAGTTACGTAGGTTCCTTGATGGGACATGACTCCTTAGTTACGTAGGTTCCTTGATAGGACATGACTCCTTAGTTACGTAGAATCCTTTGGCAGAACCCCTTGTCCCTTGGCAGAACTCCCTAGTGATGTAAACTTGTACTTTCCCTGCCCAGTTCTCCCCCCTTTGAGTTTTACTATATAAGCCTGTGAAAAATTTTGGCTGGTCGTCGAGACTCCTCTACCCTGTGCAAAGGTGTATGAGTTTCGACCCCAGAGCTCTGTGTGCTTTCTGTTGCTGCTTTATTTCGACCCCAGAGCTCTGGTCTGTGTGCTTTCATGTCGCTGCTTTATTAAATCTTACCTTCTACATTTTATGTATGGTCTCAGTGTCTTCTTGGGTACGCGGCTGTCCCGGGACTTGAGTGTCTGAGTGAGGGTCTTCCCTCGAGGGTCTTTCATTTGGTACATGGGCCGGGAATTCGAGAATCTTTCATTTGGTGCATTGGCCGGGAATTCGAAAATCTTTCATT
129 >RN91ES8 R.norvegicus 91ES8 DNA sequence.
130 GAATTCTGTCCGTTCCAGGCTGGAAAGGCTTGTAGGAAGTTGACTTTGGAGATAAAAAAAAAAGCCCCTTTTTTCCTTTTACAAAGTGAATCGTTCTTACTTGGTGATTAAGCTTAGTTTTAAGTAGTTCTATATGGTAAAAAGCATACTTTTCTATATAGACGAAAAATCCTTTTCCCAGTCTCAATATCTCATTCTTTGGC
131 >CENSAT Centromeric satellite DNA; satellite DNA.
132 ACATAGTATATGAGTGAGTTGCACTGAAAAACTTAGAATATAAGAAACGCACAGTGTAGT
133 >A Simple repeat pattern
134 AAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAA
135 >C Simple repeat pattern
136 CCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCC
137 >AC Simple repeat pattern
138 ACACACACACACACACACACACACACACACACACACACACACACACACACACACACACACACACACACA
139 >AT Simple repeat pattern
140 ATATATATATATATATATATATATATATATATATATATATATATATATATATATATATATATATATATA
141 >AG Simple repeat pattern
142 AGAGAGAGAGAGAGAGAGAGAGAGAGAGAGAGAGAGAGAGAGAGAGAGAGAGAGAGAGAGAGAGAGAGA
143 >CG Simple repeat pattern
144 CGCGCGCGCGCGCGCGCGCGCGCGCGCGCGCGCGCGCGCGCGCGCGCGCGCGCGCGCGCGCGCGCGCGC
145 >GCC Simple repeat pattern
146 GCCGCCGCCGCCGCCGCCGCCGCCGCCGCCGCCGCCGCCGCCGCCGCCGCCGCCGCCGCCGCCGCCGCC
147 >TAA Simple repeat pattern
148 TAATAATAATAATAATAATAATAATAATAATAATAATAATAATAATAATAATAATAATAATAATAATAA
149 >CAA Simple repeat pattern
150 CAACAACAACAACAACAACAACAACAACAACAACAACAACAACAACAACAACAACAACAACAACAACAA
151 >GCA Simple repeat pattern
152 GCAGCAGCAGCAGCAGCAGCAGCAGCAGCAGCAGCAGCAGCAGCAGCAGCAGCAGCAGCAGCAGCAGCA
153 >CTA Simple repeat pattern
154 CTACTACTACTACTACTACTACTACTACTACTACTACTACTACTACTACTACTACTACTACTACTACTA
155 >GGA Simple repeat pattern
156 GGAGGAGGAGGAGGAGGAGGAGGAGGAGGAGGAGGAGGAGGAGGAGGAGGAGGAGGAGGAGGAGGAGGA
157 >GAA Simple repeat pattern
158 GAAGAAGAAGAAGAAGAAGAAGAAGAAGAAGAAGAAGAAGAAGAAGAAGAAGAAGAAGAAGAAGAAGAA
159 >TCA Simple repeat pattern
160 TCATCATCATCATCATCATCATCATCATCATCATCATCATCATCATCATCATCATCATCATCATCATCA
161 >CCA Simple repeat pattern
162 CCACCACCACCACCACCACCACCACCACCACCACCACCACCACCACCACCACCACCACCACCACCACCA
163 >TAGA Simple repeat pattern
164 TAGATAGATAGATAGATAGATAGATAGATAGATAGATAGATAGATAGATAGATAGATAGATAGATAGAT
165 >CAAA Simple repeat pattern
166 CAAACAAACAAACAAACAAACAAACAAACAAACAAACAAACAAACAAACAAACAAACAAACAAACAAAC
167 >TAAA Simple repeat pattern
168 TAAATAAATAAATAAATAAATAAATAAATAAATAAATAAATAAATAAATAAATAAATAAATAAATAAAT
169 >GAAA Simple repeat pattern
170 GAAAGAAAGAAAGAAAGAAAGAAAGAAAGAAAGAAAGAAAGAAAGAAAGAAAGAAAGAAAGAAAGAAAG
171 >TCCA Simple repeat pattern
172 TCCATCCATCCATCCATCCATCCATCCATCCATCCATCCATCCATCCATCCATCCATCCATCCATCCAT
173 >CGAA Simple repeat pattern
174 CGAACGAACGAACGAACGAACGAACGAACGAACGAACGAACGAACGAACGAACGAACGAACGAACGAAC
175 >TGAA Simple repeat pattern
176 TGAATGAATGAATGAATGAATGAATGAATGAATGAATGAATGAATGAATGAATGAATGAATGAATGAAT
177 >CGGA Simple repeat pattern
178 CGGACGGACGGACGGACGGACGGACGGACGGACGGACGGACGGACGGACGGACGGACGGACGGACGGAC
179 >GGAA Simple repeat pattern
180 GGAAGGAAGGAAGGAAGGAAGGAAGGAAGGAAGGAAGGAAGGAAGGAAGGAAGGAAGGAAGGAAGGAAG
181 >TACA Simple repeat pattern
182 TACATACATACATACATACATACATACATACATACATACATACATACATACATACATACATACATACAT
183 >TCAA Simple repeat pattern
184 TCAATCAATCAATCAATCAATCAATCAATCAATCAATCAATCAATCAATCAATCAATCAATCAATCAAT
185 >GACA Simple repeat pattern
186 GACAGACAGACAGACAGACAGACAGACAGACAGACAGACAGACAGACAGACAGACAGACAGACAGACAG
187 >CCTA Simple repeat pattern
188 CCTACCTACCTACCTACCTACCTACCTACCTACCTACCTACCTACCTACCTACCTACCTACCTACCTAC
189 >GCCC Simple repeat pattern
190 GCCCGCCCGCCCGCCCGCCCGCCCGCCCGCCCGCCCGCCCGCCCGCCCGCCCGCCCGCCCGCCCGCCCG
191 >TTAA Simple repeat pattern
192 TTAATTAATTAATTAATTAATTAATTAATTAATTAATTAATTAATTAATTAATTAATTAATTAATTAAT
193 >GGGA Simple repeat pattern
194 GGGAGGGAGGGAGGGAGGGAGGGAGGGAGGGAGGGAGGGAGGGAGGGAGGGAGGGAGGGAGGGAGGGAG
195 >GGCA Simple repeat pattern
196 GGCAGGCAGGCAGGCAGGCAGGCAGGCAGGCAGGCAGGCAGGCAGGCAGGCAGGCAGGCAGGCAGGCAG
197 >GCCA Simple repeat pattern
198 GCCAGCCAGCCAGCCAGCCAGCCAGCCAGCCAGCCAGCCAGCCAGCCAGCCAGCCAGCCAGCCAGCCAG
199 >CAAAA Simple repeat pattern
200 CAAAACAAAACAAAACAAAACAAAACAAAACAAAACAAAACAAAACAAAACAAAACAAAACAAAACAAA
201 >TGGAA Simple repeat pattern
202 TGGAATGGAATGGAATGGAATGGAATGGAATGGAATGGAATGGAATGGAATGGAATGGAATGGAATGGA
203 >TAAAA Simple repeat pattern
204 TAAAATAAAATAAAATAAAATAAAATAAAATAAAATAAAATAAAATAAAATAAAATAAAATAAAATAAA
205 >GCCCA Simple repeat pattern
206 GCCCAGCCCAGCCCAGCCCAGCCCAGCCCAGCCCAGCCCAGCCCAGCCCAGCCCAGCCCAGCCCAGCCC
207 >GCTCA Simple repeat pattern
208 GCTCAGCTCAGCTCAGCTCAGCTCAGCTCAGCTCAGCTCAGCTCAGCTCAGCTCAGCTCAGCTCAGCTC
209 >GAAAA Simple repeat pattern
210 GAAAAGAAAAGAAAAGAAAAGAAAAGAAAAGAAAAGAAAAGAAAAGAAAAGAAAAGAAAAGAAAAGAAA
211 >TACAA Simple repeat pattern
212 TACAATACAATACAATACAATACAATACAATACAATACAATACAATACAATACAATACAATACAATACA
213 >CTCCA Simple repeat pattern
214 CTCCACTCCACTCCACTCCACTCCACTCCACTCCACTCCACTCCACTCCACTCCACTCCACTCCACTCC
215 >TCTAA Simple repeat pattern
216 TCTAATCTAATCTAATCTAATCTAATCTAATCTAATCTAATCTAATCTAATCTAATCTAATCTAATCTA
217 >TAGAA Simple repeat pattern
218 TAGAATAGAATAGAATAGAATAGAATAGAATAGAATAGAATAGAATAGAATAGAATAGAATAGAATAGA
219 >GGAGA Simple repeat pattern
220 GGAGAGGAGAGGAGAGGAGAGGAGAGGAGAGGAGAGGAGAGGAGAGGAGAGGAGAGGAGAGGAGAGGAG
221 >TTAAA Simple repeat pattern
222 TTAAATTAAATTAAATTAAATTAAATTAAATTAAATTAAATTAAATTAAATTAAATTAAATTAAATTAA
223 >GCCCC Simple repeat pattern
224 GCCCCGCCCCGCCCCGCCCCGCCCCGCCCCGCCCCGCCCCGCCCCGCCCCGCCCCGCCCCGCCCCGCCC
225 >GCGCA Simple repeat pattern
226 GCGCAGCGCAGCGCAGCGCAGCGCAGCGCAGCGCAGCGCAGCGCAGCGCAGCGCAGCGCAGCGCAGCGC
227 >GGGGA Simple repeat pattern
228 GGGGAGGGGAGGGGAGGGGAGGGGAGGGGAGGGGAGGGGAGGGGAGGGGAGGGGAGGGGAGGGGAGGGG
229 >GGCCC Simple repeat pattern
230 GGCCCGGCCCGGCCCGGCCCGGCCCGGCCCGGCCCGGCCCGGCCCGGCCCGGCCCGGCCCGGCCCGGCC
231 >TCCCA Simple repeat pattern
232 TCCCATCCCATCCCATCCCATCCCATCCCATCCCATCCCATCCCATCCCATCCCATCCCATCCCATCCC
233 >CCCCA Simple repeat pattern
234 CCCCACCCCACCCCACCCCACCCCACCCCACCCCACCCCACCCCACCCCACCCCACCCCACCCCACCCC
235 >CCCTAA Simple repeat pattern
236 CCCTAACCCTAACCCTAACCCTAACCCTAACCCTAACCCTAACCCTAACCCTAACCCTAACCCTAACCC
237 >CCCGAA Simple repeat pattern
238 CCCGAACCCGAACCCGAACCCGAACCCGAACCCGAACCCGAACCCGAACCCGAACCCGAACCCGAACCC
239 >TATACA Simple repeat pattern
240 TATACATATACATATACATATACATATACATATACATATACATATACATATACATATACATATACATAT
241 >TCACCA Simple repeat pattern
242 TCACCATCACCATCACCATCACCATCACCATCACCATCACCATCACCATCACCATCACCATCACCATCA
243 >CCCCAA Simple repeat pattern
244 CCCCAACCCCAACCCCAACCCCAACCCCAACCCCAACCCCAACCCCAACCCCAACCCCAACCCCAACCC
245 >CAAAAA Simple repeat pattern
246 CAAAAACAAAAACAAAAACAAAAACAAAAACAAAAACAAAAACAAAAACAAAAACAAAAACAAAAACAA
247 >CCCTCA Simple repeat pattern
248 CCCTCACCCTCACCCTCACCCTCACCCTCACCCTCACCCTCACCCTCACCCTCACCCTCACCCTCACCC
249 >GCCCCC Simple repeat pattern
250 GCCCCCGCCCCCGCCCCCGCCCCCGCCCCCGCCCCCGCCCCCGCCCCCGCCCCCGCCCCCGCCCCCGCC
251 >GAAAAA Simple repeat pattern
252 GAAAAAGAAAAAGAAAAAGAAAAAGAAAAAGAAAAAGAAAAAGAAAAAGAAAAAGAAAAAGAAAAAGAA
253 >GGAGAA Simple repeat pattern
254 GGAGAAGGAGAAGGAGAAGGAGAAGGAGAAGGAGAAGGAGAAGGAGAAGGAGAAGGAGAAGGAGAAGGA
255 >CCCCCA Simple repeat pattern
256 CCCCCACCCCCACCCCCACCCCCACCCCCACCCCCACCCCCACCCCCACCCCCACCCCCACCCCCACCC
257 >TAAAAA Simple repeat pattern
258 TAAAAATAAAAATAAAAATAAAAATAAAAATAAAAATAAAAATAAAAATAAAAATAAAAATAAAAATAA
259 >GGGAGA Simple repeat pattern
260 GGGAGAGGGAGAGGGAGAGGGAGAGGGAGAGGGAGAGGGAGAGGGAGAGGGAGAGGGAGAGGGAGAGGG
261 >GCCCCA Simple repeat pattern
262 GCCCCAGCCCCAGCCCCAGCCCCAGCCCCAGCCCCAGCCCCAGCCCCAGCCCCAGCCCCAGCCCCAGCC
263 >GGGGGA Simple repeat pattern
264 GGGGGAGGGGGAGGGGGAGGGGGAGGGGGAGGGGGAGGGGGAGGGGGAGGGGGAGGGGGAGGGGGAGGG
265 >GAGACA Simple repeat pattern
266 GAGACAGAGACAGAGACAGAGACAGAGACAGAGACAGAGACAGAGACAGAGACAGAGACAGAGACAGAG
267 >A Simple repeat pattern
268 TTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTT
269 >C Simple repeat pattern
270 GGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGG
271 >AC Simple repeat pattern
272 TGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGT
273 >AT Simple repeat pattern
274 TATATATATATATATATATATATATATATATATATATATATATATATATATATATATATATATATATAT
275 >AG Simple repeat pattern
276 TCTCTCTCTCTCTCTCTCTCTCTCTCTCTCTCTCTCTCTCTCTCTCTCTCTCTCTCTCTCTCTCTCTCT
277 >CG Simple repeat pattern
278 GCGCGCGCGCGCGCGCGCGCGCGCGCGCGCGCGCGCGCGCGCGCGCGCGCGCGCGCGCGCGCGCGCGCG
279 >GCC Simple repeat pattern
280 GGCGGCGGCGGCGGCGGCGGCGGCGGCGGCGGCGGCGGCGGCGGCGGCGGCGGCGGCGGCGGCGGCGGC
281 >TAA Simple repeat pattern
282 TTATTATTATTATTATTATTATTATTATTATTATTATTATTATTATTATTATTATTATTATTATTATTA
283 >CAA Simple repeat pattern
284 TTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTG
285 >GCA Simple repeat pattern
286 TGCTGCTGCTGCTGCTGCTGCTGCTGCTGCTGCTGCTGCTGCTGCTGCTGCTGCTGCTGCTGCTGCTGC
287 >CTA Simple repeat pattern
288 TAGTAGTAGTAGTAGTAGTAGTAGTAGTAGTAGTAGTAGTAGTAGTAGTAGTAGTAGTAGTAGTAGTAG
289 >GGA Simple repeat pattern
290 TCCTCCTCCTCCTCCTCCTCCTCCTCCTCCTCCTCCTCCTCCTCCTCCTCCTCCTCCTCCTCCTCCTCC
291 >GAA Simple repeat pattern
292 TTCTTCTTCTTCTTCTTCTTCTTCTTCTTCTTCTTCTTCTTCTTCTTCTTCTTCTTCTTCTTCTTCTTC
293 >TCA Simple repeat pattern
294 TGATGATGATGATGATGATGATGATGATGATGATGATGATGATGATGATGATGATGATGATGATGATGA
295 >CCA Simple repeat pattern
296 TGGTGGTGGTGGTGGTGGTGGTGGTGGTGGTGGTGGTGGTGGTGGTGGTGGTGGTGGTGGTGGTGGTGG
297 >TAGA Simple repeat pattern
298 ATCTATCTATCTATCTATCTATCTATCTATCTATCTATCTATCTATCTATCTATCTATCTATCTATCTA
299 >CAAA Simple repeat pattern
300 GTTTGTTTGTTTGTTTGTTTGTTTGTTTGTTTGTTTGTTTGTTTGTTTGTTTGTTTGTTTGTTTGTTTG
301 >TAAA Simple repeat pattern
302 ATTTATTTATTTATTTATTTATTTATTTATTTATTTATTTATTTATTTATTTATTTATTTATTTATTTA
303 >GAAA Simple repeat pattern
304 CTTTCTTTCTTTCTTTCTTTCTTTCTTTCTTTCTTTCTTTCTTTCTTTCTTTCTTTCTTTCTTTCTTTC
305 >TCCA Simple repeat pattern
306 ATGGATGGATGGATGGATGGATGGATGGATGGATGGATGGATGGATGGATGGATGGATGGATGGATGGA
307 >CGAA Simple repeat pattern
308 GTTCGTTCGTTCGTTCGTTCGTTCGTTCGTTCGTTCGTTCGTTCGTTCGTTCGTTCGTTCGTTCGTTCG
309 >TGAA Simple repeat pattern
310 ATTCATTCATTCATTCATTCATTCATTCATTCATTCATTCATTCATTCATTCATTCATTCATTCATTCA
311 >CGGA Simple repeat pattern
312 GTCCGTCCGTCCGTCCGTCCGTCCGTCCGTCCGTCCGTCCGTCCGTCCGTCCGTCCGTCCGTCCGTCCG
313 >GGAA Simple repeat pattern
314 CTTCCTTCCTTCCTTCCTTCCTTCCTTCCTTCCTTCCTTCCTTCCTTCCTTCCTTCCTTCCTTCCTTCC
315 >TACA Simple repeat pattern
316 ATGTATGTATGTATGTATGTATGTATGTATGTATGTATGTATGTATGTATGTATGTATGTATGTATGTA
317 >TCAA Simple repeat pattern
318 ATTGATTGATTGATTGATTGATTGATTGATTGATTGATTGATTGATTGATTGATTGATTGATTGATTGA
319 >GACA Simple repeat pattern
320 CTGTCTGTCTGTCTGTCTGTCTGTCTGTCTGTCTGTCTGTCTGTCTGTCTGTCTGTCTGTCTGTCTGTC
321 >CCTA Simple repeat pattern
322 GTAGGTAGGTAGGTAGGTAGGTAGGTAGGTAGGTAGGTAGGTAGGTAGGTAGGTAGGTAGGTAGGTAGG
323 >GCCC Simple repeat pattern
324 CGGGCGGGCGGGCGGGCGGGCGGGCGGGCGGGCGGGCGGGCGGGCGGGCGGGCGGGCGGGCGGGCGGGC
325 >TTAA Simple repeat pattern
326 ATTAATTAATTAATTAATTAATTAATTAATTAATTAATTAATTAATTAATTAATTAATTAATTAATTAA
327 >GGGA Simple repeat pattern
328 CTCCCTCCCTCCCTCCCTCCCTCCCTCCCTCCCTCCCTCCCTCCCTCCCTCCCTCCCTCCCTCCCTCCC
329 >GGCA Simple repeat pattern
330 CTGCCTGCCTGCCTGCCTGCCTGCCTGCCTGCCTGCCTGCCTGCCTGCCTGCCTGCCTGCCTGCCTGCC
331 >GCCA Simple repeat pattern
332 CTGGCTGGCTGGCTGGCTGGCTGGCTGGCTGGCTGGCTGGCTGGCTGGCTGGCTGGCTGGCTGGCTGGC
333 >CAAAA Simple repeat pattern
334 TTTGTTTTGTTTTGTTTTGTTTTGTTTTGTTTTGTTTTGTTTTGTTTTGTTTTGTTTTGTTTTGTTTTG
335 >TGGAA Simple repeat pattern
336 TCCATTCCATTCCATTCCATTCCATTCCATTCCATTCCATTCCATTCCATTCCATTCCATTCCATTCCA
337 >TAAAA Simple repeat pattern
338 TTTATTTTATTTTATTTTATTTTATTTTATTTTATTTTATTTTATTTTATTTTATTTTATTTTATTTTA
339 >GCCCA Simple repeat pattern
340 GGGCTGGGCTGGGCTGGGCTGGGCTGGGCTGGGCTGGGCTGGGCTGGGCTGGGCTGGGCTGGGCTGGGC
341 >GCTCA Simple repeat pattern
342 GAGCTGAGCTGAGCTGAGCTGAGCTGAGCTGAGCTGAGCTGAGCTGAGCTGAGCTGAGCTGAGCTGAGC
343 >GAAAA Simple repeat pattern
344 TTTCTTTTCTTTTCTTTTCTTTTCTTTTCTTTTCTTTTCTTTTCTTTTCTTTTCTTTTCTTTTCTTTTC
345 >TACAA Simple repeat pattern
346 TGTATTGTATTGTATTGTATTGTATTGTATTGTATTGTATTGTATTGTATTGTATTGTATTGTATTGTA
347 >CTCCA Simple repeat pattern
348 GGAGTGGAGTGGAGTGGAGTGGAGTGGAGTGGAGTGGAGTGGAGTGGAGTGGAGTGGAGTGGAGTGGAG
349 >TCTAA Simple repeat pattern
350 TAGATTAGATTAGATTAGATTAGATTAGATTAGATTAGATTAGATTAGATTAGATTAGATTAGATTAGA
351 >TAGAA Simple repeat pattern
352 TCTATTCTATTCTATTCTATTCTATTCTATTCTATTCTATTCTATTCTATTCTATTCTATTCTATTCTA
353 >GGAGA Simple repeat pattern
354 CTCCTCTCCTCTCCTCTCCTCTCCTCTCCTCTCCTCTCCTCTCCTCTCCTCTCCTCTCCTCTCCTCTCC
355 >TTAAA Simple repeat pattern
356 TTAATTTAATTTAATTTAATTTAATTTAATTTAATTTAATTTAATTTAATTTAATTTAATTTAATTTAA
357 >GCCCC Simple repeat pattern
358 GGGCGGGGCGGGGCGGGGCGGGGCGGGGCGGGGCGGGGCGGGGCGGGGCGGGGCGGGGCGGGGCGGGGC
359 >GCGCA Simple repeat pattern
360 GCGCTGCGCTGCGCTGCGCTGCGCTGCGCTGCGCTGCGCTGCGCTGCGCTGCGCTGCGCTGCGCTGCGC
361 >GGGGA Simple repeat pattern
362 CCCCTCCCCTCCCCTCCCCTCCCCTCCCCTCCCCTCCCCTCCCCTCCCCTCCCCTCCCCTCCCCTCCCC
363 >GGCCC Simple repeat pattern
364 GGCCGGGCCGGGCCGGGCCGGGCCGGGCCGGGCCGGGCCGGGCCGGGCCGGGCCGGGCCGGGCCGGGCC
365 >TCCCA Simple repeat pattern
366 GGGATGGGATGGGATGGGATGGGATGGGATGGGATGGGATGGGATGGGATGGGATGGGATGGGATGGGA
367 >CCCCA Simple repeat pattern
368 GGGGTGGGGTGGGGTGGGGTGGGGTGGGGTGGGGTGGGGTGGGGTGGGGTGGGGTGGGGTGGGGTGGGG
369 >CCCTAA Simple repeat pattern
370 GGGTTAGGGTTAGGGTTAGGGTTAGGGTTAGGGTTAGGGTTAGGGTTAGGGTTAGGGTTAGGGTTAGGG
371 >CCCGAA Simple repeat pattern
372 GGGTTCGGGTTCGGGTTCGGGTTCGGGTTCGGGTTCGGGTTCGGGTTCGGGTTCGGGTTCGGGTTCGGG
373 >TATACA Simple repeat pattern
374 ATATGTATATGTATATGTATATGTATATGTATATGTATATGTATATGTATATGTATATGTATATGTATA
375 >TCACCA Simple repeat pattern
376 TGATGGTGATGGTGATGGTGATGGTGATGGTGATGGTGATGGTGATGGTGATGGTGATGGTGATGGTGA
377 >CCCCAA Simple repeat pattern
378 GGGTTGGGGTTGGGGTTGGGGTTGGGGTTGGGGTTGGGGTTGGGGTTGGGGTTGGGGTTGGGGTTGGGG
379 >CAAAAA Simple repeat pattern
380 TTGTTTTTGTTTTTGTTTTTGTTTTTGTTTTTGTTTTTGTTTTTGTTTTTGTTTTTGTTTTTGTTTTTG
381 >CCCTCA Simple repeat pattern
382 GGGTGAGGGTGAGGGTGAGGGTGAGGGTGAGGGTGAGGGTGAGGGTGAGGGTGAGGGTGAGGGTGAGGG
383 >GCCCCC Simple repeat pattern
384 GGCGGGGGCGGGGGCGGGGGCGGGGGCGGGGGCGGGGGCGGGGGCGGGGGCGGGGGCGGGGGCGGGGGC
385 >GAAAAA Simple repeat pattern
386 TTCTTTTTCTTTTTCTTTTTCTTTTTCTTTTTCTTTTTCTTTTTCTTTTTCTTTTTCTTTTTCTTTTTC
387 >GGAGAA Simple repeat pattern
388 TCCTTCTCCTTCTCCTTCTCCTTCTCCTTCTCCTTCTCCTTCTCCTTCTCCTTCTCCTTCTCCTTCTCC
389 >CCCCCA Simple repeat pattern
390 GGGTGGGGGTGGGGGTGGGGGTGGGGGTGGGGGTGGGGGTGGGGGTGGGGGTGGGGGTGGGGGTGGGGG
391 >TAAAAA Simple repeat pattern
392 TTATTTTTATTTTTATTTTTATTTTTATTTTTATTTTTATTTTTATTTTTATTTTTATTTTTATTTTTA
393 >GGGAGA Simple repeat pattern
394 CCCTCTCCCTCTCCCTCTCCCTCTCCCTCTCCCTCTCCCTCTCCCTCTCCCTCTCCCTCTCCCTCTCCC
395 >GCCCCA Simple repeat pattern
396 GGCTGGGGCTGGGGCTGGGGCTGGGGCTGGGGCTGGGGCTGGGGCTGGGGCTGGGGCTGGGGCTGGGGC
397 >GGGGGA Simple repeat pattern
398 CCCTCCCCCTCCCCCTCCCCCTCCCCCTCCCCCTCCCCCTCCCCCTCCCCCTCCCCCTCCCCCTCCCCC
399 >GAGACA Simple repeat pattern
400 CTCTGTCTCTGTCTCTGTCTCTGTCTCTGTCTCTGTCTCTGTCTCTGTCTCTGTCTCTGTCTCTGTCTC