2 <!-- NOTE: THIS FILE IS DEPRECATED. DO ***NOT*** EDIT THIS FILE. Edit the file in /data/prod/public/sgn_homepage -->
3 <div class="subheading">
4 <a href="http://sgn.cornell.edu/chado/publication.pl?pub_id=18033"> HPLC Assay of Tomato Carotenoids: Validation of a Rapid Microextraction Technique.</a></div>
5 <div class="boxsubcontent">
6 Serino et al. J. Agric. Food Chem. (2009).
9 <div class="subheading">
10 <a href="http://sgn.cornell.edu/chado/publication.pl?pub_id=18031"> Brassinosteroids interact negatively with jasmonates in the formation of anti-herbivory traits in tomato</a></div>
11 <div class="boxsubcontent">
12 Campos et al. J. Exp. Bot (2009).
15 <div class="subheading">
16 <a href="http://sgn.cornell.edu/chado/publication.pl?pub_id=18027">Virus resistance induced by NB-LRR proteins involves Argonaute4-dependent translational control.</a></div>
17 <div class="boxsubcontent">
18 Bhattacharjee et al. The Plant J. (2009).
21 <div class="subheading">
22 <a href="http://sgn.cornell.edu/chado/publication.pl?pub_id=18007"> The potato R locus codes for dihydroflavonol 4-reductase. </a></div>
23 <div class="boxsubcontent">
24 Zhang et al. TAG. (2009).
27 <div class="subheading">
28 <a href="http://sgn.cornell.edu/chado/publication.pl?pub_id=17982"> Genome organization of the tomato sun locus and characterization of the unusual retrotransposon Rider. </a></div>
29 <div class="boxsubcontent">
30 Jiang et al. Plant J. (2009).
33 <div class="subheading">
34 <a href="http://sgn.cornell.edu/chado/publication.pl?pub_id=17988">A dynamic interface for capsaicinoid systems biology. </a></div>
35 <div class="boxsubcontent">
36 Mazourek et al. Plant Physiol. (2009).
39 <div class="subheading">
40 <a href="http://sgn.cornell.edu/chado/publication.pl?pub_id=17872">A Solanum lycopersicum x Solanum pimpinellifolium Linkage Map of Tomato Displaying Genomic Locations of R-Genes, RGAs, and Candidate Resistance/Defense-Response ESTs. </a></div>
41 <div class="boxsubcontent">
42 Sharma et al. Int J Plant Genomics (2008).
45 <div class="subheading">
46 <a href="http://sgn.cornell.edu/chado/publication.pl?pub_id=17941">Molecular characterization and expression analysis of two distinct putrescine N-methyltransferases from roots of Anisodus acutangulus.</a></div>
47 <div class="boxsubcontent">
48 Kai et al. Physiol Plant. (2009).
51 <div class="subheading">
52 <a href="http://sgn.cornell.edu/chado/publication.pl?pub_id=17932">The role of auxin and gibberellin in tomato fruit set.</a></div>
53 <div class="boxsubcontent">
54 de Jong et al. J Exp. Bot.(2009).
57 <a href="http://sgn.cornell.edu/chado/publication.pl?pub_id=17878"> Durability of Resistance in Tomato and Pepper to Xanthomonads Causing Bacterial Spot.</a></div>
58 <div class="boxsubcontent">
59 Stall et al. Annu. Rev. Phytopathol. (2009).
62 <div class="subheading">
63 <a href="http://sgn.cornell.edu/chado/publication.pl?pub_id=17924">The flowering hormone florigen functions as a general systemic regulator of growth and termination.</a></div>
64 <div class="boxsubcontent">
65 Shalit et al. PNAS (2009).
68 <div class="subheading">
69 <a href="http://sgn.cornell.edu/chado/publication.pl?pub_id=17873">Leucine Aminopeptidase Regulates Defense and Wound Signaling in Tomato Downstream of Jasmonic Acid</a></div>
70 <div class="boxsubcontent">
71 Fowler et al. Plant Cell (2009).
74 <div class="subheading">
75 <a href="http://sgn.cornell.edu/chado/publication.pl?pub_id=17869">Improving plant stress tolerance and yield production: is the tonoplast aquaporin SlTIP2;2 a key to isohydric to anisohydric conversion?</a></div>
76 <div class="boxsubcontent">
77 Sade et al. The New phytologist (2009).
80 <div class="subheading">
81 <a href="http://sgn.cornell.edu/chado/publication.pl?pub_id=17864">The NAC-domain transcription factor GOBLET specifies leaflet boundaries in compound tomato leaves.</a></div>
82 <div class="boxsubcontent">
83 Berger et al. Development (2009).
86 <div class="subheading">
87 <a href="http://sgn.cornell.edu/chado/publication.pl?pub_id=17854">Co-ordinated regulation of flowering time, plant architecture and growth by FASCICULATE: the pepper orthologue of SELF PRUNING.</a></div>
88 <div class="boxsubcontent">
89 Elitzur et al. J Exp Bot. (2009).
93 <div class="subheading">
94 <a href="http://www3.interscience.wiley.com/journal/121587989/abstract?">Crosstalk between biotic and abiotic stress responses in tomato is mediated by the AIM1 transcription factor</a></div>
95 <div class="boxsubcontent">
96 AbuQamar et al. Plant J. (2008).
99 <a href="http://jxb.oxfordjournals.org/cgi/content/abstract/ern294v1">Flavour compounds in tomato fruits: identification of loci and potential pathways affecting volatile composition</a></div>
100 <div class="boxsubcontent">
101 Mathieu et al. J Exp. Bot. (2008).
104 <div class="subheading">
105 <a href="/chado/publication.pl?pub_id=17849">A conserved molecular framework for compound leaf development</a></div>
106 <div class="boxsubcontent">
107 Blein et al. Science (2008).
110 <div class="subheading">
111 <a href="/chado/publication.pl?pub_id=17846">SlTPR1, a tomato tetratricopeptide repeat protein, interacts with the ethylene receptors NR and LeETR1, modulating ethylene and auxin responses and development</a></div>
112 <div class="boxsubcontent">
113 Lin et al. J Exp Bot. (2008).
116 <div class="subheading">
117 <a href="/chado/publication.pl?pub_id=17842">The Making of a Compound Inflorescence in Tomato and Related Nightshades</a></div>
118 <div class="boxsubcontent">
119 Lippman et al. PLoS Biology (2008).
122 <a href="http://www.plantphysiol.org/cgi/content/abstract/pp.108.131367v1">Aucsia Genes Silencing Causes Parthenocarpic Fruit Development in Tomato</a></div>
123 <div class="boxsubcontent">
124 Molesini et al. Plant Physiol.(2000).
127 <div class="subheading">
128 <a href="http://www.springerlink.com/content/5fb2t6ut34ajnwg3/">Molecular characterization of the expression of distinct classes of cyclins during the early development of tomato fruit</a></div>
129 <div class="boxsubcontent">
130 Joubes et al. Planta (2000).
133 <div class="subheading">
134 <a href="http://www.nature.com/nbt/journal/vaop/ncurrent/abs/nbt.1506.html">Enrichment of tomato fruit with health-promoting anthocyanins by expression of select transcription factors</a></div>
135 <div class="boxsubcontent">
136 Butelli et al. Nat Biotechnol. (2008).
139 <a href="http://www.springerlink.com/content/m2127743g8261878/"> Phenotypic and genetic characterization of the pistillate mutation in tomato</a></div>
140 <div class="boxsubcontent">
141 Olimpieri and Mazzucato. TAG (2008).
144 <div class="subheading">
145 <a href="http://www.plantphysiol.org/cgi/content/abstract/pp.108.124420v1">The Pollen Receptor Kinase LePRK2 Mediates Growth-Promoting Signals and Positively Regulates Pollen Germination and Tube Growth</a></div>
146 <div class="boxsubcontent">
147 Zhang et al. Plant Physiol. (2008).
150 <div class="subheading">
151 <a href=" http://www3.interscience.wiley.com/journal/121391359/abstract">The <i>legwd</i> mutant uncovers the role of starch phosphorylation in pollen development and germination in tomato</a></div>
152 <div class="boxsubcontent">
153 Nashilevitz et al. Plant J. (2008).
156 <div class="subheading">
157 <a href="http://www3.interscience.wiley.com/journal/121398965/abstract">The Solanum lycopersicum Auxin Response Factor 7 (SlARF7) Regulates Auxin Signaling during Tomato Fruit Set and Development</a></div>
158 <div class="boxsubcontent">
159 de Jong et al. Plant J. (2008).
163 <div class="subheading">
164 <a href="http://www3.interscience.wiley.com/journal/120776986/abstract">High-resolution chromosome mapping of BACs using multi-colour FISH and pooled-BAC FISH as a backbone for sequencing tomato chromosome 6</a></div>
165 <div class="boxsubcontent">
166 Szinay et al. Plant J. (2008).
169 <div class="subheading">
170 <a href="http://www.springerlink.com/content/910r5l07277n4rx7/">FISH mapping and molecular organizaton of the major repetitive sequences of tomato</a></div>
171 <div class="boxsubcontent">
172 Chang et al. Chromosome Res. (2008).
175 <div class="subheading">
176 <a href="http://www3.interscience.wiley.com/journal/121377235/abstract">Auxin-induced fruit-set in tomato is mediated in part by giberrellins</a></div>
177 <div class="boxsubcontent">
178 Serrani et al. Plant J. (2008).
181 <a href="http://genome.cshlp.org/cgi/content/abstract/gr.080127.108v1">Deep sequencing of tomato short RNAs identifies microRNAs targeting genes involved in fruit ripening</a></div>
182 <div class="boxsubcontent">
183 Moxon et al. Genome Res. (2008).
186 <div class="subheading">
187 <a href="http://jxb.oxfordjournals.org/cgi/content/abstract/59/8/2253">Interaction study of MADS-domain proteins in tomato </a></div>
188 <div class="boxsubcontent">
189 Leseberg et al. J Exp Bot. (2008).
192 <div class="subheading">
193 <a href="http://www.ncbi.nlm.nih.gov/pubmed/18640618">A snapshot of the Chinese SOL Project</a></div>
194 <div class="boxsubcontent">
195 Li et al. J Genet Genomics (2008).
198 <div class="subheading">
199 <a href="http://www.nature.com/ng/journal/v40/n6/full/ng.144.html#abs">Regulatory change in YABBY-like transcription factor led to evolution of extreme fruit size during tomato domestication</a></div>
200 <div class="boxsubcontent">
201 Cong et al. Nature Genetics (2008).
204 <div class="subheading">
205 <a href="http://www.plantcell.org/cgi/content/abstract/tpc.108.059477v2">Tomato Protein Kinase 1b Mediates Signaling of Plant Responses to Necrotrophic Fungi and Insect Herbivor</a></div>
206 <div class="boxsubcontent">
207 AbuQamar et al. Plant Cell (2008).
210 <div class="subheading">
211 <a href="http://www.springerlink.com/content/dr74356443013511/"> P19-dependent and P19-independent reversion of F1-V gene silencing in tomato</a></div>
212 <div class="boxsubcontent">
213 Alvarez et al. Plant Mol. Biol. (2008).
217 <div class="subheading">
218 <a href="http://jxb.oxfordjournals.org/cgi/content/full/ern153v1">Hormonal changes during salinity-induced leaf senescence in tomato (Solanum lycopersicum L.)</a></div>
219 <div class="boxsubcontent">
220 Ghanem et al. J Exp Bot. (2008).
223 <div class="subheading">
224 <a href="http://www.springerlink.com/content/du66488g5u321144">A GAMYB-like gene in tomato and its expression during seed germination</a></div>
225 <div class="boxsubcontent">
226 Gong and Bewley. Planta (2008).
229 <div class="subheading">
230 <a href="http://www.springerlink.com/content/y2pr607243p63306"> Molecular identification and characterization of the tomato flagellin receptor LeFLS2, an orthologue of Arabidopsis FLS2 exhibiting characteristically different perception specificities</a></div>
231 <div class="boxsubcontent">
232 Robatzek S. et al. Plant Mol Biol. (2007).
235 <div class="subheading">
236 <a href="http://www.nature.com/emboj/journal/v25/n1/full/7600910a.html">Adi3 is a Pdk1-interacting AGC kinase that negatively regulates plant cell death.</a></div>
237 <div class="boxsubcontent">
238 Devarenne, T. P. et al. The EMBO J. (2006).
242 <div class="subheading">
243 <a href="http://www.springerlink.com/content/v8823pk7h7g51733/">Tissue dependent variations of DNA methylation and endoreduplication levels during tomato fruit development and ripening</a></div>
244 <div class="boxsubcontent">
245 Teyssier, E. et al. Planta (2008).
249 <div class="subheading">
250 <a href="http://bioinformatics.oxfordjournals.org/cgi/content/full/24/3/422">The SGN comparative map viewer</a></div>
251 <div class="boxsubcontent">
252 Mueller L.A. et al. Bioinformatics (2008).
255 <div class="subheading">
256 <a href= "http://www.biomedcentral.com/1471-2229/8/34">Comparative BAC end sequence analysis of tomato and potato reveals overrepresentation of specific gene families in potato</a></div>
257 <div class="boxsubcontent">
258 Datema E. et al. BMC Plant Biol. (2008).
261 <div class="subheading">
262 <a href= "http://www.pnas.org/cgi/content/abstract/99/20/13302">A new class of regulatory genes underlying the cause of pear-shaped tomato fruit.</a></div>
263 <div class="boxsubcontent">
264 Liu J et al. PNAS (2002).
267 <div class="subheading">
268 <a href= "http://www.blackwell-synergy.com/doi/abs/10.1111/j.1399-3054.2007.01035.x">Characterization of genes controlling stamen identity and development in a parthenocarpic tomato mutant indicates a role for the DEFICIENS ortholog in the control of fruit set</a></div>
269 <div class="boxsubcontent">
270 Mazzucato A. et al. Physiol. Plant (2008).
273 <div class="subheading">
274 <a href= "http://www.sciencemag.org/cgi/content/abstract/319/5869/1527">A Retrotransposon-Mediated Gene Duplication Underlies Morphological Variation of Tomato Fruit</a ></div>
275 <div class="boxsubcontent">
276 Xiao H. et al. Science (2008).
279 <div class="subheading">
280 <a href= "http://www.blackwell-synergy.com/doi/abs/10.1111/j.1365-313X.2005.02410.x">The Pun1 gene for pungency in pepper encodes a putative acyltransferase.</a></div>
281 <div class="boxsubcontent">
285 <div class="subheading">
286 <a href= "http://www.blackwell-synergy.com/doi/abs/10.1046/j.1365-313X.1998.00202.x">Differential regulation of the tomato ETR gene family throughout plant development</a></div>
287 <div class="boxsubcontent">
288 Coralie C. Lashbrook, Denise M. Tieman & Harry J. Klee
292 <div class="subheading">
293 <a href="http://www.springerlink.com/content/u7082t0x00554128/">Synergism between the chaperone-like activity of the stress regulated ASR1 protein and the osmolyte glycine-betaine.</a></div>
294 <div class="boxsubcontent">
295 Zvia Konrad and Dudy Bar-Zvi
298 <div class="subheading">
299 <a href="http://www.plantphysiol.org/cgi/content/abstract/145/4/1435">A BELL1-like gene of potato is light activated and wound inducible.</a></div>
300 <div class="boxsubcontent">
301 Mithu Chatterjee, Anjan K. Banerjee and David J. Hannapel
302 Plant Physiology 145:1435-1443 (2007)
305 <div class="subheading">
306 <a href="http://www.blackwell-synergy.com/doi/abs/10.1111/j.1742-4658.2007.06219.x">Phytoene synthase genes in tomato (Solanum lycopersicum L.) - new data on the structures, the deduced amino acid sequences and the expression patterns</a></div>
307 <div class="boxsubcontent">
308 Giovanni Giorio, Adriana Lucia Stigliani, Caterina D'Ambrosio (2008)
309 FEBS Journal 275 (3), 527Ð535.
312 <div class="subheading">
313 <a href="http://www.springerlink.com/content/96076v7101171568/">The novel gene Ny-1 on potato chromosome IX confers hypersensitive resistance to Potato virus Y and is an alternative to Ry genes in potato breeding for PVY resistance</a></div>
314 <div class="boxsubcontent">
315 K. Szajko, M. Chrzanowska, K. Witek, D. Strzelczyk-Zyta, H. Zagórska, C. Gebhardt, J. Hennig and W. Marczewski
318 <div class="subheading">
319 <a href="http://www.biomedcentral.com/1471-2164/8/465">Diversity in conserved genes in tomato</a></div>
320 <div class="boxsubcontent">
321 Allen E Van Deynze, Kevin Stoffel, Robin C Buell, Alexander Kozik, Jia Liu, Esther van der Knaap and David Francis
324 <div class="subheading">
325 <a href="http://www.blackwell-synergy.com/doi/abs/10.1111/j.1365-313X.2007.03283.x?ai=sx&ui=93c9&af=T">Nitric oxide accumulation is required for molecular and physiological
326 responses to iron deficiency in tomato roots</a></div>
327 <div class="boxsubcontent">
328 Magdalena Graziano, Lorenzo Lamattina
331 <div class="subheading">
332 <a href="http://www.ncbi.nlm.nih.gov/sites/entrez?db=pubmed&cmd=search&term=17962563">Changes in regulation of a transcription factor lead to autogamy in cultivated tomatoes.</a></div>
333 <div class="boxsubcontent">
334 Chen KY, Cong B, Wing R, Vrebalov J, Tanksley SD. [Oct 26 2007]
337 <div class="subheading">
338 <a href="http://www.springerlink.com/content/r55007lg6r579v26">Tomato fruit set driven by pollination or by the parthenocarpic fruit allele are mediated by transcriptionally-regulated gibberellin biosynthesis.</a></div>
339 <div class="boxsubcontent">
340 Olimpieri I, Siligato F, Caccia R, Mariotti L, Ceccarelli N, Soressi GP, Mazzucato A [Oct 9, 2007]
343 <div class="subheading">
344 <a href="http://www.genetics.org/cgi/content/abstract/176/4/2131">Predicting and testing physical locations of genetically mapped loci on tomato pachytene chromosome <em>1</em></a></div>
345 <div class="boxsubcontent">
346 S.-B. Chang, L.K. Anderson, J.D. Sherman, S.M. Royer, and S.M. Stack. [Sept 27, 2007]
349 <div class="subheading">
350 <a href="http://www.pnas.org/cgi/content/abstract/0703203104v1">An inhibitor of viral RNA replication is encoded by a plant resistance gene</a></div>
351 <div class="boxsubcontent">
352 Kazuhiro Ishibashi, Kiyoshi Masuda, Satoshi Naito, Tetsuo Meshi, and Masayuki Ishikawa [Sept 4, 2007]
355 <div class="subheading">
356 <a href="http://www.ncbi.nlm.nih.gov/sites/entrez?db=pubmed&cmd=search&term=17637671">A bacterial E3 ubiquitin ligase targets a host protein kinase to disrupt plant immunity.</a></div>
357 <div class="boxsubcontent">
358 Rosebrock TR, Zeng L, Brady JJ, Abramovitch RB, Xiao F, Martin GB.
361 <div class="subheading">
362 <a href="/documents/community/feature/papers/gerats_natgen_2007.pdf">A conserved microRNA module exerts homeotic control over Petunia hybrida and Antirrhinum majus floral organ identity</a></div>
363 <div class="boxsubcontent">
364 Maria Cartolano, Rosa Castillo, Nadia Efremova, Markus Kuckenberg, Jan Zethof, Tom Gerats, Zsuzsanna Schwarz-Sommer and Michiel Vandenbussche
367 <div class="subheading">
368 <a target="_new" href="http://www.ncbi.nlm.nih.gov/sites/entrez?Db=pubmed&Cmd=ShowDetailView&TermToSearch=17587232&ordinalpos=4&itool=EntrezSystem2.PEntrez.Pubmed.Pubmed_ResultsPanel.Pubmed_RVDocSum">Capsicum annuum CCR4-associated factor CaCAF1 is necessary for plant development and defence response.</a></div>
369 <div class="boxsubcontent">
370 Sarowar S, Oh HW, Cho HS, Baek KH, Seong ES, Joung YH, Choi GJ, Lee S, Choi D.
373 <div class="subheading">
374 <a href="http://www.ncbi.nlm.nih.gov/entrez/query.fcgi?db=pubmed&cmd=Retrieve&dopt=AbstractPlus&list_uids=17486095">Regulation of LANCEOLATE by miR319 is required for compound-leaf development in tomato</a>
376 <div class="boxsubcontent">
377 Ori N, Cohen AR, Etzioni A, Brand A, Yanai O, Shleizer S, Menda N, Amsellem Z, Efroni I, Pekker I, Alvarez JP, Blum E, Zamir D, Eshed Y. Nat. Genet. [May 7, 2007]
380 <div class="subheading">
381 <a href="/documents/community/feature/papers/journal.pone.0000350.pdf">Metabolic Engineering of Potato Carotenoid Content through Tuber-Specific Overexpression of a Bacterial Mini-Pathway</a>
383 <div class="boxsubcontent">
384 Diretto G, Al-Babili S, Tavazza R, Papacchioli V, Beyer P, et al. 2007. PLoS ONE 2(4): e350.
387 <div class="subheading">
388 <a href="http://www.ncbi.nlm.nih.gov/entrez/query.fcgi?db=pubmed&cmd=Retrieve&dopt=AbstractPlus&list_uids=16817548">The distribution of plant mating systems: study bias against obligately outcrossing species.</a>
390 <div class="boxsubcontent">
391 Igic B, Kohn JR. Evolution Int J Org Evolution. 2006 May;60(5):1098-103 [Mar 21, 2007]
394 <div class="subheading">
395 <a href="http://www.springerlink.com/content/u0740761j7683713/">Agronomic performance and transcriptional analysis of carotenoid
396 biosynthesis in fruits of transgenic HighCaro and control tomato lines under
397 field conditions.</a>
399 <div class="boxsubcontent">
400 Giovanni Giorio, Adriana Lucia Stigliani and Caterina D'Ambrosio.
401 Transgenic Res. 2006 <br />[Dec 13, 2006]
404 <div class="subheading">
405 <a href="http://www.springerlink.com/content/45286124n3v68157/">A microsatellite marker based linkage map of tobacco</a>
407 <div class="boxsubcontent">
408 Gregor Bindler, Rutger van der Hoeven, Irfan Gunduz, Jörg Plieske, Martin Ganal, Luca Rossi, Ferruccio Gadani and Paolo Donini [Dec 1, 2006]
411 <div class="subheading">
412 <a href="http://www.ncbi.nlm.nih.gov/entrez/query.fcgi?db=PubMed&cmd=search&term=Ellinger+Stehle">Tomatoes, tomato products and lycopene in the prevention and treatment of prostate cancer: do we have the evidence from intervention studies?
415 <div class="boxsubcontent">
416 Sabine Ellinger,Joerg Ellinger and Peter Stehle
419 <div class="subheading">
420 <a href="/documents/community/feature/papers/pepper.pdf">Characterization of Capsaicin synthase and identification of its gene (<i>csy1</i>) for pungency factor capsaicin in pepper (<i>Capsicum</i> sp.)
423 <div class="boxsubcontent">
424 B. C. Narasimha Prasad, Vinod Kumar, H. B. Gururaj, R. Parimalan, P. Giridhar, G. A. Ravishankar
427 <div class="subheading">
428 <a href="http://www.ncbi.nlm.nih.gov/entrez/query.fcgi?db=pubmed&cmd=Retrieve&dopt=AbstractPlus&list_uids=16832354&query_hl=2&itool=pubmed_docsum">A naturally occurring epigenetic mutation in an SBP-box transcription factor inhibits tomato fruit ripening. Nature Genetics
431 <div class="boxsubcontent">
432 Manning, K., Tor, M., Poole, M., Hong, Y., Thompson, A.J., King, G.J. , Giovannoni, J.J. and Seymour, G.B.
435 <div class="subheading">
436 <a href="/documents/community/feature/papers/taste_QTLs.pdf">Stability over genetic backgrounds, generations and years of quantitative trait locus (QTLs) for organoleptic quality in tomato
439 <div class="boxsubcontent">
440 J. Chaib, L. Lecomte, M. Buret, M. Causse
443 <div class="subheading">
444 <a href="/documents/community/feature/papers/Granell.pdf">Agroinjection of Tomato Fruits--A Tool for Rapid Functional Analysis of Transgenes Directly in Fruit</a>
446 <div class="boxsubcontent">
447 Diego Orzaez, Sophie Mirabel, Willemien H. Wieland, and Antonio Granell
450 <div class="subheading">
451 <a href="/documents/community/feature/papers/Barry_et_al_06.pdf">Ripening in the tomato Green-ripe mutant is inhibited
452 by ectopic expression of a protein that disrupts
453 ethylene signaling</a>
455 <div class="boxsubcontent">
456 Cornelius S. Barry and James J. Giovannoni
459 <div class="subheading">
460 <a href="/documents/community/feature/papers/transcriptome_and_selected.pdf">Transcriptome and Selected Metabolite Analyses Reveal Multiple Points of Ethylene Control during Tomato Fruit Development</a>
462 <div class="boxsubcontent">
463 Rob Alba, Paxton Payton, Zhanjun Fei, Ryan McQuinn, Paul Debbie, Gregory B. Martin,
464 Steven D. Tanksley, and James J. Giovannoni
467 <div class="subheading">
468 <a href="http://www.ncbi.nlm.nih.gov/entrez/query.fcgi?cmd=Retrieve&db=pubmed&dopt=Abstract&list_uids=16273343&query_hl=1">Coffee and tomato share common gene repertoires as revealed by deep sequencing of seed and cherry transcripts.</a>
470 <div class="boxsubcontent">
471 Lin C, Mueller LA, McCarthy J, Crouzillat D, Petiard V, Tanksley SD.
473 <em>Theor Appl Genet. 2005 Nov 5;:1-17</em>
476 <p><strong>A single domestication for potato based on multilocus amplified fragment length polymorphism genotyping.</strong><br />
477 <a href="/documents/community/feature/PNAS-20051003-Spooner.pdf">David M. Spooner, Karen McLean, Gavin Ramsay, Robbie Waugh, and Glenn J. Bryan<br />
478 <em>Proc Natl Acad Sci U S A.</em> 2005 Oct 3</a></p>
480 <p><strong>New Species of Wild Tomatoes (Solanum Section Lycopersicon: Solanaceae) from Northern Peru.</strong><br />
481 <a href="/documents/community/feature/Peralta_et_al_2005_newtoms.pdf">Peralta, I. E., Knapp, S., Spooner, D. M<br />
482 <em>Systematic Botany</em> 2005 30(2): 424-434</a></p>
484 <p><strong>QTLs mapping for fruit size and
485 shape in chromosomes 2 and 4 in pepper and a comparison of the pepper QTL
486 map with that of tomato.</strong><br />
487 <a href="http://www.ncbi.nlm.nih.gov/entrez/query.fcgi?cmd=Retrieve&db=pubmed&dopt=Abstract&list_uids=15983758&query_hl=5">Zygier, S., A. B. Chaim, et al.<br />
488 <em>Theor Appl Genet.</em> 2005 Jun 28</a></p>
490 <p><strong>A model system for comparative research:
491 Petunia</strong><br />
493 "http://www.ncbi.nlm.nih.gov/entrez/query.fcgi?cmd=Retrieve&db=pubmed&dopt=Abstract&list_uids=15882658&query_hl=4">
494 Gerats T, Vandenbussche M.<br />
495 <em>Trends Plant Sci.</em> 2005 May; 10(5):
498 <p><strong>Comparative genomics enabled the isolation of the
499 R3a late blight resistance gene in potato</strong><br />
501 "http://www.ncbi.nlm.nih.gov/entrez/query.fcgi?cmd=Retrieve&db=pubmed&dopt=Abstract&list_uids=15807786">
502 Huang S, van der Vossen EA, Kuang H, Vleeshouwers VG,
503 Zhang N, Borm TJ, van Eck HJ, Baker B, Jacobsen E,
505 <em>Plant J.</em> 2005 Apr; 42(2): 251-61.</a></p>
507 <p><strong>Comparative analyses of genetic diversities
508 within tomato and pepper collections detected by
509 retrotransposon-based SSAP, AFLP and SSR</strong><br />
511 "http://www.ncbi.nlm.nih.gov/entrez/query.fcgi?cmd=Retrieve&db=pubmed&dopt=Abstract&list_uids=15700147">
512 Tam SM, Mhiri C, Vogelaar A, Kerkveld M, Pearce SR,
513 Grandbastien MA<br />
514 <em>Theor Appl Genet.</em> 2005 Feb 8.</a></p>
516 <p><strong>PoMaMo--a comprehensive database for potato
517 genome data</strong><br />
519 "http://www.ncbi.nlm.nih.gov/entrez/query.fcgi?cmd=Retrieve&db=pubmed&dopt=Abstract&list_uids=15608284">
520 Meyer S, Nagel A, Gebhardt C.<br />
521 <em>Nucl. Acids Res.</em> 2005 33: D666-670</a></p>
523 <p><strong>Zooming in on a Quantitative Trait for Tomato
524 Yield Using Interespecific Introgressions.</strong><br />
526 "http://www.ncbi.nlm.nih.gov/entrez/query.fcgi?cmd=Retrieve&db=pubmed&dopt=Abstract&list_uids=15375271">
527 Fridman, E.; Carrari, F.; Liu, Y.; Fernie, A.R. and
529 <em>Science</em> 305: 1786-1789.</a></p>
531 <p><strong>Comprehensive EST analysis of tomato and
532 comparative genomics of fruit ripening.</strong><br />
534 "http://www.ncbi.nlm.nih.gov/entrez/query.fcgi?cmd=Retrieve&db=pubmed&dopt=Abstract&list_uids=15361140">
535 Zhangjun Fei, Xuemei Tang, Rob M. Alba, Joseph A.
536 White, Catherine M. Ronning, Gregory B. Martin, Steven
537 D. Tanksley and James J. Giovannoni<br />
538 <em>The Plant Journal</em> 40: 47-59.</a></p>
540 <p><strong>Phylogenetic relationships in Nicotiana
541 (Solanaceae) inferred from multiple plastid DNA
542 regions.</strong><br />
544 "http://www.ncbi.nlm.nih.gov/entrez/query.fcgi?cmd=Retrieve&db=pubmed&dopt=Abstract&list_uids=15324840">
545 Clarkson JJ, Knapp S, Garcia VF, Olmstead RG, Leitch
547 <em>Mol Phylogenet Evol.</em> Oct;33(1):75-90.</a></p>
549 <p><strong>In silico screening of a saturated mutation
550 library of tomato.</strong><br />
552 "http://www.ncbi.nlm.nih.gov/entrez/query.fcgi?cmd=Retrieve&db=pubmed&dopt=Abstract&list_uids=15144386">
553 Menda, N; Semel, Y; Peled, D; Eshed, Y; Zamir, D.<br />
554 <em>The Plant Journal</em> 38: 861-872.</a></p>
556 <p><strong>Convergent evolution within the genus
557 <em>Solanum</em>: the specialized anther cone develops
558 through alternative pathways.</strong><br />
560 "http://www.ncbi.nlm.nih.gov/entrez/query.fcgi?cmd=Retrieve&db=pubmed&dopt=Abstract&list_uids=15094186">
561 Glover, B.J.; Bunnewell, S. and Martin C.<br />
562 <em>Gene</em> 331: 1-7.</a></p>
564 <p><strong>Tubulin-based polymorphism (TBP): a new tool,
565 based on funcionally relevant sequences, to assess
566 genetic diversity in plant species.</strong><br />
568 "http://www.ncbi.nlm.nih.gov/entrez/query.fcgi?cmd=Retrieve&db=pubmed&dopt=Abstract&list_uids=15060580">
569 Bardini, M, Lee,D, Donini, P, Mariani, A, Giani, S,
570 Toschi, M, Lowe, C and Breviario, D.<br />
571 <em>Genome</em> 47: 281-291.</a></p>
573 <p><strong>The tomato homolog of the gene encoding
574 UV-damaged DNA binding protein 1 (DDB1) underlined as
575 the gene that causes the high pigment-1 mutant
576 phenotype.</strong><br />
578 "http://www.ncbi.nlm.nih.gov/entrez/query.fcgi?cmd=Retrieve&db=pubmed&dopt=Abstract&list_uids=14968305">
579 Lieberman M, Segev O, Gilboa N, Lalazar A, Levin
581 <em>Theor Appl Genet</em>. 2004 Feb 14 [Epub ahead of
584 <p><strong>The TIGR Plant Repeat Databases: a collective
585 resource for the identification of repetitive sequences
586 in plants.</strong><br />
588 "http://www.ncbi.nlm.nih.gov/entrez/query.fcgi?cmd=Retrieve&db=pubmed&dopt=Abstract&list_uids=14681434">
589 Ouyang, S, Buell CR.<br />
590 <em>Nucleic Acids Res.</em> 32:D360-D363</a></p>
592 <p><strong>Structure and expression of phosphoenolpyruvate
593 carboxylase kinase genes in solanaceae. A novel gene
594 exhibits alternative splicing.</strong><br />
595 <a href="http://www.ncbi.nlm.nih.gov/entrez/query.fcgi?cmd=Retrieve&db=PubMed&list_uids=14630963&dopt=Abstract">
596 Marsh JT, Sullivan S, Hartwell J, Nimmo HG.<br />
597 <em>Plant Physiology</em> 133: 1-8.</a></p>
599 <p><strong>Construction of two BAC libraries from the wild
600 Mexican diploid potato, Solanum pinnatisectum, and the
601 identification of clones near the late blight and
602 Colorado potato beetle resistance loci.</strong><br />
604 "http://www.ncbi.nlm.nih.gov/entrez/query.fcgi?cmd=Retrieve&db=pubmed&dopt=Abstract&list_uids=15067385">
605 Chen Q, Sun S, Ye Q, McCuine S, Huff E, Zhang HB.<br />
606 <em>Theor Appl Genet.</em> 2003 Nov 20</a></p>
608 <p><strong>SINGLE FLOWER TRUSS regulates the transition and
609 maintenance of flowering in tomato</strong><br />
611 "http://www.ncbi.nlm.nih.gov/entrez/query.fcgi?cmd=Retrieve&db=PubMed&list_uids=14504922&dopt=Abstract">
612 Molinero-Rosales N, Latorre A, Jamilena M, Lozano
614 <em>Planta</em> 2003 Sep 23 [Epub ahead of print]</a></p>
616 <p><strong>Genetics of drought tolerance during seed
617 germination in tomato: inheritance and QTL
618 mapping</strong><br />
620 "http://www.ncbi.nlm.nih.gov/entrez/query.fcgi?cmd=Retrieve&db=PubMed&list_uids=12897861&dopt=Abstract">
621 Foolad MR, Zhang LP, Subbiah P<br />
622 <em>Genome</em> 2003 Aug;46(4):536-45</a></p>