首页> 外文OA文献 >Ancestral synteny shared between distantly-related plant species from the asterid (#Coffea canephora# and #Solanum# Sp.) and rosid (#Vitis vinifera#) clades
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Ancestral synteny shared between distantly-related plant species from the asterid (#Coffea canephora# and #Solanum# Sp.) and rosid (#Vitis vinifera#) clades

机译:星状(#Coffea canephora#和#Solanum#Sp。)和玫瑰色(#Vitis vinifera#)进化枝的远缘植物物种共有祖先同音

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摘要

Background: Coffee trees (Rubiaceae) and tomato (Solanaceae) belong to the Asterid clade, while grapevine (Vitaceae) belongs to the Rosid clade. Coffee and tomato separated from grapevine 125 million years ago, while coffee and tomato diverged 83-89 million years ago. These long periods of divergent evolution should have permitted the genomes to reorganize significantly. So far, very few comparative mappings have been performed between very distantly related species belonging to different clades. We report the first multiple comparison between species from Asterid and Rosid clades, to examine both macro-and microsynteny relationships. Results: Thanks to a set of 867 COSII markers, macrosynteny was detected between coffee, tomato and grapevine. While coffee and tomato genomes share 318 orthologous markers and 27 conserved syntenic segments (CSSs), coffee and grapevine also share a similar number of syntenic markers and CSSs: 299 and 29 respectively. Despite large genome macrostructure reorganization, several large chromosome segments showed outstanding macrosynteny shedding new insights into chromosome evolution between Asterids and Rosids. We also analyzed a sequence of 174 kb containing the ovate gene, conserved in a syntenic block between coffee, tomato and grapevine that showed a high-level of microstructure conservation. A higher level of conservation was observed between coffee and grapevine, both woody and long life-cycle plants, than between coffee and tomato. Out of 16 coffee genes of this syntenic segment, 7 and 14 showed complete synteny between coffee and tomato or grapevine, respectively. Conclusions: These results show that significant conservation is found between distantly related species from the Asterid (Coffea canephora and Solanum sp.) and Rosid (Vitis vinifera) clades, at the genome macrostructure and microstructure levels. At the ovate locus, conservation did not decline in relation to increasing phylogenetic distance, suggesting that the time factor alone does not explain divergences. Our results are considerably useful for syntenic studies between supposedly remote species for the isolation of important genes for agronomy. (Résumé d'auteur)
机译:背景:咖啡树(蔷薇科)和番茄(茄科)属于Asterid进化枝,而葡萄树(Vitaceae)则属于Rosid进化枝。在1.25亿年前,咖啡和番茄与葡萄分开,而在83-89百万年前,咖啡和番茄出现了分歧。这些漫长的分歧发展时期本应允许基因组显着重组。迄今为止,在属于不同进化枝的非常遥远的相关物种之间进行的比较映射很少。我们报告了Asterid和Rosid进化枝之间的物种之间的首次多重比较,以检验宏观和微观同步关系。结果:得益于一套867种COSII标记,在咖啡,番茄和葡萄之间检测到大同调。虽然咖啡和番茄基因组共享318个直系同源标记和27个保守同义片段(CSS),但咖啡和葡萄树也共享相似数量的同义标记和CSS:分别为299和29。尽管大型基因组宏观结构重组,但几个大的染色体片段显示出出色的宏观同步性,这为对Asterids和Rosids之间的染色体进化提供了新的见解。我们还分析了一个包含卵形基因的174 kb序列,该序列在咖啡,番茄和葡萄之间的同构区域中保守,显示出高水平的微观结构保守性。与木质咖啡和长寿植物相比,咖啡和葡萄藤之间的保护水平要高于咖啡和番茄之间的保护水平。在这个同义片段的16个咖啡基因中,分别有7个和14个咖啡和番茄或葡萄之间完全同义。结论:这些结果表明,在基因组的宏观结构和微观结构水平上,在紫杉(Coffea canephora和Solanum sp。)和紫苏(Vitis vinifera)进化枝的远缘物种之间发现了显着的保守性。在卵形位点,保守性并没有随着系统发育距离的增加而下降,这表明单独的时间因素并不能解释差异。我们的研究结果对于所谓的偏远物种之间用于农艺学重要基因分离的联合研究非常有用。 (Résuméd'auteur)

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