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首页> 外文期刊>Molecular phylogenetics and evolution >Phylogenetic and evolutionary analysis of NBS-encoding genes in Rosaceae fruit crops
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Phylogenetic and evolutionary analysis of NBS-encoding genes in Rosaceae fruit crops

机译:酒渣鼻水果作物中NBS编码基因的系统发生和进化分析

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摘要

Phylogenetic relationships of the nucleotide binding site (NBS)-encoding resistance gene homologues (RGHs) among 12 species in five genera of Rosaceae fruit crops were evaluated. A total of 228 Rosaceous RGHs were deeply separated into two distinct clades, designated as TIR (sequences within this clade containing a Toll Interleukin-1 Receptor domain) and NonTIR (sequences lacking a TIR domain). Most Rosaceous RGH genes were phylogenetically distinct from Arabidopsis, Rice or Pine genes, except for a few Rosaceous members which grouped closely with Arabidopsis genes. Within Rosaceae, sequences from multiple species were often phylogenetically clustered together, forming heterogenous groups, however, apple- and chestnut rose-specific groups really exist. Gene duplication followed by sequence divergence were proposed as the mode for the evolution of a large number of distantly or closely related RGH genes in Rosaceae, and this mode may play a role in the generation of new resistance specificity. Positively selected sites within NBS-coding region were detected and thus nucleotide variation within NBS domain may function in determining disease resistance specificity. This study also discusses the synteny of a genomic region that encompass powdery mildew resistance locus among Malus, Prunus and Rosa, which may have potential use for fruit tree disease breeding and important gene cloning.
机译:评价了蔷薇科果农5个属12个物种中编码核苷酸结合位点(NBS)的抗性基因同源物(RGH)的亲缘关系。总共228个蔷薇状RGH被深深分成两个不同的进化枝,分别称为TIR(该进化枝中包含Toll白介素1受体结构域的序列)和NonTIR(缺少TIR结构域的序列)。除少数与蔷薇科基因紧密相关的蔷薇科成员外,大多数蔷薇科RGH基因在系统发育上与拟南芥,水稻或松树基因不同。在蔷薇科中,来自多个物种的序列通常在系统发育上聚在一起,形成异质基团,但是,确实存在苹果和栗玫瑰特有的基团。提出了基因复制后序列差异作为酒渣鼻中大量远距离或密切相关的RGH基因进化的模式,这种模式可能在新的抗性特异性的产生中起作用。检测到NBS编码区内的阳性位点,因此NBS结构域内的核苷酸变异可能在确定抗病性特异性中起作用。这项研究还讨论了一个基因组区域的共性,该基因组区域包括苹果属,李属和罗莎属中的白粉病抗性基因座,这可能对果树病育种和重要的基因克隆具有潜在的用途。

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