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Phylogenetic and evolutionary analysis of NBS-encoding genes in Rutaceae fruit crops

机译:芸苔科水果作物中NBS编码基因的系统发生和进化分析

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摘要

The nucleotide-binding site leucine-rich repeat (NBS-LRR) genes are the largest class of disease resistance genes in plants. However, our understanding of the evolution of NBS-LRR genes in Rutaceae fruit crops is rather limited. We report an evolutionary study of 103 NBS-encoding genes isolated from Poncirus trifoliata (trifoliate orange), Citrus reticulata (tangerine) and their F progeny. In all, 58 of the sequences contained a continuous open reading frame. Phylogenetic analysis classified the 58 NBS genes into nine clades, eight of which were genus specific. This was taken to imply that most of the ancestors of these NBS genes evolved after the genus split. The motif pattern of the 58 NBS-encoding genes was consistent with their phylogenetic profile. An extended phylogenetic analysis, incorporating citrus NBS genes from the public database, classified 95 citrus NBS genes into six clades, half of which were genus specific. RFLP analysis showed that citrus NBS-encoding genes have been evolving rapidly, and that they are unstable when passed through an intergeneric cross. Of 32 NBS-encoding genes tracked by gene-specific PCR, 24 showed segregation distortion among a set of 94 F individuals. This study provides new insight into the evolution of Rutaceae NBS genes and their behaviour following an intergeneric cross.
机译:核苷酸结合位点富含亮氨酸的重复序列(NBS-LRR)基因是植物中最大的一类抗病基因。但是,我们对芸苔科水果作物中NBS-LRR基因的进化的了解非常有限。我们报告了103个NBS编码基因的进化研究,这些基因从Poncirus trifoliata(三叶橙色),Citrus reticulata(橘子)及其F后代中分离出来。共有58个序列包含一个连续的开放阅读框。系统发育分析将58个NBS基因分为9个进化枝,其中8个是属特异性的。这被认为暗示了这些NBS基因的大多数祖先是在属分裂后进化的。 58个NBS编码基因的基序模式与其系统发育谱一致。扩展的系统发育分析,结合了公共数据库中的柑橘NBS基因,将95种柑橘NBS基因分为六个进化枝,其中一半是属特异性的。 RFLP分析表明,柑橘NBS编码基因已经在迅速发展,并且在通过属间杂交时不稳定。在通过基因特异性PCR追踪的32个NBS编码基因中,有24个显示出94个F个体之间的偏析。这项研究为芸香科NBS基因的进化及其跨种间杂交后的行为提供了新的见识。

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