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Genome-wide identification and comparative analysis of NBS-LRR resistance genes in Brassica napus

机译:甘蓝型油菜中NBS-LRR抗性基因的基因组鉴定与对比分析

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摘要

Plant disease-resistance genes play a critical role in providing resistance against pathogens. The largest family of resistance genes are the nucleotide-binding site (NBS) and leucine-rich repeat (LRR) genes. They are classified into two major subfamilies, toll/interleukin-1 receptor (TIR)-NBS-LRR (TNL) and coiled-coil (CC)-NBS-LRR (CNL) proteins. We have identified and characterised 641 NBS-LRR genes in Brassica napus, 249 in B. rapa and 443 in B. oleracea. A ratio of 1 : 2 of CNL: TNL genes was found in the three species. Domain structure analysis revealed that 57% of the NBS-LRR genes are typical resistance genes and contain all three domains (TIR/CC, NBS, LRR), whereas the remaining genes are partially deleted or truncated. Of the NBS-LRR genes, 59% were found to be physically clustered, and individual genes involved in clusters were more polymorphic than those not clustered. Of the NBS-LRR genes in B. napus, 50% were identified as duplicates, reflecting a high level of genomic duplication and rearrangement. Comparative analysis between B. napus and its progenitor species indicated that & 60% of NBS-LRR genes are conserved in B. napus. This study provides a valuable resource for the identification and characterisation of candidate NBS-LRR genes.
机译:植物抗病基因在提供对抗病原体的抵抗力方面发挥着关键作用。最大的抗性基因家族是核苷酸结合位点(NBS)和富含亮氨酸的重复(LRR)基因。它们分为两个主要的亚壳,Toll /白细胞介素-1受体(TIR) - NBS-LRR(TNL)和卷轴 - 线圈(CC)-NBS-LRR(CNL)蛋白。我们已经鉴定并在B. Oleracea中鉴定了芸薹属Napus,249中的641个NBS-LRR基因。在三种物种中发现了CNL:TNL基因的1:2的比例。结构域结构分析显示,57%的NBS-LRR基因是典型的抗性基因,并含有所有三个结构域(TIR / CC,NBS,LRR),而剩余的基因被部分缺失或截短。在NBS-LRR基因中,发现59%是物理聚集的,并且簇中涉及的个体基因比未聚类的那些群体更多态。在B. NaPus中的NBS-LRR基因中,50%被鉴定为复制品,反映高水平的基因组重复和重排。 B. Napus与其祖细胞的比较分析表明& 在B. Napus中保存了60%的NBS-LRR基因。本研究提供了鉴别和表征候选NBS-LRR基因的有价值的资源。

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