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Genome-Wide Association Study Identifies NBS-LRR-Encoding Genes Related with Anthracnose and Common Bacterial Blight in the Common Bean

机译:全基因组关联研究确定了与菜豆炭疽病和常见细菌性疫病相关的NBS-LRR编码基因

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摘要

Nucleotide-binding site and leucine-rich repeat (NBS-LRR) genes represent the largest and most important disease resistance genes in plants. The genome sequence of the common bean (Phaseolus vulgaris L.) provides valuable data for determining the genomic organization of NBS-LRR genes. However, data on the NBS-LRR genes in the common bean are limited. In total, 178 NBS-LRR-type genes and 145 partial genes (with or without a NBS) located on 11 common bean chromosomes were identified from genome sequences database. Furthermore, 30 NBS-LRR genes were classified into Toll/interleukin-1 receptor (TIR)-NBS-LRR (TNL) types, and 148 NBS-LRR genes were classified into coiled-coil (CC)-NBS-LRR (CNL) types. Moreover, the phylogenetic tree supported the division of these PvNBS genes into two obvious groups, TNL types and CNL types. We also built expression profiles of NBS genes in response to anthracnose and common bacterial blight using qRT-PCR. Finally, we detected nine disease resistance loci for anthracnose (ANT) and seven for common bacterial blight (CBB) using the developed NBS-SSR markers. Among these loci, NSSR24, NSSR73, and NSSR265 may be located at new regions for ANT resistance, while NSSR65 and NSSR260 may be located at new regions for CBB resistance. Furthermore, we validated NSSR24, NSSR65, NSSR73, NSSR260, and NSSR265 using a new natural population. Our results provide useful information regarding the function of the NBS-LRR proteins and will accelerate the functional genomics and evolutionary studies of NBS-LRR genes in food legumes. NBS-SSR markers represent a wide-reaching resource for molecular breeding in the common bean and other food legumes. Collectively, our results should be of broad interest to bean scientists and breeders.
机译:核苷酸结合位点和富含亮氨酸的重复序列(NBS-LRR)基因代表了植物中最大,最重要的抗病基因。普通豆(菜豆)的基因组序列为确定NBS-LRR基因的基因组组织提供了有价值的数据。但是,关于普通豆中NBS-LRR基因的数据有限。从基因组序列数据库中总共鉴定出位于11个普通豆染色体上的178个NBS-LRR型基因和145个部分基因(有或没有NBS)。此外,将30个NBS-LRR基因分类为Toll /白介素1受体(TIR)-NBS-LRR(TNL)类型,并将148个NBS-LRR基因分类为卷曲螺旋(CC)-NBS-LRR(CNL)类型。此外,系统发育树支持将这些PvNBS基因分为两个明显的组,即TNL类型和CNL类型。我们还使用qRT-PCR建立了响应炭疽病和常见细菌疫病的NBS基因表达谱。最后,我们使用已开发的NBS-SSR标记物检测到炭疽病(ANT)的9个抗病基因座和普通细菌性疫病(CBB)的7个。在这些基因座中,NSSR24,NSSR73和NSSR265可能位于抗ANT的新区域,而NSSR65和NSSR260可能位于CBB抵抗的新区域。此外,我们使用新的自然种群验证了NSSR​​24,NSSR65,NSSR73,NSSR260和NSSR265。我们的研究结果提供了有关NBS-LRR蛋白功能的有用信息,并将加快食品豆类中NBS-LRR基因的功能基因组学和进化研究。 NBS-SSR标记代表了在普通豆类和其他豆类食品中进行分子育种的广泛资源。总的来说,我们的研究结果应引起大豆科学家和育种者的广泛兴趣。

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