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从多品种抗性小扁豆种质中克隆新型抗病基因类似物(RGA)对枯萎病(尖孢镰刀菌)的抗性筛选与鉴定

Resistance screening and characterization of cloned novel RGA from multi-race resistant lentil germplasm against Fusarium wilt ( f. sp. .

作者信息

Nishmitha K, Singh Rakesh, Dubey Sunil C, Akthar Jameel, Tripathi Kuldeep, Kamil Deeba

机构信息

Division of Plant Pathology, ICAR-Indian Agricultural Research Institute, New Delhi, India.

Division of Genomic Resources, ICAR-National Bureau of Plant Genetic Resources, New Delhi, India.

出版信息

Front Plant Sci. 2023 Apr 21;14:1147220. doi: 10.3389/fpls.2023.1147220. eCollection 2023.

Abstract

Fusarium wilt caused by f. sp. () is the most devastating disease of lentil present worldwide. Identification of multi-race fusarium wilt resistance genes and their incorporation into existing cultivars will help to reduce yield losses. In the present study, 100 lentil germplasms belonging to seven lentil species were screened against seven prevalent races of , and accessions IC201561 ( subsp. , EC714243 (. subsp. , and EC718238 ( were identified as resistant. The typical R gene codes for the nucleotide-binding site and leucine-rich repeats (NBS-LRR) at the C terminal are linked to either the Toll/interleukin 1-like receptor (TIR) or coiled coil (CC) at the N terminal. In the present study, degenerate primers, designed from the NBS region amplifying the P-loop to the GLPLA motif, isolated forty-five resistance gene analogues (RGAs) from identified resistant accessions. The sequence alignment identified both classes of RGAs, TIR and non-TIR, based on the presence of aspartate (D) and tryptophan (W) at the end of the kinase motif, respectively. The phylogenetic analysis grouped the RGAs into six classes, from LRGA1 to LRGA6, which determined the diversity of the RGAs present in the host. Grouping of the RGAs identified from , LnRGA 2, 9, 13 with I2 revealed the structural similarity with the fusarium resistance gene. The similarity index ranged from 27.85% to 86.98% among the RGAs and from 26.83% to 49.41% among the known R genes, I2, Gpa2, M, and L6. The active binding sites present along the conserved motifs grouped the RGAs into 13 groups. ADP/ATP, being the potential ligand, determines the ATP binding and ATP hydrolysis activity of the RGAs. The isolated RGAs can be used to develop markers linked to the functional R gene. Furthermore, expression analysis and full-length gene isolation pave the path to identifying the molecular mechanism involved in resistance.

摘要

由尖孢镰刀菌(F. sp.)引起的枯萎病是全球范围内最具毁灭性的小扁豆病害。鉴定多小种枯萎病抗性基因并将其导入现有品种将有助于减少产量损失。在本研究中,针对七种常见的尖孢镰刀菌小种,对属于七个小扁豆物种的100份小扁豆种质进行了筛选,鉴定出IC201561(亚种,EC714243(亚种,和EC718238(为抗病材料。典型的R基因在C端编码核苷酸结合位点和富含亮氨酸重复序列(NBS-LRR),并在N端与Toll/白细胞介素1样受体(TIR)或卷曲螺旋(CC)相连。在本研究中,从NBS区域设计简并引物,从P环扩增到GLPLA基序,从鉴定出的抗病材料中分离出45个抗性基因类似物(RGA)。序列比对分别基于激酶基序末端天冬氨酸(D)和色氨酸(W)的存在鉴定出两类RGA,即TIR和非TIR。系统发育分析将RGA分为六个类别,从LRGA1到LRGA6,这确定了寄主中存在的RGA的多样性。从尖孢镰刀菌中鉴定出的RGA,LnRGA 2、9、13与I2的分组揭示了与镰刀菌抗性基因的结构相似性。RGA之间的相似性指数范围为27.85%至86.98%,已知R基因I2、Gpa2、M和L6之间的相似性指数范围为26.83%至49.41%。沿着保守基序存在的活性结合位点将RGA分为13组。作为潜在配体的ADP/ATP决定了RGA的ATP结合和ATP水解活性。分离出的RGA可用于开发与功能性R基因连锁的标记。此外,表达分析和全长基因分离为鉴定抗性相关分子机制铺平了道路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5de3/10160667/5289a357eca5/fpls-14-1147220-g001.jpg

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