甜瓜全基因组r基因的鉴定、表达谱及其在果实细菌性斑病抗性中的作用

IF 2.9 Q2 Biochemistry, Genetics and Molecular Biology
Md Rafiqul Islam, Mohammad Rashed Hossain, Denison Michael Immanuel Jesse, Hee-Jeong Jung, Hoy-Taek Kim, Jong-In Park, Ill-Sup Nou
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引用次数: 5

摘要

背景:细菌性果斑病是由瓜酸霉引起的一种病害,是造成瓜类重大经济损失的主要原因。这种疾病的致病qtl和抗性基因尚未确定。抗性基因在植物抗病过程中起着至关重要的作用。由于甜瓜的全基因组序列和r基因的全基因组鉴定已经完成,因此全面的表达谱分析可能会导致鉴定出在对BFB反应中起作用的候选基因。结果:我们通过重复的生物测定鉴定出了对BFB具有抗性和敏感性的甜瓜材料,并对甜瓜中所有70个r基因进行了鉴定,包括它们的基因结构、染色体位置、结构域组织、基序分布和共效关系。研究人员发现了几个与抗病相关的结构域,包括NBS、TIR、LRR、CC、RLK和DUF结构域,并根据其编码蛋白的结构域对这些基因进行了分类。此外,我们还分析了这些基因在接种后12 h、1 d、3 d和6 d的抗性水平不同的甜瓜材料中的表达模式。6个r -基因(MELO3C023441、MELO3C016529、MELO3C022157、MELO3C022146、MELO3C025518和MELO3C004303)表达模式一致,且在抗性菌株中表达量高于易感菌株。结论:在甜瓜中鉴定出6个抗BFB的候选r基因。在功能验证后,这些基因可以通过育种和生物技术手段进行有针对性的操作,以提高甜瓜对BFB的抗性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Characterization, identification and expression profiling of genome-wide R-genes in melon and their putative roles in bacterial fruit blotch resistance.

Characterization, identification and expression profiling of genome-wide R-genes in melon and their putative roles in bacterial fruit blotch resistance.

Characterization, identification and expression profiling of genome-wide R-genes in melon and their putative roles in bacterial fruit blotch resistance.

Characterization, identification and expression profiling of genome-wide R-genes in melon and their putative roles in bacterial fruit blotch resistance.

Background: Bacterial fruit blotch (BFB), a disease caused by Acidovorax citrulli, results in significant economic losses in melon. The causal QTLs and genes for resistance to this disease have yet to be identified. Resistance (R)-genes play vital roles in resistance to plant diseases. Since the complete genome sequence of melon is available and genome-wide identification of R-genes has been performed for this important crop, comprehensive expression profiling may lead to the identification of putative candidate genes that function in the response to BFB.

Results: We identified melon accessions that are resistant and susceptible to BFB through repeated bioassays and characterized all 70 R-genes in melon, including their gene structures, chromosomal locations, domain organizations, motif distributions, and syntenic relationships. Several disease resistance-related domains were identified, including NBS, TIR, LRR, CC, RLK, and DUF domains, and the genes were categorized based on the domains of their encoded proteins. In addition, we profiled the expression patterns of the genes in melon accessions with contrasting levels of BFB resistance at 12 h, 1 d, 3 d, and 6 d after inoculation with A. citrulli. Six R-genes exhibited consistent expression patterns (MELO3C023441, MELO3C016529, MELO3C022157, MELO3C022146, MELO3C025518, and MELO3C004303), with higher expression levels in the resistant vs. susceptible accession.

Conclusion: We identified six putative candidate R-genes against BFB in melon. Upon functional validation, these genes could be targeted for manipulation via breeding and biotechnological approaches to improve BFB resistance in melon in the future.

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来源期刊
BMC Genetics
BMC Genetics 生物-遗传学
CiteScore
4.30
自引率
0.00%
发文量
77
审稿时长
4-8 weeks
期刊介绍: BMC Genetics is an open access, peer-reviewed journal that considers articles on all aspects of inheritance and variation in individuals and among populations.
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