Molecular analysis of nematode-responsive defence genes CRF1, WRKY45, and PR7 in Solanum lycopersicum tissues during the infection of plant-parasitic nematode species of the genus Meloidogyne.

IF 2.3 3区 生物学 Q3 BIOTECHNOLOGY & APPLIED MICROBIOLOGY Genome Pub Date : 2022-05-01 Epub Date: 2022-02-03 DOI:10.1139/gen-2021-0083
Refik Bozbuga
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引用次数: 2

Abstract

Several pathogens, including nematodes, have severe effects on plant development and growth, and immense populations of parasitic nematodes may cause plant death and crop loss. Obligate plant-parasitic nematodes and root-knot nematodes belonging to the genus Meloidogyne are significant parasites in crops. During nematode infection, damage-associated molecular patterns play a role in the activation of plant defence responses to pathogens. Several genes are involved in Meloidogyne parasitism. However, the expression of nematode-responsive genes CRF1, WRKY45, and PR7 during infection with different parasitic nematode species is not well understood. Therefore, this study aimed to reveal plant responses to differential gene expression of nematode-responsive genes in tomato plants, and their relationship to nematode reproduction and comparative phylogeny. Molecular methods for gene expression, greenhouse work for nematode reproduction, and phylogenetic analysis were used to determine nematode-plant interactions. The results revealed that differential gene expression of CRF1, WRKY45, and PR7 depended on the nematode species. The relative CRF1 gene expression reached its highest level at 3 dpi, following nematode infection. In conclusion, plant defense responses disturbed the expression of nematode-responsive genes, and the differential expression of nematode-responsive genes was affected by nematode species and nematode parasitism.

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茄属植物寄生线虫感染时组织中线虫应答防御基因CRF1、WRKY45和PR7的分子分析
包括线虫在内的几种病原体对植物的发育和生长有严重影响,大量的寄生线虫可能导致植物死亡和作物损失。专性植物寄生线虫和根结线虫属于根结线虫属,是作物中的重要寄生虫。在线虫感染期间,损伤相关的分子模式在激活植物对病原体的防御反应中发挥作用。有几个基因参与了旋律丝母的寄生。然而,线虫应答基因CRF1、WRKY45和PR7在不同寄生线虫感染过程中的表达尚不清楚。因此,本研究旨在揭示番茄植物对线虫应答基因差异表达的反应,以及它们与线虫繁殖和比较系统发育的关系。基因表达的分子方法、线虫繁殖的温室工作和系统发育分析被用于确定线虫与植物的相互作用。结果显示,CRF1、WRKY45和PR7基因的差异表达与线虫种类有关。在线虫感染后,CRF1基因的相对表达量在3 dpi时达到最高水平。综上所述,植物防御反应干扰了线虫应答基因的表达,而线虫应答基因的差异表达受线虫种类和线虫寄生程度的影响。
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来源期刊
Genome
Genome 生物-生物工程与应用微生物
CiteScore
5.30
自引率
3.20%
发文量
42
审稿时长
6-12 weeks
期刊介绍: Genome is a monthly journal, established in 1959, that publishes original research articles, reviews, mini-reviews, current opinions, and commentaries. Areas of interest include general genetics and genomics, cytogenetics, molecular and evolutionary genetics, developmental genetics, population genetics, phylogenomics, molecular identification, as well as emerging areas such as ecological, comparative, and functional genomics.
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