A rapid molecular diagnostic tool to discriminate alleles of avirulence genes and haplotypes of Phytophthora sojae using high-resolution melting analysis.

IF 4.8 1区 农林科学 Q1 PLANT SCIENCES
Molecular plant pathology Pub Date : 2024-01-01 Epub Date: 2023-11-27 DOI:10.1111/mpp.13406
Parthasarathy Santhanam, Caroline Labbé, Vanessa Tremblay, Richard R Bélanger
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引用次数: 0

Abstract

Effectors encoded by avirulence genes (Avr) interact with the Phytophthora sojae resistance gene (Rps) products to generate incompatible interactions. The virulence profile of P. sojae is rapidly evolving as a result of the large-scale deployment of Rps genes in soybean. For a successful exploitation of Rps genes, it is recommended that soybean growers use cultivars containing the Rps genes corresponding to Avr genes present in P. sojae populations present in their fields. Determination of the virulence profile of P. sojae isolates is critical for the selection of soybean cultivars. High-resolution melting curve (HRM) analysis is a powerful tool, first applied in medicine, for detecting mutations with potential applications in different biological fields. Here, we report the development of an HRM protocol, as an original approach to discriminate effectors, to differentiate P. sojae haplotypes for six Avr genes. An HRM assay was performed on 24 P. sojae isolates with different haplotypes collected from soybean fields across Canada. The results clearly confirmed that the HRM assay discriminated different virulence genotypes. Moreover, the HRM assay was able to differentiate multiple haplotypes representing small allelic variations. HRM-based prediction was validated by phenotyping assays. This HRM assay provides a unique, cost-effective and efficient tool to predict virulence pathotypes associated with six different Avr (1b, 1c, 1d, 1k, 3a and 6) genes from P. sojae, which can be applied in the deployment of appropriate Rps genes in soybean fields.

Abstract Image

利用高分辨率熔解分析技术快速鉴别大豆疫霉无毒基因等位基因和单倍型的分子诊断工具。
由无毒基因(Avr)编码的效应子与大豆疫霉抗性基因(Rps)产物相互作用,产生不相容的相互作用。由于Rps基因在大豆中的大规模应用,大豆疫病毒谱正在迅速演变。为了成功地利用Rps基因,建议大豆种植者使用含有大豆大豆种群中Avr基因对应的Rps基因的品种。大豆假单胞菌分离株毒力谱的测定对大豆品种的选择具有重要意义。高分辨率熔化曲线(HRM)分析是一种强大的工具,最初应用于医学,用于检测突变,在不同的生物领域具有潜在的应用前景。在这里,我们报告了一个HRM协议的发展,作为区分效应子的原始方法,以区分大豆大豆6个Avr基因的单倍型。对从加拿大大豆田收集的24株具有不同单倍型的大豆病原菌进行了HRM分析。结果清楚地证实了HRM检测可以区分不同的毒力基因型。此外,HRM分析能够区分代表小等位基因变异的多个单倍型。表型分析验证了基于hrm的预测。该方法为预测大豆黄豆疫病毒力相关的6种不同Avr (1b、1c、1d、1k、3a和6)基因提供了一种独特、经济、高效的工具,可用于在大豆田间部署合适的Rps基因。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Molecular plant pathology
Molecular plant pathology 生物-植物科学
CiteScore
9.40
自引率
4.10%
发文量
120
审稿时长
6-12 weeks
期刊介绍: Molecular Plant Pathology is now an open access journal. Authors pay an article processing charge to publish in the journal and all articles will be freely available to anyone. BSPP members will be granted a 20% discount on article charges. The Editorial focus and policy of the journal has not be changed and the editorial team will continue to apply the same rigorous standards of peer review and acceptance criteria.
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