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利用推测的真菌效应子进行多位点分析,描述甜菜上的一支尖孢镰刀菌种群。

Multilocus analysis using putative fungal effectors to describe a population of Fusarium oxysporum from sugar beet.

出版信息

Phytopathology. 2014 Aug;104(8):886-96. doi: 10.1094/PHYTO-09-13-0248-R.

Abstract

Sugar beet (Beta vulgaris) Fusarium yellows is caused by Fusarium oxysporum f. sp. betae and can lead to significant reductions in root yield, sucrose percentage, juice purity, and storability. F. oxysporum f. sp. betae can be highly variable and many F. oxysporum strains isolated from symptomatic sugar beet are nonpathogenic. Identifying pathogenicity factors and their diversity in the F. oxysporum f. sp. betae population could further understanding of how this pathogen causes disease and potentially provide molecular markers to rapidly identify pathogenic isolates. This study used several previously described fungal effector genes (Fmk1, Fow1, Pda1, PelA, PelD, Pep1, Prt1, Rho1, Sge1, Six1, Six6, Snf1, and Ste12) as genetic markers, in a population of 26 pathogenic and nonpathogenic isolates of F. oxysporum originally isolated from symptomatic sugar beet. Of the genes investigated, six were present in all F. oxysporum isolates from sugar beet (Fmk1, Fow1, PelA, Rho1, Snf1, and Ste12), and seven were found to be dispersed within the population (Pda1, PelD, Pep1, Prt1, Sge1, Six1, and Six6). Of these, Fmk1, Fow1, PelA, Rho1, Sge1, Snf1, and Ste12 were significant in relating clade designations and PelD, and Prt1 were significant for correlating with pathogenicity in F. oxysporum f. sp. betae.

摘要

甜菜(Beta vulgaris)黄萎病是由尖孢镰刀菌β 种(Fusarium oxysporum f. sp. betae)引起的,可导致根产量、蔗糖百分率、汁液纯度和贮藏性显著降低。尖孢镰刀菌β 种(F. oxysporum f. sp. betae)的变异性很大,从有症状的甜菜中分离出的许多尖孢镰刀菌菌株是非致病性的。鉴定尖孢镰刀菌β 种种群中的致病性因子及其多样性可以进一步了解该病原体如何引起疾病,并可能提供分子标记物来快速鉴定致病性分离物。本研究使用了几个先前描述的真菌效应子基因(Fmk1、Fow1、Pda1、PelA、PelD、Pep1、Prt1、Rho1、Sge1、Six1、Six6、Snf1 和 Ste12)作为遗传标记,对 26 个原本从有症状的甜菜中分离出来的致病性和非致病性尖孢镰刀菌分离物进行了研究。在所研究的基因中,有 6 个存在于所有来自甜菜的尖孢镰刀菌分离物中(Fmk1、Fow1、PelA、Rho1、Snf1 和 Ste12),有 7 个在种群中呈分散状态(Pda1、PelD、Pep1、Prt1、Sge1、Six1 和 Six6)。其中,Fmk1、Fow1、PelA、Rho1、Sge1、Snf1 和 Ste12 在与进化枝分类有关方面具有显著意义,而 PelD 和 Prt1 在与尖孢镰刀菌β 种的致病性有关方面具有显著意义。

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