首页> 外文期刊>Current Genetics: Eukaryotes with Emphasis on Yeasts, Fungi, Mitochondria, Plastids >Isolation and functional analysis of the pathogenicity-related gene VdPR3 from Verticillium dahliae on cotton
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Isolation and functional analysis of the pathogenicity-related gene VdPR3 from Verticillium dahliae on cotton

机译:棉花黄萎病菌致病相关基因VdPR3的分离及功能分析

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摘要

The fungal plant pathogen Verticillium dahliae is the causal agent of vascular wilt, a disease that can seriously diminish cotton fiber yield. The pathogenicity mechanism and the identity of the genes that interact with cotton during the infection process still remain unclear. In this study, we investigated the low-pathogenic, non-microsclerotium-producing mutant vdpr3 obtained in a previous study from the screening of a T-DNA insertional library of the highly virulent isolate Vd080; the pathogenicity-related gene (VdPR3) in wild-type strain Vd080 was cloned. Knockout mutants (Delta VdPR3) showed lower mycelium growth and obvious reduction in sporulation ability without microsclerotium formation. An evaluation of carbon utilization in mutants and wild-type isolate Vd080 demonstrated that mutants-lacking VdPR3 exhibited decreased cellulase and amylase activities, which was restored in the complementary mutants (Delta VdPR3-C) to levels similar to those of Vd080. Delta VdPR3 postponed infectious events in cotton and showed a significant reduction in pathogenicity. Reintroduction of a functional VdPR3 copy into Delta VdPR3-C restored the ability to infect cotton plants. These results suggest that VdPR3 is a multifunctional gene involved in growth development, extracellular enzyme activity, and virulence of V. dahliae on cotton.
机译:真菌植物病原体大黄萎病菌是导致萎的病原体,这种疾病会严重降低棉纤维的产量。在棉花感染过程中与棉花相互作用的基因的致病机理和身份仍然不清楚。在这项研究中,我们调查了先前研究中从高毒力分离株Vd080的T-DNA插入文库的筛选中获得的低致病性,非微核菌产生突变体vdpr3;克隆了野生株Vd080的致病性相关基因(VdPR3)。敲除突变体(Delta VdPR3)表现出较低的菌丝生长和明显的孢子形成能力降低,而没有形成小菌核。对突变体和野生型分离株Vd080中碳利用的评估表明,缺乏VdPR3的突变体表现出降低的纤维素酶和淀粉酶活性,在互补突变体(ΔVdPR3-C)中恢复到与Vd080相似的水平。 Delta VdPR3推迟了棉花中的传染性事件,并显着降低了致病性。将功能性VdPR3副本重新引入Delta VdPR3-C中可恢复感染棉花植物的能力。这些结果表明,VdPR3是一种多功能基因,参与棉花的生长发育,细胞外酶活性和大花弧菌的毒力。

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