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锌金属蛋白酶SlMEP1:在……中真菌毒力所需的关键因子

Zinc Metalloprotease SlMEP1: An Essential Factor Required for Fungal Virulence in .

作者信息

Zhang Dezhen, Chi Wenjuan, Li Tingting, Wang Cuicui, Zhang Jing, Pan Haoqin, Qiao Ning, Li Jintang, Sun Xiaoan

机构信息

Shandong Provincial University Laboratory for Protected Horticulture, Weifang University of Science and Technology, Weifang 262700, China.

Division of Plant Industry, Florida Department of Agriculture and Consumer Services, Gainesville, FL 32607, USA.

出版信息

J Fungi (Basel). 2025 Apr 22;11(5):330. doi: 10.3390/jof11050330.

Abstract

is the causal pathogen of the devastating tomato gray leaf spot with a wide range of alternative plant hosts. To mitigate its potential endemic in facility-cultivated tomatoes, novel disease control strategies should be attempted to minimize the use of chemical fungicides. In this study, we identified a metalloprotease from genome and designated it as SlMEP1, as it appears to be a typical zinc metalloproteinase containing a WLM (WSS1-like metalloprotease) domain and a characteristic HEXXH motif, which we determined by analyzing its transcriptional profile and enzymatic functions. The transcription level of increased greatly during the fungal invasion of tomato leaves. The deletion of the gene from hindered its mycelial growth and reduced its pathogenicity. An assessment of the functional dissection indicated that SlMEP1 induced cell collapse and inhibited the expression of the host chitinases, which consequently made tomato cells more susceptible to and other pathogenic fungi.

摘要

是毁灭性番茄灰叶斑病的致病病原体,具有广泛的替代植物宿主。为减轻其在设施栽培番茄中的潜在流行,应尝试新的病害控制策略以尽量减少化学杀菌剂的使用。在本研究中,我们从基因组中鉴定出一种金属蛋白酶,并将其命名为SlMEP1,因为它似乎是一种典型的锌金属蛋白酶,含有一个WLM(类WSS1金属蛋白酶)结构域和一个特征性的HEXXH基序,我们通过分析其转录谱和酶功能确定了这一点。在真菌侵染番茄叶片期间,其转录水平大幅增加。从该基因中缺失该基因阻碍了其菌丝生长并降低了其致病性。功能剖析评估表明,SlMEP1诱导细胞塌陷并抑制宿主几丁质酶的表达,从而使番茄细胞更容易受到该病菌和其他致病真菌的侵害。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b89e/12112490/7115a555c8da/jof-11-00330-g001.jpg

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