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蛋白质组学分析揭示了渗出物在……菌核发育中的重要性。

Proteomic Analysis Reveals the Importance of Exudates on Sclerotial Development in .

作者信息

Tian Jiamei, Chen Caixia, Sun Huiying, Wang Zehao, Steinkellner Siegrid, Feng Jie, Liang Yue

机构信息

College of Plant Protection, Shenyang Agricultural University, Shenyang, Liaoning 110866, China.

Liaoning Key Laboratory of Plant Pathology, Shenyang Agricultural University, Shenyang, Liaoning 110866, China.

出版信息

J Agric Food Chem. 2021 Feb 3;69(4):1430-1440. doi: 10.1021/acs.jafc.0c06685. Epub 2021 Jan 22.

Abstract

is a ubiquitous necrotrophic pathogenic fungus causing significant losses in a broad range of plant species. Sclerotia formed by play important roles in both the fungal life cycle and the disease development cycle. Sclerotial exudation during sclerotial development is a characteristic feature of this fungus. In this study, a proteome-level investigation of proteins present in sclerotial exudates was conducted by high-throughput LC-MS/MS analysis. A total of 258 proteins were identified, in which 193 were annotated by GO annotation and 54 were classified by KEGG analysis. Four proteins related to plant cell wall degradation were further validated by measuring the corresponding enzymatic activity of the sclerotial exudates and/or by assessing the gene expression during sclerotial development. Results indicated that the proteins identified in sclerotial exudates help in the development of sclerotia and contribute to host cell necrosis caused by . Furthermore, we proposed that sclerotial exudates can degrade plant cell walls to release carbohydrates that provide nutrition for fungal growth and possibly facilitate fungal cell wall assembly in developing sclerotia. This study also provides new insights on the morphogenesis and pathogenicity of other sclerotia-forming fungi.

摘要

是一种普遍存在的坏死营养型致病真菌,在广泛的植物物种中造成重大损失。由其形成的菌核在真菌生命周期和疾病发展周期中都起着重要作用。菌核发育过程中的菌核渗出是这种真菌的一个特征。在本研究中,通过高通量液相色谱-串联质谱分析对菌核渗出物中存在的蛋白质进行了蛋白质组水平的研究。共鉴定出258种蛋白质,其中193种通过基因本体论注释进行了注释,54种通过京都基因与基因组百科全书分析进行了分类。通过测量菌核渗出物的相应酶活性和/或评估菌核发育过程中的基因表达,进一步验证了四种与植物细胞壁降解相关的蛋白质。结果表明,在菌核渗出物中鉴定出的蛋白质有助于菌核的发育,并导致由其引起的宿主细胞坏死。此外,我们提出菌核渗出物可以降解植物细胞壁以释放碳水化合物,这些碳水化合物为真菌生长提供营养,并可能促进发育中的菌核中的真菌细胞壁组装。本研究还为其他形成菌核的真菌的形态发生和致病性提供了新的见解。

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