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[具体物种名称]的NADPH氧化酶A对致病性、正常发育和胁迫耐受性至关重要,并且它与Yap1相互作用以调节氧化还原稳态。

The NADPH Oxidase A of Is Essential for Pathogenicity, Normal Development, and Stress Tolerance, and It Interacts with Yap1 to Regulate Redox Homeostasis.

作者信息

Vangalis Vasileios, Papaioannou Ioannis A, Markakis Emmanouil A, Knop Michael, Typas Milton A

机构信息

Department of Genetics & Biotechnology, Faculty of Biology, National and Kapodistrian University of Athens, 15784 Athens, Greece.

Center for Molecular Biology of Heidelberg University (ZMBH), University of Heidelberg, 69120 Heidelberg, Germany.

出版信息

J Fungi (Basel). 2021 Sep 9;7(9):740. doi: 10.3390/jof7090740.

Abstract

Maintenance of redox homeostasis is vital for aerobic organisms and particularly relevant to plant pathogens. A balance is required between their endogenous ROS production, which is important for their development and pathogenicity, and host-derived oxidative stress. Endogenous ROS in fungi are generated by membrane-bound NADPH oxidase (NOX) complexes and the mitochondrial respiratory chain, while transcription factor Yap1 is a major regulator of the antioxidant response. Here, we investigated the roles of NoxA and Yap1 in fundamental biological processes of the important plant pathogen . Deletion of impaired growth and morphogenesis, compromised formation of hyphopodia, diminished penetration ability and pathogenicity, increased sensitivity against antifungal agents, and dysregulated expression of antioxidant genes. On the other hand, deletion of resulted in defects in conidial and microsclerotia formation, increased sensitivity against oxidative stress, and down-regulated antioxidant genes. Localized accumulation of ROS was observed before conidial fusion and during the heterokaryon incompatibility reaction upon nonself fusion. The frequency of inviable fusions was not affected by the deletion of Yap1. Analysis of a double knockout mutant revealed an epistatic relationship between and . Our results collectively reveal instrumental roles of NoxA and ROS homeostasis in the biology of .

摘要

维持氧化还原稳态对需氧生物至关重要,对植物病原体尤为重要。它们内源性活性氧(ROS)的产生与宿主衍生的氧化应激之间需要保持平衡,内源性ROS的产生对其发育和致病性很重要。真菌中的内源性ROS由膜结合的NADPH氧化酶(NOX)复合物和线粒体呼吸链产生,而转录因子Yap1是抗氧化反应的主要调节因子。在这里,我们研究了NoxA和Yap1在重要植物病原体基本生物学过程中的作用。NoxA缺失会损害生长和形态发生,破坏附着胞的形成,降低穿透能力和致病性,增加对抗真菌剂的敏感性,并使抗氧化基因的表达失调。另一方面,Yap1缺失导致分生孢子和微菌核形成缺陷,增加对氧化应激的敏感性,并下调抗氧化基因。在分生孢子融合前以及非自身融合后的异核体不相容反应期间观察到ROS的局部积累。Yap1缺失不影响不可存活融合的频率。对双敲除突变体的分析揭示了NoxA和Yap1之间的上位关系。我们的结果共同揭示了NoxA和ROS稳态在该植物病原体生物学中的重要作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6d40/8468606/2aeefd0edf3c/jof-07-00740-g001.jpg

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