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Bax抑制剂MoBi-1对……中的分生孢子形成、致病性和应激反应是必需的。

Bax Inhibitor MoBi-1 Is Required for Conidiation, Pathogenicity, and Stress Responses in .

作者信息

Meng Shuai, Shen Yangyang, Zhang Dixuan, Bao Liutao, Cao Hao, Song Gening, Xie Chenshun, Jagernath Jane S, Shen Guoqiang, Chen Jie

机构信息

National Joint Local Engineering Laboratory for High-Efficient Preparation of Biopesticide, College of Forestry and Biotechnology, Zhejiang Agriculture and Forestry University, Hangzhou 311300, China.

Agricultural Department, Faculty of Technological Sciences, Anton de Kom University of Suriname, Leysweg 86, Building 7, Paramaribo 999182, Suriname.

出版信息

J Fungi (Basel). 2025 May 5;11(5):359. doi: 10.3390/jof11050359.

Abstract

serves as a model organism for studying the molecular biology of filamentous fungi and the pathogenic mechanisms of fungal pathogens. It also poses a significant threat to rice production in China. Bax inhibitor-1 (Bi-1), a protein with evolutionary conservation, functions as an inhibitor of programmed cell death induced by the proapoptotic protein Bax. Despite the widespread presence of Bi-1 proteins in hyphal fungi, their biological functions have not been extensively characterized. Here, we characterized the function of -1, a putative Bax-inhibitor protein in , which is located in the mitochondria and participates in conidiation, stress adaptation, and pathogenicity. Further investigations revealed that MoBi-1 is also essential for the regulation of mitochondrial energy metabolism. Remarkably, experimental evidence indicates that MoBi-1 does not seem to function in inhibiting Bax-induced programmed cell death, thus lacking inherent Bax inhibitory function, which broadens the existing understanding of Bax inhibitor-1's function and provides significant new insights into the disease-causing mechanisms of .

摘要

作为研究丝状真菌分子生物学和真菌病原体致病机制的模式生物。它也对中国的水稻生产构成重大威胁。Bax抑制剂-1(Bi-1)是一种具有进化保守性的蛋白质,作为促凋亡蛋白Bax诱导的程序性细胞死亡的抑制剂发挥作用。尽管Bi-1蛋白广泛存在于丝状真菌中,但其生物学功能尚未得到广泛表征。在此,我们表征了水稻稻瘟病菌中一种假定的Bax抑制剂蛋白MoBi-1的功能,它定位于线粒体并参与分生孢子形成、胁迫适应和致病性。进一步研究表明,MoBi-1对于线粒体能量代谢的调节也是必不可少的。值得注意的是,实验证据表明MoBi-1似乎并不具有抑制Bax诱导的程序性细胞死亡的功能,因此缺乏内在的Bax抑制功能,这拓宽了对Bax抑制剂-1功能的现有认识,并为稻瘟病菌的致病机制提供了重要的新见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dee6/12112661/00e33482f22a/jof-11-00359-g001.jpg

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