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疏水蛋白CsHydr1与脂滴包被蛋白CsCap20相互作用并调节脂质代谢和毒力。

The Hydrophobin CsHydr1 Interacts with the Lipid Droplet-Coating Protein CsCap20 and Regulates Lipid Metabolism and Virulence.

作者信息

Wang Na, Wang Jiyuan, Lu Jingwen, Liu Yu, Xi Yitao, Song Miao, Guan Xiaoling, Li Zhigang, Li Xiao, Zhang Yu, Lin Chunhua, Miao Weiguo

机构信息

Key Laboratory of Green Prevention and Control of Tropical Plant Diseases and Pests, Ministry of Education, College of Plant Protection, Hainan University, Haikou 570228, China.

出版信息

J Fungi (Basel). 2022 Sep 19;8(9):977. doi: 10.3390/jof8090977.

Abstract

Previous studies of the lipid droplet-coating protein Cap20 in show that it plays a key role in appressorium development and virulence. In this study, the hydrophobin CsHydr1, which contains a signal peptide of 19 amino acids and a hydrophobic domain (HYDRO), was shown to interact with CsCap20 in The deletion mutant showed slightly enhanced mycelial growth, small conidia, slow spore germination and appressoria formation, cell wall integrity and virulence. Like CsCAP20, CsHydr1 is also localized on the lipid droplet surface of . However, when CsCap20 was absent, some CsHydr1 was observed in other parts. Quantitative lipid determination showed that the absence of either CsHydr1 or CsCap20 reduced the content of lipids in mycelia and conidia, while the effect of CsCap20 was more obvious; these results suggest that an interaction protein CsHydr1 of CsCap20 is localized on the lipid droplet surface and involved in lipid metabolism, which affects appressorium formation and virulence in .

摘要

先前对脂质滴包被蛋白Cap20的研究表明,它在附着胞发育和毒力中起关键作用。在本研究中,疏水蛋白CsHydr1含有19个氨基酸的信号肽和一个疏水结构域(HYDRO),被证明在[具体实验体系]中与CsCap20相互作用。[具体缺失突变体]显示菌丝生长略有增强、分生孢子小、孢子萌发和附着胞形成缓慢、细胞壁完整性和毒力降低。与CsCAP20一样,CsHydr1也定位于[具体生物]的脂质滴表面。然而,当CsCap20缺失时,在其他部位观察到一些CsHydr1。定量脂质测定表明,CsHydr1或CsCap20的缺失均降低了菌丝体和分生孢子中的脂质含量,而CsCap20的影响更明显;这些结果表明,CsCap20的相互作用蛋白CsHydr1定位于脂质滴表面并参与脂质代谢,这影响了[具体生物]中附着胞的形成和毒力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2b9b/9502314/9ddd5a5e080c/jof-08-00977-g001.jpg

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