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揭示Cdc42在丙酮酸代谢途径中介导[具体物质]杀虫活性的新作用。 (原文中“of”后面似乎缺失了具体内容)

Unveiling a Novel Role of Cdc42 in Pyruvate Metabolism Pathway to Mediate Insecticidal Activity of .

作者信息

Guan Yi, Wang Donghuang, Lin Xiaofeng, Li Xin, Lv Chao, Wang Dingyi, Zhang Longbin

机构信息

Fujian Key Laboratory of Marine Enzyme Engineering, College of Biological Science and Engineering, Fuzhou University, Fuzhou 350116, China.

School of Geographical Sciences, Fujian Normal University, Fuzhou 350007, China.

出版信息

J Fungi (Basel). 2022 Apr 12;8(4):394. doi: 10.3390/jof8040394.

Abstract

The small GTPase Cdc42 acts as a molecular switch essential for cell cycles and polar growth in model yeast, but has not been explored in , an insect-pathogenic fungus serving as a main source of fungal formulations against arthropod pests. Here, we show the indispensability of Cdc42 for fungal insecticidal activity. Deletion of in resulted in a great loss of virulence to , a model insect, via normal cuticle infection as well as defects in conidial germination, radial growth, aerial conidiation, and conidial tolerance to heat and UVB irradiation. The deleted mutant's hyphae formed fewer or more septa and produced unicellular blastospores with disturbed cell cycles under submerged-culture conditions. Transcriptomic analysis revealed differential expression of 746 genes and dysregulation of pyruvate metabolism and related pathways, which were validated by marked changes in intracellular pyruvate content, ATP content, related enzyme activities, and in extracellular beauvericin content and Pr1 protease activity vital for fungal virulence. These findings uncover a novel role for Cdc42 in the pathways of pyruvate metabolism and the pyruvate-involved tricarboxylic acid cycle (TCA cycle) and a linkage of the novel role with its indispensability for the biological control potential of against arthropod pests.

摘要

小GTP酶Cdc42作为一种分子开关,对模式酵母的细胞周期和极性生长至关重要,但在作为防治节肢动物害虫真菌制剂主要来源的昆虫病原真菌中尚未得到研究。在此,我们证明了Cdc42对真菌杀虫活性不可或缺。在球孢白僵菌中缺失Cdc42会导致对模式昆虫小菜蛾的毒力大幅丧失,这是通过正常的表皮感染以及分生孢子萌发、径向生长、气生分生孢子形成和分生孢子对热和UVB辐射的耐受性缺陷实现的。缺失突变体的菌丝形成的隔膜更少或更多,并在液体培养条件下产生细胞周期紊乱的单细胞芽生孢子。转录组分析揭示了746个基因的差异表达以及丙酮酸代谢和相关途径的失调,这通过细胞内丙酮酸含量、ATP含量、相关酶活性以及对真菌毒力至关重要的细胞外白僵菌素含量和Pr1蛋白酶活性的显著变化得到了验证。这些发现揭示了Cdc42在丙酮酸代谢途径和丙酮酸参与的三羧酸循环(TCA循环)中的新作用,以及这一新作用与其对球孢白僵菌防治节肢动物害虫生物防治潜力不可或缺性之间的联系。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/42c7/9031566/8fd4089f7bb7/jof-08-00394-g001.jpg

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