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禾谷镰刀菌自噬相关脂肪酶 FgATG15 对脂质周转和植物侵染很重要。

Autophagy-related lipase FgATG15 of Fusarium graminearum is important for lipid turnover and plant infection.

机构信息

University of Hamburg, Biocenter Klein Flottbek, Department of Molecular Phytopathology and Genetics, Ohnhorststrasse 18, Hamburg, Germany.

出版信息

Fungal Genet Biol. 2011 Mar;48(3):217-24. doi: 10.1016/j.fgb.2010.11.004. Epub 2010 Nov 19.

Abstract

Autophagy is a non-selective degradation pathway in eukaryotic cells that is conserved from yeasts to humans. Autophagy is involved in the virulence of several pathogenic fungi such as Magnaporthe grisea or Colletotrichum orbiculare. In the current study, we identified and disrupted an autophagy-like lipase FgATG15 in Fusarium graminearum. We showed that FgATG15 exhibits lipase activity when heterologously expressed in P. pastoris. We used a gene deletion approach to characterize the function of the enzyme. We demonstrate that FgATG15 is involved in fungal growth and aerial hyphae production. FgATG15 is also involved in conidia production and germination, and disruption of FgATG15 led to aberrant conidia shapes. FgATG15 disruptants were reduced in storage lipid degradation under starvation conditions, implicating FgATG15's involvement in lipid turnover. Moreover, wheat head infection by the disruptants was severely attenuated, indicating the involvement of FgATG15 in pathogenesis. Additionally, we found that the deoxynivalenol levels of FgATG15 disruptants were significantly decreased compared with the wild type strain. Taken together, we show that FgATG15 is involved in numerous developmental processes and could be exploited as an antifungal target.

摘要

自噬是真核细胞中一种非选择性降解途径,从酵母到人类都保守存在。自噬参与了几种致病真菌的毒力,如稻瘟病菌或炭疽菌。在本研究中,我们鉴定并敲除了禾谷镰刀菌中的一个自噬样脂肪酶 FgATG15。我们表明,当在毕赤酵母中异源表达时,FgATG15 具有脂肪酶活性。我们采用基因缺失的方法来研究该酶的功能。结果表明,FgATG15 参与真菌生长和气生菌丝的产生。FgATG15 还参与分生孢子的产生和萌发,并且敲除 FgATG15 导致分生孢子形态异常。在饥饿条件下,FgATG15 缺失突变体的贮藏脂质降解减少,表明 FgATG15 参与脂质周转。此外,该突变体对小麦头部的侵染严重减弱,表明 FgATG15 参与了致病过程。此外,我们发现 FgATG15 缺失突变体的脱氧雪腐镰刀菌烯醇水平与野生型菌株相比显著降低。综上所述,我们表明 FgATG15 参与了许多发育过程,可作为一种抗真菌靶标。

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