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通过高通量基因敲除对发育和黄曲霉毒素产生所需的bZIP转录因子进行系统表征

Systematic Characterization of bZIP Transcription Factors Required for Development and Aflatoxin Generation by High-Throughput Gene Knockout in .

作者信息

Zhao Qianqian, Pei Hao, Zhou Xiaoling, Zhao Kai, Yu Min, Han Guomin, Fan Jun, Tao Fang

机构信息

School of Life Sciences, Anhui Agricultural University, Hefei 230036, China.

The National Engineering Laboratory of Crop Stress Resistance Breeding, Anhui Agricultural University, Hefei 230036, China.

出版信息

J Fungi (Basel). 2022 Mar 30;8(4):356. doi: 10.3390/jof8040356.

Abstract

The basic leucine zipper (bZIP) is an important transcription factor required for fungal development, nutrient utilization, biosynthesis of secondary metabolites, and defense against various stresses. is a major producer of aflatoxin and an opportunistic fungus on a wide range of hosts. However, little is known about the role of most bZIP genes in . In this study, we developed a high-throughput gene knockout method based on an -mediated transformation system. Gene knockout construction by yeast recombinational cloning and screening of the null mutants by double fluorescence provides an efficient way to construct gene-deleted mutants for this multinucleate fungus. We deleted 15 bZIP genes in . Twelve of these genes were identified and characterized in this strain for the first time. The phenotypic analysis of these mutants showed that the 15 bZIP genes play a diverse role in mycelial growth (eight genes), conidiation (13 genes), aflatoxin biosynthesis (10 genes), oxidative stress response (11 genes), cell wall stress (five genes), osmotic stress (three genes), acid and alkali stress (four genes), and virulence to kernels (nine genes). Impressively, all 15 genes were involved in the development of sclerotia, and the respective deletion mutants of five of them did not produce sclerotia. Moreover, MetR was involved in this biological process. In addition, and play important roles in the adaptation to excessive iron and sulfur metabolism, respectively. These studies provide comprehensive insights into the role of bZIP transcription factors in this aflatoxigenic fungus of global significance.

摘要

基本亮氨酸拉链(bZIP)是真菌发育、营养利用、次生代谢产物生物合成以及抵御各种胁迫所必需的重要转录因子。黄曲霉是黄曲霉毒素的主要产生者,也是一种广泛寄生于多种宿主的机会性真菌。然而,对于黄曲霉中大多数bZIP基因的作用知之甚少。在本研究中,我们基于农杆菌介导的转化系统开发了一种高通量基因敲除方法。通过酵母重组克隆进行基因敲除构建,并利用双荧光筛选缺失突变体,为这种多核真菌构建基因缺失突变体提供了一种有效方法。我们在黄曲霉中删除了15个bZIP基因。其中12个基因在该菌株中首次被鉴定和表征。这些突变体的表型分析表明,这15个bZIP基因在菌丝生长(8个基因)、分生孢子形成(13个基因)、黄曲霉毒素生物合成(10个基因)、氧化应激反应(11个基因)、细胞壁应激(5个基因)、渗透应激(3个基因)、酸碱应激(4个基因)以及对玉米粒的毒力(9个基因)方面发挥着不同作用。令人印象深刻的是,所有15个基因都参与了菌核的发育,其中5个基因的各自缺失突变体不产生菌核。此外,MetR参与了这一生物学过程。此外,AtfA和SreA分别在适应过量铁和硫代谢中发挥重要作用。这些研究为bZIP转录因子在这种具有全球重要性的产黄曲霉毒素真菌中的作用提供了全面的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fd4b/9031554/5e1fe6f26d3b/jof-08-00356-g001.jpg

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