College of Food Science and Engineering, Gansu Agricultural University, Lanzhou 730070, China.
J Appl Microbiol. 2024 Aug 5;135(8). doi: 10.1093/jambio/lxae198.
The Gα subunit is a major component of heterotrimeric G proteins, which play a crucial role in the development and pathogenicity of several model fungi. However, its detailed function in the causal agent of pear black spot (Alternaria alternata) is unclear. Our aim was to understand the characteristics and functions of AaGA1 in A. alternata.
AaGA1 was cloned from A. alternata in this study, which encodes 353 amino acids and has a "G-alpha" domain. Mutant ΔAaGA1 resulted in reduced vegetative growth, conidiation, and spore germination. Especially, mutant ΔAaGA1 produced only fewer conidia on the V8A medium, and spore formation-related genes AbaA, BrlA, and WetA were significantly downregulated. More tolerance against cell wall-inhibiting agents was observed after the deletion of AaGA1. Moreover, AaGA1 deletion led to a significant reduction in melanin and toxin production. Interestingly, deletion of AaGA1 resulted in defective appressorium-like formations, complete loss of the ability to penetrate cellophane, and decreased infection on non-wound inoculated tobacco leaves. Cell wall-degrading enzyme-related genes PME, CL, Cut2, and LC were significantly downregulated in mutant ΔAaGA1 mutant, significantly reducing virulence on wound-inoculated pear fruits.
The G protein alpha subunit AaGA1 is indispensable for fungal development, appressorium-like formations, and pathogenicity in A. alternata.
Gα 亚基是异三聚体 G 蛋白的主要组成部分,在几种模式真菌的发育和致病性中起着至关重要的作用。然而,其在梨黑斑病菌(Alternaria alternata)中的详细功能尚不清楚。本研究旨在了解 A. alternata 中 AaGA1 的特征和功能。
本研究从 A. alternata 中克隆了 AaGA1,其编码 353 个氨基酸,具有“G-alpha”结构域。突变体 ΔAaGA1 导致营养生长、产孢和孢子萌发减少。特别是,突变体 ΔAaGA1 在 V8A 培养基上产生的分生孢子更少,并且与孢子形成相关的基因 AbaA、BrlA 和 WetA 显著下调。AaGA1 缺失后对细胞壁抑制剂的耐受性增加。此外,AaGA1 缺失导致黑色素和毒素产生显著减少。有趣的是,AaGA1 的缺失导致附着胞样结构形成缺陷,完全丧失穿透玻璃纸的能力,并降低对非伤口接种的烟草叶片的感染。细胞壁降解酶相关基因 PME、CL、Cut2 和 LC 在突变体 ΔAaGA1 中显著下调,显著降低了对伤口接种梨果实的毒力。
G 蛋白α亚基 AaGA1 对于 A. alternata 的真菌发育、附着胞样结构形成和致病性是不可或缺的。