Li Yuejiao, Sun Shuqin, Li Guangsheng, Yang Zezhong, Xing Yuqi, Wang Ruixiang, Xuan Yuanhu, Yang Xiurong
Institute of Plant Protection, Tianjin Academy of Agricultural Sciences, Tianjin 300381, China.
State Key Laboratory of Elemento-Organic Chemistry and Department of Plant Protection, National Pesticide Engineering Research Center (Tianjin), Nankai University, Tianjin 300071, China.
J Fungi (Basel). 2025 Mar 21;11(4):239. doi: 10.3390/jof11040239.
is an economically important plant pathogen that causes rice false smut, which causes yield reduction and produces mycotoxins in infected grains that pose a serious threat to human and animal health. The target of rapamycin (TOR) signaling pathway acts as a master regular in regulating cell growth and secondary metabolism in fungi. However, little is known about the function of the TOR pathway in regulating fungal development, pathogenicity and mycotoxin biosynthesis in . Here, we demonstrate that the TOR signaling pathway positively regulates the cell growth, conidiation and pathogenicity in through the biochemical inhibition of TOR kinases. The inhibition of TOR in () by rapamycin significantly induces the expression of genes related to mycotoxin biosynthesis, especially that of ustiloxins. Transcriptome analysis under TOR inhibition revealed that the TOR signaling pathway is a regulatory hub that governs growth and metabolism. A total of 275 differentially expressed genes (DEGs), consisting of 109 up-regulated DEGs and 166 down-regulated DEGs, were identified after rapamycin treatment. The up-regulated DEGs were enriched in amino acid- and acetyl-CoA-related metabolism pathways and the down-regulated DEGs were enriched in carbohydrate- and fatty acid-related metabolism pathways. Collectively, our results provide the first in-depth insight into the TOR signaling pathway in regulating vegetable growth, virulence and mycotoxin biosynthesis in .
是一种具有经济重要性的植物病原体,可导致水稻稻曲病,造成产量下降,并在受感染的谷粒中产生霉菌毒素,对人类和动物健康构成严重威胁。雷帕霉素靶蛋白(TOR)信号通路在调节真菌细胞生长和次级代谢中起主要调节作用。然而,关于TOR通路在调节该真菌的发育、致病性和霉菌毒素生物合成中的功能知之甚少。在此,我们证明TOR信号通路通过对TOR激酶的生化抑制正向调节该真菌的细胞生长、分生孢子形成和致病性。雷帕霉素对该真菌()中TOR的抑制显著诱导了与霉菌毒素生物合成相关基因的表达,尤其是玉蜀黍赤霉烯酮的表达。TOR抑制下的转录组分析表明,TOR信号通路是一个控制该真菌生长和代谢的调节枢纽。雷帕霉素处理后共鉴定出275个差异表达基因(DEG),其中109个上调DEG和166个下调DEG。上调的DEG富集在与氨基酸和乙酰辅酶A相关的代谢途径中,下调的DEG富集在与碳水化合物和脂肪酸相关的代谢途径中。总的来说,我们的结果首次深入揭示了TOR信号通路在调节该真菌生长、毒力和霉菌毒素生物合成中的作用。