Duan Shipeng, Liu Qianqian, Shen Yanmei, Zhu Lirong, Yuan Hui, Yang Jinkui
State Key Laboratory for Conservation and Utilization of Bio-Resources in Yunnan, Key Laboratory for Southwest Microbial Diversity of the Ministry of Education, and School of Life Science, Yunnan University, Kunming 650032, China.
Microorganisms. 2024 Sep 6;12(9):1853. doi: 10.3390/microorganisms12091853.
is a representative nematode-trapping (NT) fungus that is able to capture, kill, and digest nematodes by producing specialized three-dimensional networks (traps) under nutrient-deprived conditions. Ran1 is a serine/threonine protein kinase that can act as a negative regulator of sexual conjugation and meiosis. However, the specific role of Ran1 remains largely unknown in NT fungi. Here, we identified AoRan1 (AOL_s00004g277) via gene disruption, phenotypic analysis, and metabolomic analysis. Our findings reveal that knockout caused a remarkable increase in conidial production, traps, and nematode feeding efficiency. In addition, the absence of resulted in the accumulation of lipid droplets and increased autophagic levels as well as increased tolerance to cell wall synthesis-disturbing reagents and oxidants. Metabolomic analyses also suggested that AoRan1 is involved in multiple metabolic processes, such as fatty acid biosynthesis. In summary, our results suggest that AoRan1 is crucial in conidiation, pathogenicity, and secondary metabolism. This study's results further our understanding of the molecular mechanisms by which AoRan1 regulates conidiation and trap formation in .
是一种典型的捕食线虫(NT)真菌,能够在营养缺乏的条件下通过产生特殊的三维网络(陷阱)来捕获、杀死和消化线虫。Ran1是一种丝氨酸/苏氨酸蛋白激酶,可作为有性接合和减数分裂的负调节因子。然而,Ran1在NT真菌中的具体作用在很大程度上仍然未知。在这里,我们通过基因破坏、表型分析和代谢组学分析鉴定了AoRan1(AOL_s00004g277)。我们的研究结果表明,基因敲除导致分生孢子产量、陷阱和线虫捕食效率显著增加。此外,AoRan1的缺失导致脂滴积累、自噬水平增加以及对细胞壁合成干扰试剂和氧化剂的耐受性增加。代谢组学分析还表明,AoRan1参与多个代谢过程,如脂肪酸生物合成。总之,我们的结果表明,AoRan1在分生孢子形成、致病性和次级代谢中至关重要。这项研究的结果进一步加深了我们对AoRan1调节分生孢子形成和陷阱形成的分子机制的理解。