Li Rong, Yang Panlei, Zhang Hongjuan, Wang Chunjing, Zhao Fang, Liu Jiehui, Wang Yanbin, Liang Yan, Sun Ting, Xie Xiansheng
Institute of Wheat Research, Shanxi Agricultural University, Linfen 041000, China.
Department of Plant Pathology, College of Plant Protection, China Agricultural University, Beijing 100193, China.
Microorganisms. 2024 Aug 21;12(8):1724. doi: 10.3390/microorganisms12081724.
is a promising candidate for biocontrol applications. A common second messenger molecule, bis-(3,5)-cyclic-dimeric-guanosine monophosphate (c-di-GMP), has the ability to regulate a range of physiological functions that impact the effectiveness of biocontrol. However, the status of the c-di-GMP signaling pathway in biocontrol strain LQ-3 remains unknown. Strain LQ-3, which was isolated from wheat rhizosphere soil, has shown effective control of wheat sharp eyespot and has been identified as through whole-genome sequencing analyses. In this study, we investigated the intracellular c-di-GMP signaling pathway of LQ-3 and further performed a comparative genomic analysis of LQ-3 and 29 other strains. The results revealed the presence of four proteins containing the GGDEF domain, which is the conserved domain for c-di-GMP synthesis enzymes. Additionally, two proteins were identified with the EAL domain, which represents the conserved domain for c-di-GMP degradation enzymes. Furthermore, one protein was found to possess a PilZ domain, indicative of the conserved domain for c-di-GMP receptors in LQ-3. These proteins are called DgcK, DgcP, YybT, YdaK, PdeH, YkuI, and DgrA, respectively; they are distributed in a similar manner across the strains and belong to the signal transduction family. We selected five genes from the aforementioned seven genes for further study, excluding YybT and DgrA. They all play a role in regulating the motility, biofilm formation, and colonization of LQ-3. This study reveals the c-di-GMP signaling pathway associated with biocontrol features in LQ-3, providing guidance for the prevention and control of wheat sharp eyespot by LQ-3.
是生物防治应用中一个有前景的候选菌株。一种常见的第二信使分子,双(3,5)-环二聚鸟苷单磷酸(c-di-GMP),具有调节一系列影响生物防治效果的生理功能的能力。然而,生物防治菌株LQ-3中c-di-GMP信号通路的状态仍然未知。从小麦根际土壤中分离出的菌株LQ-3已显示出对小麦纹枯病的有效防治作用,并已通过全基因组测序分析进行了鉴定。在本研究中,我们研究了LQ-3的细胞内c-di-GMP信号通路,并进一步对LQ-3和其他29个菌株进行了比较基因组分析。结果显示存在四种含有GGDEF结构域的蛋白质,该结构域是c-di-GMP合成酶的保守结构域。此外,鉴定出两种含有EAL结构域的蛋白质,该结构域代表c-di-GMP降解酶的保守结构域。此外,发现一种蛋白质具有PilZ结构域,表明其为LQ-3中c-di-GMP受体的保守结构域。这些蛋白质分别称为DgcK、DgcP、YybT、YdaK、PdeH、YkuI和DgrA;它们在各菌株中的分布方式相似,属于信号转导家族。我们从上述七个基因中选择了五个基因进行进一步研究,排除了YybT和DgrA。它们都在调节LQ-3的运动性、生物膜形成和定殖中发挥作用。本研究揭示了与LQ-3生物防治特性相关的c-di-GMP信号通路,为LQ-3防治小麦纹枯病提供了指导。