Wang Zhen, Solanki Manoj Kumar, Yu Zhuo-Xin, Anas Muhammad, Dong Deng-Feng, Xing Yong-Xiu, Malviya Mukesh Kumar, Pang Fei, Li Yang-Rui
Guangxi Key Laboratory of Agricultural Resources Chemistry and Biotechnology, College of Biology and Pharmacy, Yulin Normal University, Yulin, China.
Key Laboratory of Sugarcane Biotechnology and Genetic Improvement (Guangxi), Guangxi Key Laboratory of Sugarcane Genetic Improvement, Ministry of Agriculture, Sugarcane Research Institute of Guangxi Academy of Agricultural Sciences, Nanning, China.
Front Microbiol. 2021 Dec 23;12:797889. doi: 10.3389/fmicb.2021.797889. eCollection 2021.
To understand the beneficial interaction of sugarcane rhizosphere actinobacteria in promoting plant growth and managing plant diseases, this study investigated the potential role of sugarcane rhizospheric actinobacteria in promoting plant growth and antagonizing plant pathogens. We isolated 58 actinobacteria from the sugarcane rhizosphere, conducted plant growth-promoting (PGP) characteristics research, and tested the pathogenic fungi . Results showed that BTU6 (), the most representative strain, regulates plant defense enzyme activity and significantly enhances sugarcane smut resistance by regulating stress resistance-related enzyme (substances (POD, PAL, PPO, TP) in sugarcane) activity in sugarcane. The genomic evaluation indicated that BTU6 has the ability to biosynthesize chitinase, β-1,3-glucanase, and various secondary metabolites and plays an essential role in the growth of sugarcane plants under biotic stress. Potential mechanisms of the strain in improving the disease resistance of sugarcane plants and its potential in biodegrading exogenous chemicals were also revealed. This study showed the importance of sugarcane rhizosphere actinobacteria in microbial ecology and plant growth promotion.
为了解甘蔗根际放线菌在促进植物生长和防治植物病害方面的有益相互作用,本研究调查了甘蔗根际放线菌在促进植物生长和拮抗植物病原菌方面的潜在作用。我们从甘蔗根际分离出58株放线菌,进行了促植物生长(PGP)特性研究,并对病原真菌进行了测试。结果表明,最具代表性的菌株BTU6通过调节甘蔗中与抗逆相关酶(物质(POD、PAL、PPO、TP))的活性来调节植物防御酶活性,并显著增强甘蔗对黑穗病的抗性。基因组评估表明,BTU6具有生物合成几丁质酶、β-1,3-葡聚糖酶和各种次生代谢产物的能力,并在生物胁迫下甘蔗植株的生长中发挥重要作用。还揭示了该菌株提高甘蔗植株抗病性的潜在机制及其在生物降解外源化学物质方面的潜力。本研究表明了甘蔗根际放线菌在微生物生态学和促进植物生长方面的重要性。