Hossain Afsana, Ali Md Arshad, Lin Li, Luo Jinyan, You Yuxin, Masum Md Mahidul Islam, Jiang Yugen, Wang Yanli, Li Bin, An Qianli
State Key Laboratory of Rice Biology and Breeding, Ministry of Agriculture Key Laboratory of Molecular Biology of Crop Pathogens and Insects, Zhejiang Province Key Laboratory of Biology of Crop Pathogens and Insects, Institute of Biotechnology, Zhejiang University, Hangzhou 310058, China.
Department of Plant Pathology, Bangabandhu Sheikh Mujibur Rahman Agricultural University, Gazipur 1706, Bangladesh.
Microorganisms. 2023 Mar 23;11(4):817. doi: 10.3390/microorganisms11040817.
Polymyxin-producing bacteria within the complex have broad-spectrum activities against fungi and bacteria. Their antibacterial activities against soft rot and phytopathogens containing multiple polymyxin-resistant genes were not clear. Here, we selected nine strains within the complex having broad-spectrum antagonistic activities against phytopathogenic fungi and a polymyxin-resistant strain causing stem and root rot disease of sweet potato and did antagonistic assays on nutrient agar and sweet potato tuber slices. These strains within the complex showed clear antagonistic activities against in vitro and in vivo. The most effective antagonistic strain ShX301 showed broad-spectrum antagonistic activities against all the test and strains, completely eliminated from sweet potato seed tubers, and promoted the growth of sweet potato seedlings. Cell-free culture filtrate of ShX301 inhibited growth, swimming motility, and biofilm formation and disrupted plasma membranes, releasing nucleic acids and proteins. Multiple lipopeptides produced by ShX301 may play a major role in the bactericidal and bacteriostatic actions. This study clarifies that the antimicrobial spectrum of polymyxin-producing bacteria within the complex includes the polymyxin-resistant and phytopathogens and strengthens the fact that bacteria within the complex have high probability of being effective biocontrol agents and plant growth promoters.
该菌群内产生多粘菌素的细菌对真菌和细菌具有广谱活性。它们对软腐病以及含有多个多粘菌素抗性基因的植物病原体的抗菌活性尚不清楚。在此,我们从该菌群中挑选出9株对植物病原真菌具有广谱拮抗活性的菌株,以及1株引起甘薯茎腐病和根腐病的多粘菌素抗性菌株,并在营养琼脂和甘薯块茎切片上进行了拮抗试验。该菌群内的这些菌株在体外和体内均表现出明显的拮抗活性。最有效的拮抗菌株ShX301对所有测试的植物病原体和细菌菌株均表现出广谱拮抗活性,能完全消除甘薯种薯上的病菌,并促进甘薯幼苗生长。ShX301的无细胞培养滤液可抑制病菌生长、游动性和生物膜形成,并破坏病菌细胞膜,释放核酸和蛋白质。ShX301产生的多种脂肽可能在杀菌和抑菌作用中起主要作用。本研究阐明,该菌群内产生多粘菌素的细菌的抗菌谱包括多粘菌素抗性病菌和植物病原体,并强化了该菌群内的细菌很有可能是有效的生物防治剂和植物生长促进剂这一事实。