Das Priyanka, Kashyap Sampurna, Sharma Indrani, Ray Suvendra Kumar, Agarwala Niraj
Department of Botany, Gauhati University, Gopinath Bordoloi Nagar, Jalukbari, Guwahati, 781014, Assam, India.
Department of Molecular Biology and Biotechnology, Tezpur University, Tezpur, 784028, Assam, India.
Braz J Microbiol. 2025 Mar;56(1):611-633. doi: 10.1007/s42770-024-01599-1. Epub 2025 Jan 29.
Plant-associated microbiome plays important role in maintaining overall health of the host plant. Xanthium strumarium displaying resilience to various environmental fluctuations may harbor some bacterial isolates which can help this plant to grow worldwide. The present study aims to isolate endophytic and rhizospheric bacteria from X. strumarium and assess their plant growth-promoting and Ralstonia solanacearum antagonism activity. From a total of 148 isolated bacteria, 7 endophytic and 2 rhizospheric bacterial isolates were found to endow with significant in vitro plant growth promotion activities. The 16S rRNA gene sequence similarity of the 7 endophytic isolates has revealed these bacteria belonging to 5 genera viz. Curtobacterium, Pantoea, Pseudomonas, Microbacterium and Paracoccus whereas, the two rhizospheric isolates were identified as species of Ralstonia pickettii and Priestia megaterium. Maximum growth promotion was observed using the strains Pseudomonas fluorescens XSS6 and Microbacterium hydrothermale XSS20 in the assay conducted on tomato plants. In the in planta inhibition assay of R. solanacearum carried out in tomato seedlings using root bacterization method, Pseudomonas fluorescens XSS6 and Panotea vagans XSS3 showed antagonistic activity with biocontrol efficacy of 94.83% and 83.96%, respectively. GC-MS analysis detected several known antimicrobial compounds in the extract of the culture supernatant of Pseudomonas fluorescens XSS6 and Panotea vagans XSS3 strains, which may contribute to the inhibition of R. solanacearum by these strains. The results of our study indicated that the bacteria associated with X. strumarium exhibit multiple plant-beneficial effects. These bacteria have the potential to be developed as effective biofertilizers and biological control agents, promoting sustainable agriculture practices.
植物相关微生物群落在维持宿主植物的整体健康方面发挥着重要作用。对各种环境波动具有恢复力的苍耳可能含有一些细菌分离株,这些分离株有助于该植物在全球范围内生长。本研究旨在从苍耳中分离内生菌和根际细菌,并评估它们促进植物生长和拮抗青枯雷尔氏菌的活性。在总共148株分离细菌中,发现7株内生菌和2株根际细菌分离株具有显著的体外促进植物生长活性。7株内生菌分离株的16S rRNA基因序列相似性表明,这些细菌属于5个属,即短小杆菌属、泛菌属、假单胞菌属、微杆菌属和副球菌属,而2株根际分离株被鉴定为皮氏罗尔斯顿菌和巨大Priestia菌的物种。在对番茄植株进行的试验中,荧光假单胞菌XSS6和嗜热栖热微杆菌XSS20菌株表现出最大的生长促进作用。在番茄幼苗中使用根部细菌接种法进行的青枯雷尔氏菌的体内抑制试验中,荧光假单胞菌XSS6和漫游泛菌XSS3表现出拮抗活性,生物防治效果分别为94.83%和83.96%。GC-MS分析在荧光假单胞菌XSS6和漫游泛菌XSS3菌株培养上清液的提取物中检测到几种已知的抗菌化合物,这可能有助于这些菌株对青枯雷尔氏菌的抑制作用。我们的研究结果表明,与苍耳相关的细菌表现出多种对植物有益的作用。这些细菌有潜力被开发为有效的生物肥料和生物防治剂,促进可持续农业实践。