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有机磷杀虫剂矿化内生和根际土壤细菌联合体影响茄子生长促进。

Organophosphorus insecticides mineralizing endophytic and rhizospheric soil bacterial consortium influence eggplant growth-promotion.

机构信息

Department of Biochemistry and Molecular Biology, Faculty of Agriculture, Hajee Mohammad Danesh Science and Technology University, Dinajpur, 5200, Bangladesh.

Institute of National Analytical Research and Services (INARS), Bangladesh Council of Scientific and Industrial Research (BCSIR), Dhaka, 1205, Bangladesh.

出版信息

Arch Microbiol. 2022 Feb 27;204(3):199. doi: 10.1007/s00203-022-02809-w.

Abstract

This study was aimed to evaluate eggplant's growth-enhancing activity of chlorpyrifos and diazinon-degrading endophytic and rhizospheric soil bacteria isolated from cauliflower and tomato roots and the rhizospheric soil of rice roots, respectively. The identified endophytes belong to the Acinetobacter, Enterobacter and Klebsiella genera, while rhizospheric soil isolates belong to Pantoea, Acinetobacter, Kosakonia, Morganella, Enterobacter, and Klebsiella genera with species variation and genetic distances. All the strain's consumed 100% (50 mg/5 mL) chlorpyrifos and diazinon after 14 days of exposure, except for Pantoea sp. HSTU-Sny4 (84%) and Kosakonia sp. HSTU-ASn39 (42%). The strain's exhibited N-fixation, P-solubilization, indole-3-acetic acid (IAA), and ACC-deaminase production capabilities. The individual strain's and consortium treatment enhanced eggplant growth at germination, seedling, vegetative and reproductive stages. Plant growth-promoting genes, e.g., nif-cluster, chemotaxis, phosphates, sulfur, abiotic stress, chemotaxis, biofilm formation and organophosphorus insecticide-degrading genes were annotated in Klebsiella sp. HSTU-Sny5 and Morganella sp. HSTU-ASny43 genomes. Importantly, the mixed consortium supplemented with 40% urea-treated eggplants demonstrated similar growth parameters compared to the 100% urea eggplants. Plenty of insecticide-degrading proteins belonged to HSTU-Sny5 and HSTU-ASny43 strain's and had interacted with 100 different insecticides as confirmed in virtual screening. This research has a significant role in reducing the application of chemical fertilizer and bioremediation of pesticides in agriculture.

摘要

本研究旨在评估从花椰菜和番茄根部内生和根际土壤以及水稻根部根际土壤中分离出的能够增强氯吡硫磷和二嗪农降解能力的茄子生长的内生和根际土壤细菌。鉴定出的内生菌属于不动杆菌属、肠杆菌属和克氏杆菌属,而根际土壤分离菌属于泛菌属、不动杆菌属、Kosakonia 属、Morganella 属、肠杆菌属和克氏杆菌属,具有物种变异和遗传距离。除了 Pantoea sp. HSTU-Sny4(84%)和 Kosakonia sp. HSTU-ASn39(42%)外,所有菌株在暴露 14 天后都能消耗 100%(50mg/5mL)的氯吡硫磷和二嗪农。菌株表现出固氮、解磷、吲哚-3-乙酸(IAA)和 ACC 脱氨酶产生能力。单一菌株和混合菌处理均能在萌发、幼苗、营养和生殖阶段促进茄子生长。在 Klebsiella sp. HSTU-Sny5 和 Morganella sp. HSTU-ASny43 基因组中注释了植物生长促进基因,如 nif-cluster、趋化性、磷酸盐、硫、非生物胁迫、趋化性、生物膜形成和有机磷杀虫剂降解基因。重要的是,与 100%尿素茄子相比,添加 40%尿素处理的茄子混合菌补充剂显示出相似的生长参数。大量的杀虫剂降解蛋白属于 HSTU-Sny5 和 HSTU-ASny43 菌株,并在虚拟筛选中证实与 100 种不同的杀虫剂相互作用。这项研究在减少农业中化肥的应用和农药的生物修复方面具有重要作用。

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