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水稻中天然存在的毒死蜱矿化内生细菌群落促进生长活性的表征——一种开发安全可持续农业的潜在生物刺激剂

Characterization of Growth-Promoting Activities of Consortia of Chlorpyrifos Mineralizing Endophytic Bacteria Naturally Harboring in Rice Plants-A Potential Bio-Stimulant to Develop a Safe and Sustainable Agriculture.

作者信息

Prodhan Md Yeasin, Rahman Md Bokhtiar, Rahman Aminur, Akbor Md Ahedul, Ghosh Sibdas, Nahar Mst Nur-E-Nazmun, Shamsuzzoha Md, Cho Kye Man, Haque Md Azizul

机构信息

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

Department of Biomedical Sciences, College of Clinical Pharmacy, King Faisal University, Al-Ahsa 31982, Saudi Arabia.

出版信息

Microorganisms. 2023 Jul 16;11(7):1821. doi: 10.3390/microorganisms11071821.

Abstract

Eighteen pesticide-degrading endophytic bacteria were isolated from the roots, stems, and leaves of healthy rice plants and identified through 16S rRNA gene sequencing. Furthermore, biochemical properties, including enzyme production, dye degradation, anti-bacterial activities, plant-growth-promoting traits, including N-fixation, P-solubilization, auxin production, and ACC-deaminase activities of these naturally occurring endophytic bacteria along with their four consortia, were characterized. HSTU-ABk39 and sp. HSTU-ABk36 displayed inhibition zones of 41.5 ± 1.5 mm, and 29 ± 09 mm against multidrug-resistant human pathogenic bacteria and , respectively. FT-IR analysis revealed that all eighteen isolates were able to degrade chlorpyrifos Our study confirms that pesticide-degrading endophytic bacteria from rice plants play a key role in enhancing plant growth. Notably, rice plants grown in pots containing reduced urea (30%) mixed with either endophytic bacterial consortium-1, consortium-2, consortium-3, or consortia-4 demonstrated an increase of 17.3%, 38.6%, 18.2%, and 39.1% yields, respectively, compared to the control plants grown in pots containing 100% fertilizer. GC-MS/MS analysis confirmed that consortia treatment caused the degradation of chlorpyrifos into different non-toxic metabolites, including 2-Hydroxy-3,5,6 trichloropyridine, Diethyl methane phosphonate, Phorate sulfoxide, and Carbonochloridic. Thus, these isolates could be deployed as bio-stimulants to improve crop production by creating a sustainable biological system.

摘要

从健康水稻植株的根、茎和叶中分离出18株农药降解内生细菌,并通过16S rRNA基因测序进行鉴定。此外,还对这些天然存在的内生细菌及其四个菌群的生化特性进行了表征,包括酶产生、染料降解、抗菌活性,以及植物生长促进特性,如固氮、解磷、生长素产生和ACC脱氨酶活性。HSTU-ABk39和HSTU-ABk36菌株分别对多重耐药人类病原菌和显示出41.5±1.5毫米和29±0.9毫米的抑菌圈。傅里叶变换红外光谱(FT-IR)分析表明,所有18株分离物都能够降解毒死蜱。我们的研究证实,水稻植株中的农药降解内生细菌在促进植物生长方面发挥着关键作用。值得注意的是,与在含有100%肥料的花盆中生长的对照植株相比,在含有减少30%尿素并与内生细菌菌群-1、菌群-2、菌群-3或菌群-4混合的花盆中生长的水稻植株产量分别提高了17.3%、38.6%、18.2%和39.1%。气相色谱-串联质谱(GC-MS/MS)分析证实,菌群处理导致毒死蜱降解为不同的无毒代谢物,包括2-羟基-3,5,6-三氯吡啶、二乙基甲烷膦酸酯、亚砜磷和碳氯化合物。因此,这些分离物可作为生物刺激剂,通过创建可持续的生物系统来提高作物产量。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d410/10385066/e021fd25fc4b/microorganisms-11-01821-g001.jpg

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