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玉米根系分泌物通过增强定殖和生物膜形成促进 sp. Za 对二苯醚类除草剂的解毒作用。

Maize Root Exudates Promote sp. Za Detoxification of Diphenyl Ether Herbicides by Enhancing Colonization and Biofilm Formation.

机构信息

College of Life Sciences, Nanjing Agricultural University, Nanjing 210095, P.R. China.

出版信息

Mol Plant Microbe Interact. 2024 Jul;37(7):552-560. doi: 10.1094/MPMI-02-24-0020-R. Epub 2024 Jul 16.

DOI:10.1094/MPMI-02-24-0020-R
PMID:38619862
Abstract

Diphenyl ether herbicides are extensively utilized in agricultural systems, but their residues threaten the health of sensitive rotation crops. Functional microbial strains can degrade diphenyl ether herbicides in the rhizosphere of crops, facilitating the restoration of a healthy agricultural environment. However, the interplay between microorganisms and plants in diphenyl ether herbicides degradation remains unclear. Thus, the herbicide-degrading strain sp. Za and the sensitive crop, maize, were employed to uncover the interaction mechanism. The degradation of diphenyl ether herbicides by strain sp. Za was promoted by root exudates. The strain induced root exudate re-secretion in diphenyl ether herbicide-polluted maize. We further showed that root exudates enhanced the rhizosphere colonization and the biofilm biomass of strain Za, augmenting its capacity to degrade diphenyl ether herbicide. Root exudates regulated gene , which is pivotal in biofilm formation. Wild-type strain Za significantly reduced herbicide toxicity to maize compared to the ZaΔ mutant. Moreover, root exudates promoted strain Za growth and chemotaxis, which was related to biofilm formation. This mutualistic relationship between the microorganisms and the plants demonstrates the significance of plant-microbe interactions in shaping diphenyl ether herbicide degradation in rhizosphere soils. [Formula: see text] The author(s) have dedicated the work to the public domain under the Creative Commons CC0 "No Rights Reserved" license by waiving all of his or her rights to the work worldwide under copyright law, including all related and neighboring rights, to the extent allowed by law, 2024.

摘要

二苯醚类除草剂被广泛应用于农业系统中,但它们的残留会威胁到敏感轮作作物的健康。功能微生物菌株可以在作物的根际降解二苯醚类除草剂,促进健康农业环境的恢复。然而,微生物和植物在二苯醚类除草剂降解过程中的相互作用尚不清楚。因此,采用具有二苯醚类除草剂降解能力的菌株 sp. Za 和敏感作物玉米来揭示其相互作用机制。菌株 sp. Za 可促进根分泌物对二苯醚类除草剂的降解。该菌株诱导二苯醚类除草剂污染玉米根系重新分泌根分泌物。我们进一步表明,根分泌物增强了菌株 Za 在根际的定殖和生物膜生物量,从而提高了其降解二苯醚类除草剂的能力。根分泌物调控了 sp. Za 中生物膜形成关键基因的表达。与 ZaΔ 突变体相比,野生型菌株 Za 显著降低了除草剂对玉米的毒性。此外,根分泌物促进了菌株 Za 的生长和趋化性,这与生物膜形成有关。这种微生物和植物之间的互利关系表明,植物-微生物相互作用在塑造根际土壤中二苯醚类除草剂降解中具有重要意义。[公式:见文本]作者将这项工作贡献给公众,在知识共享 CC0“无保留权利”的许可下,放弃其在全球范围内根据版权法对作品享有的所有权利,包括所有相关和相邻的权利,并在法律允许的范围内,2024 年。

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