喹氯酸降解菌D菌株的分离、筛选、降解特性及其对受喹氯酸污染稻田的生物修复潜力。

IF 3.8 2区 生物学 Q2 MICROBIOLOGY
Microbiology spectrum Pub Date : 2021-10-31 Epub Date: 2021-09-29 DOI:10.1128/Spectrum.00398-21
Siqi Huang, Jiuyue Pan, Mancuo Tuwang, Hongyan Li, Chenyi Ma, Mingxue Chen, Xiaoyan Lin
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引用次数: 1

摘要

喹氯rac(QNC)是一种持久性、高选择性、激素类低毒除草剂。QNC在土壤中积累,并影响施用后种植的作物的生长和发育。在本研究中,我们从水稻土中分离并筛选了一株QNC降解菌株D。形态学分析、生理生化测试和16S rRNA基因测序使我们将菌株D鉴定为Cellulosimicrobium cellans菌株。我们研究了应变D与QNC降解的关系。在最佳培养条件下,培养21天后QNC的降解率为45.9%。通过盆栽实验模拟并量化了菌株D在野外对QNC的降解。结果表明,菌株D促进水稻生长,降低QNC。这项研究发现了一种降解QNC的新细菌,为进一步研究QNC修复提供了基础。重要的QNC降解菌已经从不同的环境中分离出来,但没有降解QNC的纤维素酰亚胺菌菌株的报道。在这项研究中,从水稻土中筛选出一种以前未鉴定的降解QNC的菌株D。详细研究了与QNC降解有关的菌株D的特性。结果表明,菌株D能有效降解QNC。利用高效液相色谱-四极杆飞行时间质谱法鉴定了菌株D形成的两种QNC降解产物,即3-吡啶乙酸(m/z 138.0548)和3-乙基吡啶(m/z 108.0805)。菌株D具有在QNC污染的水稻中降解QNC的能力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Isolation, Screening, and Degradation Characteristics of a Quinclorac-Degrading Bacterium, Strain D, and Its Potential for Bioremediation of Rice Fields Polluted by Quinclorac.

Isolation, Screening, and Degradation Characteristics of a Quinclorac-Degrading Bacterium, Strain D, and Its Potential for Bioremediation of Rice Fields Polluted by Quinclorac.

Isolation, Screening, and Degradation Characteristics of a Quinclorac-Degrading Bacterium, Strain D, and Its Potential for Bioremediation of Rice Fields Polluted by Quinclorac.

Isolation, Screening, and Degradation Characteristics of a Quinclorac-Degrading Bacterium, Strain D, and Its Potential for Bioremediation of Rice Fields Polluted by Quinclorac.

Quinclorac (QNC) is a persistent, highly selective, hormonal herbicide of low toxicity. QNC accumulates in soil and affects the growth and development of crops planted subsequent to its application. In this study, we isolated and screened a QNC-degrading bacterial strain, strain D, from rice paddy soil. Morphological analysis, physiological and biochemical tests, and 16S rRNA gene sequencing led us to identify strain D as a Cellulosimicrobium cellulans strain. We investigated the characteristics of strain D in relation to QNC degradation. Under optimal culture conditions, the QNC degradation rate was 45.9% after 21 days of culture. QNC degradation by strain D in the field was modeled and quantified by a pot experiment. The results show that strain D promotes rice growth and degrades QNC. This research has identified a new bacterial species that degrades QNC, providing a foundation for further research into QNC remediation. IMPORTANCE QNC-degrading bacteria have been isolated from different environments, but there are no reports of Cellulosimicrobium cellulans strains that degrade QNC. In this study, a previously unidentified bacterial strain that degrades QNC, strain D, was screened from paddy soil. The characteristics of strain D that relate to QNC degradation were investigated in detail. The results showed that strain D effectively degraded QNC. Two degradation products of QNC formed by strain D that have not been reported previously, i.e., 3-pyridylacetic acid (m/z 138.0548) and 3-ethylpyridine (m/z 108.0805), were identified using high-performance liquid chromatography-quadrupole time of flight mass spectrometry. Strain D has the capacity to degrade QNC in a QNC-polluted paddy.

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来源期刊
Microbiology spectrum
Microbiology spectrum Biochemistry, Genetics and Molecular Biology-Genetics
CiteScore
3.20
自引率
5.40%
发文量
1800
期刊介绍: Microbiology Spectrum publishes commissioned review articles on topics in microbiology representing ten content areas: Archaea; Food Microbiology; Bacterial Genetics, Cell Biology, and Physiology; Clinical Microbiology; Environmental Microbiology and Ecology; Eukaryotic Microbes; Genomics, Computational, and Synthetic Microbiology; Immunology; Pathogenesis; and Virology. Reviews are interrelated, with each review linking to other related content. A large board of Microbiology Spectrum editors aids in the development of topics for potential reviews and in the identification of an editor, or editors, who shepherd each collection.
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