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扑草净降解菌株DY-1的全基因组序列及功能基因鉴定

Complete Genome Sequence and Function Gene Identify of Prometryne-Degrading Strain sp. DY-1.

作者信息

Liang Dong, Xiao Changyixin, Song Fuping, Li Haitao, Liu Rongmei, Gao Jiguo

机构信息

College of Life Science, Northeast Agricultural University, Harbin 150038, China.

State Key Laboratory for Biology of Plant Diseases and Insect Pests, Institute of Plant Protection, Chinese Academy of Agricultural Sciences, Beijing 100193, China.

出版信息

Microorganisms. 2021 Jun 10;9(6):1261. doi: 10.3390/microorganisms9061261.

Abstract

The genus is widely recognized for its potential for environmental remediation and plant growth promotion. sp. DY-1 was isolated from the agricultural soil contaminated five years by prometryne, it manifested an outstanding prometryne degradation efficiency and an untapped potential for plant resistance improvement. Thus, it is meaningful to comprehend the genetic background for strain DY-1. The whole genome sequence of this strain revealed a series of environment adaptive and plant beneficial genes which involved in environmental stress response, heavy metal or metalloid resistance, nitrate dissimilatory reduction, riboflavin synthesis, and iron acquisition. Detailed analyses presented the potential of strain DY-1 for degrading various organic compounds via a homogenized pathway or the protocatechuate and catechol branches of the β-ketoadipate pathway. In addition, heterologous expression, and high efficiency liquid chromatography (HPLC) confirmed that prometryne could be oxidized by a Baeyer-Villiger monooxygenase (BVMO) encoded by a gene in the chromosome of strain DY-1. The result of gene knock-out suggested that the sulfate starvation-induced (SSI) genes in this strain might also involve in the process of prometryne degradation. These results would provide the molecular basis for the application of strain DY-1 in various fields and would contribute to the study of prometryne biodegradation mechanism as well.

摘要

该属因其在环境修复和促进植物生长方面的潜力而被广泛认可。菌株DY-1从五年前被扑灭通污染的农业土壤中分离得到,它表现出卓越的扑灭通降解效率以及尚未开发的改善植物抗性的潜力。因此,了解菌株DY-1的遗传背景具有重要意义。该菌株的全基因组序列揭示了一系列与环境适应性和植物有益相关的基因,这些基因涉及环境应激反应、重金属或类金属抗性、硝酸盐异化还原、核黄素合成以及铁的获取。详细分析表明,菌株DY-1具有通过均一化途径或β-酮己二酸途径的原儿茶酸和儿茶酚分支降解各种有机化合物的潜力。此外,异源表达和高效液相色谱(HPLC)证实,扑灭通可被菌株DY-1染色体上一个基因编码的拜耳-维利格单加氧酶(BVMO)氧化。基因敲除结果表明,该菌株中硫酸盐饥饿诱导(SSI)基因可能也参与扑灭通的降解过程。这些结果将为菌株DY-1在各个领域的应用提供分子基础,也将有助于扑灭通生物降解机制的研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c713/8230428/c804de5b1e7c/microorganisms-09-01261-g001.jpg

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