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A gene island from plasmid pkk5 of Burkholderia sp.KK1 confers arsenic resistance to Caballeronia jiangsuensis
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作者 Lijie Huang Yuhan Yang +4 位作者 Yingxin Xue Shilin Hu Tian Liang Jun Ye Ximei Xue 《Journal of Environmental Sciences》 2025年第9期562-572,共11页
Microorganisms play a critical role in the biotransformation of arsenic and the form which it exists in the environment. In this study, a methyl parathion-degrading bacterium Caballeronia jiangsuensis, isolated from a... Microorganisms play a critical role in the biotransformation of arsenic and the form which it exists in the environment. In this study, a methyl parathion-degrading bacterium Caballeronia jiangsuensis, isolated from an abandoned pesticide manufacturing plant, was used to analyze arsenic accumulation and transformation. The accumulation of trivalent organoarsenic compounds in C. jiangsuensis occurred to a greater extent than that of their pentavalent counterparts. The chromosome of C. jiangsuensis contains an arsenic gene island whose GC content is significantly lower than that of the genome, suggesting that the island was acquired via horizontal gene transfer. There was approximately 90%-99% similarity between the proteins encoded by the gene island and the corresponding sequence of the plasmid pkk5 from Burkholderia sp. KK1. The biotransformation of different arsenic species by C. jiangsuensis was subsequently analyzed. The results revealed that monomethylarsenic acid(MAs(Ⅴ)) was rapidly demethylated to arsenate with very small amounts of intermediate monomethylarsonous acid(MAs(Ⅲ)), whereas MAs(Ⅲ) was largely oxidized to MAs(Ⅴ) despite the occurrence of the gene arsI probably responsible for aerobic demethylation of MAs(Ⅲ) in C. jiangsuensis. In addition, dimethylarsenic acid was partly demethylated to arsenate. Horizontal gene transfer of ars operon from a plasmid to other bacteria represents an adaptation to a specific environment. This study provides a new perspective for understanding arsenic biogeochemical cycling. 展开更多
关键词 Caballeronia jiangsuensis Arsenic biotransformation DEMETHYLATION Horizontal gene transfer
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水稻类穗颈瘟梨孢菌新种的生物学特性及不同水稻品种抗性分析 被引量:1
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作者 杜艳 齐中强 +3 位作者 梁栋 崔聪聪 杨孝云 刘永锋 《植物病理学报》 CAS CSCD 北大核心 2023年第3期447-454,共8页
稻瘟病菌引起的穗颈瘟严重影响水稻产量和质量。前期对江苏省稻区连续多年监测首次发现一类能引起类似穗颈瘟的梨孢菌新种Pyricularia sp.jiangsuensis,发生率高且在不同年份稳定存在。为了解该病原菌与稻瘟病菌之间的差异,本研究对该... 稻瘟病菌引起的穗颈瘟严重影响水稻产量和质量。前期对江苏省稻区连续多年监测首次发现一类能引起类似穗颈瘟的梨孢菌新种Pyricularia sp.jiangsuensis,发生率高且在不同年份稳定存在。为了解该病原菌与稻瘟病菌之间的差异,本研究对该病原菌代表菌株P.sp.jiangsuensis 18-2与稻瘟病菌菌株P.oryzae Guy11在生长、产孢、各种胁迫及不同品种对两种病害的抗性等方面进行比较。结果表明,P.sp.jiangsuensis 18-2在PDA、CM和SDC三种培养基上的生长速度明显快于P.oryzae Guy11,但是P.sp.jiangsuensis 18-2的气生菌丝较为稀疏。在细胞壁胁迫因子和氧化压力下,P.sp.jiangsuensis 18-2对外源逆境的耐受性较P.oryzae Guy11更强,该病原菌更适应对外界胁迫的应答。进一步分析江苏省推广的主栽品种对类穗颈瘟的抗性,发现一些主栽品种对P.sp.jiangsuensis 18-2和P.oryzae Guy11引起的穗颈瘟存在抗性差异,鉴定筛选出品种镇稻448、盐粳15号、晶两优534和甬优2640对两者都表现良好的抗性,生产上应综合考虑选用对这两种病害抗性较好的品种。 展开更多
关键词 类穗颈瘟 Pyricularia sp.jiangsuensis 生物学特性 品种抗性
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