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Antimony transformation and mobilization from stibnite by an antimonite oxidizing bacterium Bosea sp. AS-1 被引量:4
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作者 Li Xiang Chaoyang Liu +4 位作者 Deng Liu Liyuan Ma Xuan Qiu Hongmei Wang Xiaolu Lu 《Journal of Environmental Sciences》 SCIE EI CAS CSCD 2022年第1期273-281,共9页
Soils and waters are heavily contaminated by antimony in Xikuangshan(XKS)mine area.It is widely accepted that oxidative dissolution of sulfide minerals and aqueous dissolution are the most prevalent geochemical mechan... Soils and waters are heavily contaminated by antimony in Xikuangshan(XKS)mine area.It is widely accepted that oxidative dissolution of sulfide minerals and aqueous dissolution are the most prevalent geochemical mechanisms for the release of Sb to the environment.Bosea sp.AS-1 is an antimonite-oxidizer isolated from the mine slag in Xikuangshan Sb mine.Whole genome sequencing revealed the presence of multiple sulfur-oxidizing genes,antimony(Sb)metabolism genes and carbon fixation genes in AS-1 s genome.We therefore hypothesized that under oxic conditions,AS-1 could mediate the oxidation of sulfide and Sb(Ⅲ)in stibnite(Sb_(2)S_(3))and lead to the release of Sb.Indeed,strain AS-1 was discovered as an autotrophic Sb(Ⅲ)-oxidizer.Antimony mobilization studies conducted with strain AS-1showed significantly enhanced mobilization of Sb,and complete oxidation of released Sb and sulfur to Sb(V)and sulfate.In addition,AS-1 induced a faster release of Sb under heterotrophic condition,and new acicular minerals might form.These findings support the hypothesis that microorganisms play an important role in the mobilization and transformation of Sb in XKS mine area and may contribute to our further understanding of the Sb biogeochemical redox cycle in natural environment. 展开更多
关键词 Antimonite oxidation bosea sp.AS-1 STIBNITE Antimony mobilization Xikuangshan mine area
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砷氧化菌株的筛选及Bosea sp.AS-1基因组分析 被引量:2
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作者 柳朝阳 向利 +1 位作者 王红梅 鲁小璐 《微生物学报》 CAS CSCD 北大核心 2020年第11期2538-2554,共17页
【目的】对湖南省锡矿山地区的砷氧化菌株的种属进行初步鉴定,并对砷锑氧化菌株Bosea sp. AS-1 (简称AS-1)进行全基因组测序和生物信息学分析。【方法】分离砷氧化菌株,并利用16S rRNA基因测序进行菌种鉴定。在此基础上,对能够高效氧化... 【目的】对湖南省锡矿山地区的砷氧化菌株的种属进行初步鉴定,并对砷锑氧化菌株Bosea sp. AS-1 (简称AS-1)进行全基因组测序和生物信息学分析。【方法】分离砷氧化菌株,并利用16S rRNA基因测序进行菌种鉴定。在此基础上,对能够高效氧化砷的菌株AS-1进行全基因组测序,对测序数据进行基因组装和功能注释、COG、GO及KEGG聚类分析,以及次级代谢产物合成基因簇与代谢途径预测等。【结果】湖南省锡矿山的砷氧化菌株主要分布在α-、β-、γ-变形菌纲以及厚壁菌门。菌株AS-1基因组的测序结果显示AS-1基因组包含一条大小为5.536Mb环状染色体和两个大小分别为189.9kb和112.1kb的质粒。对AS-1基因组进一步分析发现该菌株的基因组中包含砷锑代谢相关基因,还有鞭毛形成、鞭毛运动及生物膜形成的基因,这些基因的存在可能与AS-1能高效耐受和氧化砷和锑的特性相关。此外,菌株AS-1中还存在部分碳固定基因和硫氧化基因,这暗示着AS-1能够进行自养生长并氧化环境中的硫元素。【结论】菌株AS-1可以在自养条件下生长并且能够氧化Sb(Ⅲ)为Sb(Ⅴ)。 展开更多
关键词 bosea sp. AS-1 全基因组测序 砷、锑代谢基因 代谢通路
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实试BOSEA10
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作者 Chan.,S 《高保真音响》 1999年第2期42-44,共3页
关键词 家庭影院 bosea10 环绕声技术
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