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深海热液区化能自养菌Caminibacter profundus氢酶对环境因子的响应特点
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作者 何培青 岳文娟 黄晓航 《海洋与湖沼》 CAS CSCD 北大核心 2012年第2期273-279,共7页
以深海热液区化能自养菌Caminibacter profundus为对象,采用扫描电镜和化学能谱分析,研究了菌株表面形态和矿物元素沉积;同时研究了菌株生长、甲基紫精(MV)还原的氢酶活性及膜结合的类型I NiFe氢酶基因(hynL)表达对盐度、pH和温度几种... 以深海热液区化能自养菌Caminibacter profundus为对象,采用扫描电镜和化学能谱分析,研究了菌株表面形态和矿物元素沉积;同时研究了菌株生长、甲基紫精(MV)还原的氢酶活性及膜结合的类型I NiFe氢酶基因(hynL)表达对盐度、pH和温度几种环境因子变化的响应特点。结果表明,菌株表面被Si、Ca、S和Fe等多种元素组成的矿物质层所包裹。不同条件下,菌株生长、MV还原的氢酶活性和hynL的表达趋势相一致,其最适条件为盐度30、pH5.5和55℃培养温度。研究结果表明,在环境改变时,C.profundus通过调控hynL的表达,以调整菌株的能量代谢,维系菌株的生长繁殖。 展开更多
关键词 深海热液区 化能自养菌 Caminibacter profundus 氢酶 环境因子
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Key genes expression of reductive tricarboxylic acid cycle from deep-sea hydrothermal chemolithoautotrophic Caminibacter profundus in response to salinity, pH and O_2 被引量:2
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作者 HE Peiqing LIU Yan +1 位作者 YUE Wenjuan HUANG Xiaohang 《Acta Oceanologica Sinica》 SCIE CAS CSCD 2013年第2期35-41,共7页
CO2 fixation pathway of Caminibacter profundus, a chemolithoautotrophic e-Proteobacteria from deep-sea hydrothermal vent, was determined and characterized by genetic and enzymatic analyses. Gene expression of key enzy... CO2 fixation pathway of Caminibacter profundus, a chemolithoautotrophic e-Proteobacteria from deep-sea hydrothermal vent, was determined and characterized by genetic and enzymatic analyses. Gene expression of key enzymes for CO2 fixation in response to salinity, pH and O2 in Medium 829 were also investigated. The results demonstrate that C. profundus contained aclB, porA and oorA, the genes encoding key enzymes of reductive tricarboxylic acid (rTCA) cycle. However, genes fragments of cbbL and cbbMencoding key enzyme of Calvin cycle were not recovered. Key enzymatic activities of ATP citrate lyase (ACL), pyruvate: ferredoxin oxidoreductase (POR) and 2-oxoglutarate: ferredoxin oxidoreductase (OOR) were also present in C. profun- dus. The combination of genetic and enzymatic analyses confirm that C. profundus adopted rTCA cycle for carbon assimilation. The results of aclB and oorA relative expressions of C. profundus demonstrate that the ranges of environmental factors for high genes expression were sea salt 3.0%-5.0% (optimum 3.0%), pH 5.0-6.5(optimum pH 6.5), anaerobic to microaerobic conditions (optimum 1.0% 02). Gene expression pat- terns under different conditions show similar patterns with bacterial growth, revealing that key rTCA cycle genes provided molecular basis for bacterial growth and propagation. Our results suggest that C. profun- dus could regulate key genes of rTCA cycle for carbon assimilation and energy metabolism in response to environmental fluctuations in hydrothermal vent. 展开更多
关键词 Caminibacter profundus reductive tricarboxylic acid (rTCA) cycle ATP citrate lyase pyruvate:ferredoxin oxidoreductase 2-oxoglutarate: ferredoxin oxidoreductase hydrothermal vent
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