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大庆土壤盐碱菌的分离鉴定 被引量:2
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作者 曹宁 杨革非 +2 位作者 王世彭 刘占云 汤晖 《安徽农学通报》 2009年第7期70-71,84,共3页
从大庆盐碱土样品中分离得到5株嗜碱菌,对其进行编号为t8,t7,t5,t6,t2。五株菌均为革兰氏阳性,好氧,其中t8,t5,t6产芽孢。对这五株菌进行系统分类学研究,结果表明t8,t5,t6与碱杆菌属中的A.haloalkaliphil亲缘关系最近,t7与碱杆菌属中的A... 从大庆盐碱土样品中分离得到5株嗜碱菌,对其进行编号为t8,t7,t5,t6,t2。五株菌均为革兰氏阳性,好氧,其中t8,t5,t6产芽孢。对这五株菌进行系统分类学研究,结果表明t8,t5,t6与碱杆菌属中的A.haloalkaliphil亲缘关系最近,t7与碱杆菌属中的A.filiform is亲缘关系最近,t2归为Bacillus sp。 展开更多
关键词 嗜碱菌 碱杆菌属 A.haloalkaliphil A.filiformis
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Characterization and function analysis of a Halo-alkaline-adaptable Trk K^+ uptake system in Alkalimonas amylolytica strain N10 被引量:2
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作者 GUO YongHao1, XUE YanFen1, LIU Jun2, WANG QuanHui1 & MA YanHe1 1 State Key Laboratory of Microbial Resources, Institute of Microbiology, Chinese Academy of Sciences, Beijing 100101, China 2 Department of Pharmacology and Systems Therapeutics, Mount Sinai School of Medicine, New York 10029, USA 《Science China(Life Sciences)》 SCIE CAS 2009年第10期949-957,共9页
By functional complementation of Escherichia coli mutants defective in potassium (K+) uptake, two genes that are required for K+ uptake in halo-alkaliphilic Alkalimonas amylolytica strain N10 were cloned. These two ge... By functional complementation of Escherichia coli mutants defective in potassium (K+) uptake, two genes that are required for K+ uptake in halo-alkaliphilic Alkalimonas amylolytica strain N10 were cloned. These two genes, Aa-trkA (1337 bp) and Aa-trkH (1452 bp), were adjacent on the A. amylolytica N10 chromosome and transcribed in opposite directions. Complementation experiments revealed that Aa-TrkA and Aa-TrkH from A. amylolytica strain N10 restored the ability to grow at low K+ concentration in E. coli △trkA and △trkG △trkH strains, respectively. In addition, Aa-TrkAH supported the growth of an E. coli △sapD strain, indicating that the ATP-binding protein TrkE was dispensable for the Trk system of A. amylolytica strain N10. The net K+ uptake was detected at different pH levels and the critical NaCl concentration indicated that Aa-TrkAH is an alkaline-adaptable and partially halo-adaptable K+ transporter. Kinetics determined by heterogeneous K+ transport experiments with an E. coli △trkA strain revealed that Aa-TrkAH has an alkaline pH optimum close to 8.5 or higher. Site-directed mutagenesis of Aa-TrkH showed that Phe103 and Ser229 play certain key roles in K+ selection and transportation. The molecular chaperones groES-groEL and tig promoted Aa-TrkH and Aa-TrkA overexpression in vitro. 展开更多
关键词 K+ uptake system haloalkaliphile TrkH and TRKA alkaline-adaptable site directed MUTAGENESIS
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