2015年第42卷第8期目录
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封面故事:苜蓿中华根瘤菌能与二倍体和四倍体的苜蓿植物建立共生关系,该菌共生结瘤固氮以及应对逆境胁迫作用均与生物膜中的不饱和脂肪酸密切相关.细菌中不饱和脂肪酸合成主要有两条途径,厌氧的从头合成途径和需氧的脱饱和途径.本论文研究了脂肪酸脱饱和酶desA基因在不饱和脂肪酸合成、共生结瘤固氮以及应对逆境胁迫中的功能.结果表明SmdesA参与的脱饱和途径可能是苜蓿中华根瘤菌不饱和脂肪酸合成的补偿途径(FabA-FabB 是主要的不饱和脂肪酸合成途径,生物化学与生物物理进展,2013, 40(11): 1148-1159),但在应对逆境胁迫和共生结瘤中具有重要的生物学功能.该结果加深了对苜蓿中华根瘤菌抗逆性和共生固氮机制的认识,为高效利用该菌提供参考.
(马金成,周俊超,吴楚云,胡 喆,王海洪. 苜蓿中华根瘤菌desA基因功能的鉴定,本期第740~749页)
Cover Story:Unsaturated fatty acids play important roles in Sinorhizobium meliloti adaptation to external environment stress and symbiotic nodulation. The symbiotic plasmid A of S. meliloti encodes a DesA homologue, which has 44% identity to Bacillus subtilis DesA. However, whether S. meliloti DesA is able to play functions in fatty acid synthesis was not determined. We report that though SmdesA gene could not restore the growth of E. coli fabA temperature sensitive mutant CY57 under non-permissive conditions, argentation thin layer chromatography assay show that CY57 carrying desA encoded plasmid could produce palmitoleic acid and octadecadienoic acid. This indicate that SmdesA encodes acyl-lipid desaturase. In addition, deletion of SmdesA gene have led to a little effects on the fatty acid composition of S. meliloti, but show a significant impact on growth rate in low temperature and high salt conditions, and the ability of alfalfa symbiotic nodulation. DesA is not the key enzyme of unsaturated fatty acid synthesis of S. meliloti, but it plays important biological roles in S. meliloti dealing with environment stress and nodular process.
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综述与专论
研究报告
技术与方法
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