舍瓦内拉
亚硝酸盐
生物
操纵子
亚硝酸盐还原酶
生物化学
转座子突变
硝酸盐
氧化酶试验
突变体
细胞色素
分子生物学
微生物学
细菌
转座因子
基因
酶
遗传学
生态学
作者
Hui‐Hui Fu,Haijiang Chen,Jixuan Wang,Guangqi Zhou,Haiyan Zhang,Lili Zhang,Haichun Gao
标识
DOI:10.1111/1462-2920.12091
摘要
Summary S hewanella oneidensis is able to respire on a variety of organic and inorganic substrates, including nitrate and nitrite. Conversion of nitrate to nitrite and nitrite to ammonium is catalysed by periplasmic nitrate and nitrite reductases ( NAP and NRF ) respectively. Global regulator Crp ( c yclic AMP r eceptor p rotein) is essential for growth of S . oneidensis on both nitrate and nitrite. In this study, we discovered that crp mutants are not only severely deficient in nitrate or nitrite respiration, but are also hypersensitive to nitrite. This hypersusceptibility phenotype is independent of nitrite respiration. Using random transposon mutagenesis, we obtained 73 Δ crp suppressor strains resistant to nitrite. Transposon insertion sites in 24 suppressor strains were exclusively mapped in the region upstream of the cyd operon encoding a cytochrome bd oxidase, resulting in expression of the operon now driven by a Crp ‐independent promoter. Further investigation indicated that the promoter in suppressor strains comes from the transposon. Mutational analysis of the cydB gene (encoding the essential subunit II of the bd oxidase) confirmed that the cytochrome bd oxidase confers nitrite resistance to S . oneidensis .
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