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首页> 外文期刊>Canadian journal of microbiology >Experimental evidence for plasmid-borne nor-nir genes in Sinorhizobium meliloti JJ1c10
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Experimental evidence for plasmid-borne nor-nir genes in Sinorhizobium meliloti JJ1c10

机译:苜蓿中华根瘤菌JJ1c10中质粒携带的nor-nir基因的实验证据

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In denitrification, nir and nor genes are respectively required for the sequential dissimilatory reduction of nitrite and nitric oxide to form nitrous oxide. Their location on the pSymA megaplasmid of Sinorhizobium meliloti was confirmed by Southern hybridization of its clones with specific structural gene probes for nirK and norCB. A 20-kb region of pSymA containing the nor-nir genes was delineated by nucleotide sequence analysis. These genes were linked to the nap genes encoding periplasmic proteins involved in nitrate reduction. The nor-nir-nap segment is situated within 30 kb downstream from the nos genes encoding nitrous oxide reduction, with a fix cluster intervening between nir and nos. Most of these predicted nor-nir and accessory gene products are highly homologous with those of related proteobacterial denitrifiers. Functional tests of Tn5 mutants confirmed the requirement of the nirV product and 1 unidentified protein for nitrite reduction as well as the norB-D products and another unidentified protein for nitric oxide reduction. Overall comparative analysis of the derived amino acid sequences of the S. meliloti gene products suggested a close relationship between this symbiotic N-2 fixer and the free-living non-N-2-fixing denitrifier Pseudomonas G-179, despite differences in their genetic organization. This relationship may be due to lateral gene transfer of denitrification genes from a common donor followed by rearrangement and recombination of these genes.
机译:在反硝化中,分别需要nir和nor基因来依次异化还原亚硝酸盐和一氧化氮以形成一氧化二氮。它们的克隆与nirK和norCB的特定结构基因探针的Southern杂交证实了它们在苜蓿中华根瘤菌的pSymA大质粒上的定位。通过核苷酸序列分析描绘了含有nor-nir基因的pSymA的20kb区域。这些基因与编码参与硝酸盐还原的周质蛋白的小睡基因相关。 nor-nir-nap片段位于编码一氧化二氮还原的nos基因下游30 kb之内,固定簇介于nir和nos之间。这些预测的非正态和辅助基因产物中的大多数与相关的蛋白质反硝化剂高度同源。 Tn5突变体的功能测试证实需要使用nirV产物和1种未鉴定的蛋白质来还原亚硝酸盐,以及norB-D产物和另一种未知的蛋白质来降低一氧化氮。苜蓿链球菌基因产物的衍生氨基酸序列的整体比较分析表明,这种共生N-2固定剂与自由生活的非N-2固定反硝化假单胞菌G-179之间有着密切的关系,尽管它们的遗传差异组织。这种关系可能是由于来自共同供体的反硝化基因的横向基因转移,随后是这些基因的重排和重组。

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