Suppr超能文献

豌豆根瘤菌蚕豆生物变种中参与赤藓糖醇分解代谢的基因的特征分析

Characterization of genes involved in erythritol catabolism in Rhizobium leguminosarum bv. viciae.

作者信息

Yost Christopher K, Rath Amber M, Noel Tanya C, Hynes Michael F

机构信息

Department of Biology, University of Regina, 3737 Wascana Parkway, Regina, SK S4S 0A2, Canada.

Department of Biology, University of Calgary, 2500 University Drive, Calgary, AB T2N 1N4, Canada.

出版信息

Microbiology (Reading). 2006 Jul;152(Pt 7):2061-2074. doi: 10.1099/mic.0.28938-0.

Abstract

A genetic locus encoding erythritol uptake and catabolism genes was identified in Rhizobium leguminosarum bv. viciae, and shown to be plasmid encoded in a wide range of R. leguminosarum strains. A Tn5-B22 mutant (19B-3) unable to grow on erythritol was isolated from a mutant library of R. leguminosarum strain VF39SM. The mutated gene eryF was cloned and partially sequenced, and determined to have a high homology to permease genes of ABC transporters. A cosmid complementing the mutation (pCos42) was identified and was shown to carry all the genes necessary to restore the ability to grow on erythritol to a VF39SM strain cured of pRleVF39f. In the genomic DNA sequence of strain 3841, the gene linked to the mutation in 19B-3 is flanked by a cluster of genes with high homology to the known erythritol catabolic genes from Brucella spp. Through mutagenesis studies, three distinct operons on pCos42 that are required for growth on erythritol were identified: an ABC-transporter operon (eryEFG), a catabolic operon (eryABCD) and an operon (deoR-tpiA2-rpiB) that encodes a gene with significant homology to triosephosphate isomerase (tpiA2). These genes all share high sequence identity to genes in the erythritol catabolism region of Brucella spp., and clustalw alignments suggest that horizontal transfer of the erythritol locus may have occurred between R. leguminosarum and Brucella. Transcription of the eryABCD operon is repressed by EryD and is induced by the presence of erythritol. Mutant 19B-3 was impaired in its ability to compete against wild-type for nodulation of pea plants but was still capable of forming nitrogen-fixing nodules.

摘要

在豌豆根瘤菌蚕豆生物变种中鉴定出一个编码赤藓糖醇摄取和分解代谢基因的遗传位点,并表明该位点在多种豌豆根瘤菌菌株中由质粒编码。从豌豆根瘤菌菌株VF39SM的突变体文库中分离出一个无法在赤藓糖醇上生长的Tn5 - B22突变体(19B - 3)。对突变基因eryF进行了克隆和部分测序,确定其与ABC转运蛋白的通透酶基因具有高度同源性。鉴定出一个能互补该突变的黏粒(pCos42),并表明它携带了使不含pRleVF39f的VF39SM菌株恢复在赤藓糖醇上生长能力所需的所有基因。在菌株3841的基因组DNA序列中,与19B - 3突变相关的基因两侧是一组与来自布鲁氏菌属的已知赤藓糖醇分解代谢基因具有高度同源性的基因。通过诱变研究,确定了pCos42上三个在赤藓糖醇上生长所需的不同操纵子:一个ABC转运蛋白操纵子(eryEFG)、一个分解代谢操纵子(eryABCD)和一个编码与磷酸丙糖异构酶(tpiA2)具有显著同源性的基因的操纵子(deoR - tpiA2 - rpiB)。这些基因与布鲁氏菌属赤藓糖醇分解代谢区域的基因都具有高度的序列同一性,Clustalw比对表明赤藓糖醇基因座可能在豌豆根瘤菌和布鲁氏菌之间发生了水平转移。eryABCD操纵子的转录受EryD抑制,并在赤藓糖醇存在时被诱导。突变体19B - 3在与野生型竞争豌豆植株结瘤方面的能力受损,但仍能够形成固氮根瘤。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验