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首页> 外文期刊>Environmental microbiology >Homoserine catabolism by Rhizobium leguminosarum bv. viciae 3841 requires a plasmid-borne gene cluster that also affects competitiveness for nodulation
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Homoserine catabolism by Rhizobium leguminosarum bv. viciae 3841 requires a plasmid-borne gene cluster that also affects competitiveness for nodulation

机译:豆根瘤菌bv的同型分解代谢。蚕豆3841需要质粒传播的基因簇,该簇也影响结瘤的竞争力

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摘要

Homoserine represents a substantial component of pea root exudate that may be important for plant- microbe interactions in the rhizosphere. We identified a gene cluster on plasmid pRL8JI that is required for homoserine utilization by Rhizobium leguminosarum bv. viciae. The genes are arranged as two divergently expressed predicted operons that were induced by L-homoserine, pea root exudate, and were expressed on pea roots. A mutation in gene pRL80083 that prevented utilization of homoserine as a sole carbon and energy source affected the mutant's ability to nodulate peas and lentils competitively. The homoserine gene cluster was present in approximately 47% of natural R. leguminosarum isolates (n = 59) and was strongly correlated with homoserine utilization. Conjugation of pRL8JI to R. leguminosarum 4292 or Agrobacterium tumefaciens UBAPF2 was sufficient for homoserine utilization. The presence of L-homoserine increased conjugation efficiency of pRL8JI from R. leguminosarum to a pRL8JI-cured derivative of R. leguminosarum 1062 and to A. tumefaciens UBAPF2, and induced expression of the plasmid transfer gene trbB; however, there was no difference in conjugation efficiency or trbB expression with A. tumefaciens UBAPF2pRL8-Gm as the donor suggesting that other genes in R. leguminosarum may contribute to regulating conjugation of pRL8 in the presence of homoserine.
机译:同型丝氨酸代表豌豆根分泌物的重要组成部分,对根际中的植物微生物相互作用可能很重要。我们在质粒pRL8JI上鉴定了一个基因簇,这是豆科根瘤菌利用高丝氨酸所必需的。蚕豆这些基因排列成两个不同表达的预测操纵子,它们由L-高丝氨酸,豌豆根分泌物诱导,并在豌豆根上表达。 pRL80083基因中的一个突变阻止了将高丝氨酸用作唯一的碳和能源,影响了该突变体竞争性地结实豌豆和小扁豆的能力。高丝氨酸基因簇存在于大约47%的天然豆科念珠菌分离株中(n = 59),与高丝氨酸的利用密切相关。将pRL8JI与豆科农杆菌4292或根癌农杆菌UBAPF2缀合足以利用高丝氨酸。 L-高丝氨酸的存在增加了从豆状芽孢杆菌到豆根瘤菌1062和根癌土壤杆菌UBAPF2的pRL8JI到pRL8JI固化衍生物的结合效率,并诱导了质粒转移基因trbB的表达。然而,与根癌农杆菌UBAPF2pRL8-Gm作为供体的缀合效率或trbB表达没有差异,这表明豆科植物根瘤菌中的其他基因在高丝氨酸存在下可能有助于调节pRL8的缀合。

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