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Two genes that regulate exopolysaccharide production in Rhizobium sp. strain NGR234: DNA sequences and resultant phenotypes.

机译:调节根瘤菌中胞外多糖产生的两个基因。 NGR234株:DNA序列和产生的表型。

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摘要

Two closely linked genes involved in the regulation of exopolysaccharide (EPS) production in Rhizobium sp. strain NGR234, exoX and exoY, were sequenced, and their corresponding phenotypes were investigated. Inhibition of EPS synthesis occurred in wild-type strains when extra copies of exoX were introduced, but only when exoY had been deleted or mutated or was present at a lower copy number. Normal EPS synthesis occurred in Rhizobium sp. when both exoX and exoY were introduced on the same replicon. Surprisingly, the presence of multiple copies of exoY in exoY:: Tn5 mutants of NGR234 adversely affected cellular growth. This was apparent when exoY was introduced into exoY mutants on IncP1 vectors, where the copy number was approximately 10, but was not apparent when present on much larger R-prime plasmids with lower copy numbers (approximately 3 per cell). Multiple copies of exoX did not adversely affect cellular growth of any strain. The exoX gene appeared analogous, in size and phenotype, to a previously described Rhizobium leguminosarum biovar phaseoli EPS gene, psi (D. Borthakur and A.W.B. Johnston, Mol. Gen. Genet. 207:149-154, 1987), and the deduced ExoX and Psi shared strikingly similar secondary structures. Despite this, ExoX and Psi showed little homology at the primary amino acid level, except for a central region of 18 amino acids. The interaction of ExoX and ExoY could form the basis of a sensitive regulatory system for EPS acids. The interaction of ExoX and ExoY could form the basis of a sensitive regulatory system for EPS biosynthesis. The presence of a multicopy exoX in Rhizobium meliloti and R. fredii similarly abolished EPS biosynthesis in these species.
机译:两个紧密相关的基因参与根瘤菌胞外多糖(EPS)生产的调控。对NGR234菌株exoX和exoY进行了测序,并研究了它们对应的表型。当引入额外拷贝的exoX时,野生型菌株中EPS合成受到抑制,但仅当exoY被删除或突变或以较低拷贝数存在时才发生。正常的EPS合成发生在根瘤菌中。在同一个复制子上同时引入exoX和exoY时。出人意料的是,NGR234的exoY :: Tn5突变体中存在多个exoY副本会对细胞生长产生不利影响。当将exoY引入IncP1载体上的exoY突变体时,这是显而易见的,其拷贝数约为10,但是当存在于拷贝数较低的更大的R-prime质粒中时,则不明显(每个细胞约3)。 exoX的多个副本不会对任何菌株的细胞生长产生不利影响。 exoX基因在大小和表型上与先前描述的豆科根瘤菌生物变相EPS基因psi(D.Borthakur和AWB Johnston,Mol.Gen.Genet.207:149-154,1987)相似,并且推论出的ExoX和Psi具有惊人相似的二级结构。尽管如此,除了18个氨基酸的中央区域外,ExoX和Psi在一级氨基酸水平上几乎没有同源性。 ExoX和ExoY的相互作用可以构成EPS酸敏感调节系统的基础。 ExoX和ExoY的相互作用可以构成EPS生物合成敏感调控系统的基础。苜蓿根瘤菌和弗雷德氏菌的多拷贝exoX的存在同样消除了这些物种中EPS的生物合成。

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