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Symbiotic properties of C4-dicarboxylic acid transport mutants of Rhizobium leguminosarum.

机译:豆科根瘤菌C4-二羧酸转运突变体的共生特性。

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摘要

The transport of succinate was studied in bacteroids of an effective, streptomycin-resistant strain (GF160) of Rhizobium leguminosarum. High levels of succinate transport occurred, and the kinetics, specificity, and sensitivity to metabolic inhibitors were similar to those previously described for free-living cells. The symbiotic properties of two transposon (Tn5)-mediated C4-dicarboxylate transport mutants (strains GF31 and GF252) were determined. Strain GF31 formed ineffective nodules, and bacteroids from these nodules showed no succinate transport activity. Strain GF252 formed partially effective nodules, and bacteroids from these nodules showed about 50% of the succinate transport activity of the parent bacteroids. Another dicarboxylic acid transport mutant (Dct-), strain GFS5, isolated after N-methyl-N'-nitro-N-nitrosoguanidine mutagenesis, formed ineffective nodules. The ability to form ineffective nodules in strains GF31 and GFS5 was shown to correlate with the Dct- phenotype. The data indicate that the presence of a functional C4-dicarboxylic acid transport system is essential for N2 fixation to occur in pea nodules.
机译:在有效的,耐链霉素的豆科根瘤菌菌株(GF160)的类杆菌中研究了琥珀酸盐的转运。发生了高水平的琥珀酸盐转运,并且动力学,特异性和对代谢抑制剂的敏感性与先前针对自由细胞描述的相似。确定了两个转座子(Tn5)介导的C4-二羧酸盐运输突变体(菌株GF31和GF252)的共生特性。菌株GF31形成无效的根瘤,这些根瘤中的类细菌没有琥珀酸转运活性。菌株GF252形成了部分有效的根瘤,来自这些根瘤的类细菌显示出亲本类细菌的琥珀酸转运活性约为50%。 N-甲基-N'-硝基-N-亚硝基胍诱变后分离出的另一个二羧酸转运突变体(Dct-)菌株GFS5形成无效的结节。已证明在菌株GF31和GFS5中形成无效结节的能力与Dct表型相关。数据表明,功能性C4-二羧酸转运系统的存在对于豌豆结节中N2的固定至关重要。

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