首页> 美国卫生研究院文献>Journal of Bacteriology >Bradyrhizobium (Arachis) sp. strain NC92 contains two nodD genes involved in the repression of nodA and a nolA gene required for the efficient nodulation of host plants.
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Bradyrhizobium (Arachis) sp. strain NC92 contains two nodD genes involved in the repression of nodA and a nolA gene required for the efficient nodulation of host plants.

机译:缓生根瘤菌(Arachis)sp。 NC92菌株包含两个与nodA抑制有关的nodD基因和一个有效结瘤寄主植物所需的nolA基因。

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摘要

The common nodulation locus and closely linked nodulation genes of Bradyrhizobium (Arachis) sp. strain NC92 have been isolated on an 11.0-kb EcoRI restriction fragment. The nucleotide sequence of a 7.0-kb EcoRV-EcoRI subclone was determined and found to contain open reading frames (ORFs) homologous to the nodA, nodB, nodD1, nodD2, and nolA genes of Bradyrhizobium japonicum and Bradyrhizobium elkanii. Nodulation assays of nodD1, nodD2, or nolA deletion mutants on the host plants Macroptilium atropurpureum (siratro) and Vigna unguiculata (cowpea) indicate that nolA is required for efficient nodulation, as nolA mutants exhibit a 6-day nodulation delay and reduced nodule numbers. The nolA phenotype was complemented by providing the nolA ORF in trans, indicating that the phenotype is due to the lack of the nolA ORF. nodD1 mutants displayed a 2-day nodulation delay, whereas nodD2 strains were indistinguishable from the wild type. Translational nodA-lacZ, nodD1-lacZ, nodD2-lacZ, and nolA-lacZ fusions were created. Expression of the nodA-lacZ fusion was induced by the addition of peanut, cowpea, and siratro seed exudates and by the addition of the isoflavonoids genistein and daidzein. In a nodD1 or nodD2 background, basal expression of the nodA-lacZ fusion increased two- to threefold. The level of expression of the nodD2-lacZ and nolA-lacZ fusions was low in the wild type but increased in nodD1, nodD2, and nodD1 nodD2 backgrounds independently of the addition of the inducer genistein. nolA was required for increased expression of the nodD2-lacZ fusion. These data suggest that a common factor is involved in the regulation of nodD2 and nolA, and they are also consistent with a model of nod gene expression in Bradyrhizobium (Arachis) sp. strain NC92 in which negative regulation is mediated by the products of the nodD1 and nodD2 genes.
机译:慢生根瘤菌(Arachis)sp。的常见结节基因座和紧密联系的结瘤基因。已经在11.0kb EcoRI限制性片段上分离了NC92菌株。确定了一个7.0-kb EcoRV-EcoRI亚克隆的核苷酸序列,发现该序列含有与日本慢生根瘤菌和拟南芥的nodA,nodB,nodD1,nodD2和nolA基因同源的开放阅读框(ORF)。对寄主植物Macroptiltil atropurpureum(siratro)和Vigna unguiculata(cowpea)上的nodD1,nodD2或nolA缺失突变体的根瘤测定表明,nolA是有效根瘤所必需的,因为nolA突变体显示出6天的根瘤延迟和减少的根瘤数量。通过反式提供nolA ORF来补充nolA表型,表明该表型是由于缺乏nolA ORF所致。 nodD1突变体显示了2天的结瘤延迟,而nodD2菌株与野生型没有区别。创建了翻译的nodA-lacZ,nodD1-lacZ,nodD2-lacZ和nolA-lacZ融合体。通过添加花生,cow豆和siratro种子渗出液以及通过添加异黄酮染料木素和黄豆苷元来诱导nodA-lacZ融合蛋白的表达。在nodD1或nodD2背景下,nodA-lacZ融合蛋白的基础表达增加了2到3倍。 nodD2-lacZ和nolA-lacZ融合体的表达水平在野生型中较低,但在nodD1,nodD2和nodD1 nodD2背景中均增加,与诱导剂染料木黄酮的添加无关。 nolA是增加nodD2-lacZ融合蛋白表达所需的。这些数据表明,一个共同因素参与了nodD2和nolA的调控,并且它们也与缓生根瘤菌(Arachis)sp。中的nod基因表达模型相一致。 NC92株,其中nodD1和nodD2基因的产物介导负调控。

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