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Bacterial genes induced within the nodule during the Rhizobium-legume symbiosis.

机译:根瘤菌-豆科植物共生期间在根瘤内诱导的细菌基因。

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During the symbiosis between the bacterium Rhizobium meliloti and plants such as alfalfa, the bacteria elicit the formation of nodules on the roots of host plants. The bacteria infect the nodule, enter the cytoplasm of plant cells and differentiate into a distinct cell type called a bacteroid, which is capable of fixing atmospheric nitrogen. To discover bacterial genes involved in the infection and differentiation stages of symbiosis, we obtained genes expressed at the appropriate time and place in the nodule by identifying promoters that are able to direct expression of the bacA gene, which is required for bacteroid differentiation. We identified 230 fusions that are expressed predominantly in the nodule. Analysis of 23 sequences indicated that only three encode proteins known to be involved in the Rhizobium-legume symbiosis, six encode proteins with homology to proteins not previously associated with symbiosis, and 14 have no significant similarity to proteins of known function. Disruption of a locus that encodes a protein with homology to a cell adhesion molecule led to a defect in the formation of nitrogen-fixing nodules, resulting in an increased number of nitrogen-starved plants. Our isolation of a large number of nodule-expressed genes will help to open the intermediate stages of nodulation to molecular analysis.
机译:在细菌根瘤菌与苜蓿等植物之间的共生过程中,细菌引起宿主植物根部上结节的形成。细菌感染结节,进入植物细胞的细胞质,并分化成称为细菌的独特细胞类型,能够固定大气中的氮。为了发现参与共生的感染和分化阶段的细菌基因,我们通过鉴定能够指导bacA基因表达的启动子获得了在结节的适当时间和位置表达的基因,这是细菌分化所必需的。我们确定了主要在结节中表达的230融合。对23个序列的分析表明,只有3个编码已知与豆科根瘤菌共生有关的蛋白,6个编码与以前未与共生相关的蛋白具有同源性的蛋白,还有14个与已知功能的蛋白没有显着相似性。编码与细胞粘附分子同源的蛋白质的基因座的破坏导致固氮根瘤形成缺陷,导致缺氮植物数量增加。我们对大量结节表达基因的分离将有助于为分子分析打开结节的中间阶段。

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