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The Rhizobium tropici CIAT 899 NodD2 protein regulates the production of Nod factors under salt stress in a flavonoid-independent manner

机译:Rroizobium Tropici Ciat 899 Nodd2蛋白在盐胁迫下调节NOD因子的产生,以一种独立的方式

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In the symbiotic associations between rhizobia and legumes, NodD promotes the expression of the nodulation genes in the presence of appropriate flavonoids. This set of genes is implied in the synthesis of Nodulation factors, which are responsible for launching the nodulation process. Rhizobium tropici CIAT 899 is the most successful symbiont of Phaseolus vulgaris and can nodulate a variety of legumes. This strain produces Nodulation factors under abiotic stress such as acidity or high concentration of salt. Genome sequencing of CIAT 899 allowed the identification of five nodD genes. Whereas NodD1 is essential to nodulate Leucaena leucocephala, Lotus japonicus and Macroptilium atropurpureum, symbiosis with P. vulgaris and Lotus burtii decreased the nodule number but did not abolish the symbiotic process when NodD1 is absent. Nodulation factor synthesis under salt stress is not regulated by NodD1. Here we confirmed that NodD2 is responsible for the activation of the CIAT 899 symbiotic genes under salt stress. We have demonstrated that NodD1 and NodD2 control the synthesis of the Nod factor necessary for a successful symbiosis with P. vulgaris and L. burtii. This is the first time that NodD is directly implied in the activation of the symbiotic genes under an abiotic stress.
机译:在根瘤菌和豆类之间的共生关联中,Nodd在适当的黄酮类化合物存在下促进结核基因的表达。该组基因暗示在合成旋转因子的合成中,这负责发射染色过程。 RhizobiumTropici Ciat 899是寻常的Phop Pothions最成功的Symbiont,可以讲述各种豆类。该菌株在非生物应激(如酸度或高浓度)下产生染色因子。 CIAR 899的基因组测序允许鉴定五个NodD基因。虽然Nodd1对于Nodaena Leucocephala,Lotus Japonicus和MacroTilium Atropurpulum是必不可少的,并且vulgaris和Lotus Burtii的共生减少了Nodule数量,但在缺乏Nodd1时,没有废除共生过程。盐胁迫下的染色因子合成不受Nodd1调节。在这里,我们确认Nodd2负责在盐胁迫下激活CIAT 899共生基因。我们已经证明,Nodd1和Nodd2控制了与P.Vulgaris和L.Burtii的成功共生所必需的点头系数的合成。这是第一次在非生物胁迫下直接暗示共生基因的激活。

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