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Localization of a Nod Factor-Binding Protein in Legume Roots and Factors Influencing Its Distribution and Expression

机译:Nod因子结合蛋白在豆科植物根中的定位及影响其分布与表达的因素

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摘要

The roots of the legume Dolichos biflorus contain a lectinucleotide phosphohydrolase (Db-LNP) that binds to the Nod factor signals produced by rhizobia that nodulate this plant. In this study we show that Db-LNP is differentially distributed along the surface of the root axis in a pattern that correlates with the zone of nodulation of the root. Db-LNP is present on the surface of young and emerging root hairs and redistributes to the tips of the root hairs in response to treatment of the roots with a rhizobial symbiont or with a carbohydrate ligand. This redistribution does not occur in response to a non-symbiotic rhizobial strain or a root pathogen. Db-LNP is also present in the root pericycle where its level decreases upon initiation of nodule formation. Maximum levels of Db-LNP are found in 2-d-old roots, and the expression of this root protein is increased when the plants are grown in the absence of NO3 and NH4+. These results support the possibility that Db-LNP is involved in the initiation of the Rhizobium legume symbiosis.
机译:豆科植物Dolichos biflorus的根部含有一种凝集素/核苷酸磷酸水解酶(Db-LNP),该酶与根瘤菌根瘤该植物的Nod因子信号结合。在这项研究中,我们显示Db-LNP沿着根轴表面以与根瘤节区相关的模式差异分布。 Db-LNP存在于年轻和新兴的根毛表面上,并响应于用根瘤菌共生体或碳水化合物配体处理根,重新分布到根毛的尖端。对于非共生根瘤菌菌株或根病原体,不会发生这种重新分布。 Db-LNP也存在于根周周期中,其水平在结节形成开始时降低。 Db-LNP的最大含量存在于2d根中,当植物在没有NO3 -和NH4 + < / sup>。这些结果支持了Db-LNP参与豆科根瘤菌共生的启动的可能性。

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