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GmYUC2a mediates auxin biosynthesis during root development and nodulation in soybean

机译:GmYUC2a介导大豆根系发育和结瘤过程中生长素的生物合成

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摘要

Auxin plays central roles in rhizobial infection and nodule development in legumes. However, the sources of auxin during nodulation are unknown. In this study, we analyzed the YUCCA (YUC) gene family of soybean and identified GmYUC2a as an important regulator of auxin biosynthesis that modulates nodulation. Following rhizobial infection, GmYUC2a exhibited increased expression in various nodule tissues. Overexpression of GmYUC2a (35S::GmYUC2a) increased auxin production in soybean, resulting in severe growth defects in root hairs and root development. Upon rhizobial infection, 35S::GmYUC2a hairy roots displayed altered patterns of root hair deformation and nodule formation. Root hair deformation occurred mainly on primary roots, and nodules formed exclusively on primary roots of 35S::GmYUC2a plants. Moreover, transgenic 35S::GmYUC2a composite plants showed delayed nodule development and a reduced number of nodules. Our results suggest that GmYUC2a plays an important role in regulating both root growth and nodulation by modulating auxin balance in soybean.
机译:生长素在豆科植物的根瘤菌感染和结节发育中起着重要作用。但是,结瘤过程中生长素的来源尚不清楚。在这项研究中,我们分析了大豆YUCCA(YUC)基因家族,并确定GmYUC2a是生长素生物合成的重要调节因子,可调节结瘤。根瘤菌感染后,GmYUC2a在各种结节组织中表现出增加的表达。 GmYUC2a(35S :: GmYUC2a)的过表达增加了大豆中的生长素产量,导致根毛和根发育的严重生长缺陷。根瘤菌感染后,35S :: GmYUC2a毛状根显示出根毛变形和结节形成的变化模式。根毛变形主要发生在35S :: GmYUC2a植物的原始根上,而结节仅在原始根上形成。而且,转基因35S :: GmYUC2a复合植物显示出延缓的根瘤发育和减少的根瘤数量。我们的结果表明,GmYUC2a通过调节大豆中的生长素平衡,在调节根系生长和根瘤形成中发挥重要作用。

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