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Strigolactone Involvement in Root Development, Response to Abiotic Stress, and Interactions with the Biotic Soil Environment

机译:Strigolactone参与根系发育,对非生物胁迫的响应以及与生物土壤环境的相互作用

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Strigolactones, recently discovered as plant hormones, regulate the development of different plant parts. In the root, they regulate root architecture and affect root hair length and density. Their biosynthesis and exudation increase under low phosphate levels, and they are associated with root responses to these conditions. Their signaling pathway in the plant includes protein interactions and ubiquitin-dependent repressor degradation. In the root, they lead to changes in actin architecture and dynamics as well as localization of the PIN-FORMED auxin transporter in the plasma membrane. Strigolactones are also involved with communication in the rhizosphere. They are necessary for germination of parasitic plant seeds, they enhance hyphal branching of arbuscular mycorrhizal fungi of the Glomus and Gigaspora spp., and they promote rhizobial symbiosis. This review focuses on the role played by strigolactones in root development, their response to nutrient deficiency, and their involvement with plant interactions in the rhizosphere.
机译:最近发现作为植物激素的Strigolactones可调节植物不同部位的发育。在根部,它们调节根的结构并影响根毛的长度和密度。在低磷酸盐水平下,它们的生物合成和分泌增加,并且与这些条件下的根系反应有关。它们在植物中的信号传导途径包括蛋白质相互作用和泛素依赖性阻遏物降解。从根本上讲,它们导致肌动蛋白结构和动力学的变化,以及PIN形成的生长素转运蛋白在质膜中的定位。 Strigolactones也参与根际的交流。它们对于寄生植物种子的发芽是必需的,它们增强了丛枝菌根真菌(Glomus and Gigaspora spp。)的丛枝菌根真菌的菌丝分支,并且它们促进了根瘤菌共生。这篇综述着重于松香内酯在根系发育中的作用,它们对营养缺乏的反应以及它们在根际中与植物相互作用的参与。

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