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首页> 外文期刊>Plant signaling & behavior >Joining forces: the interface of gravitropism and plastid protein import.
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Joining forces: the interface of gravitropism and plastid protein import.

机译:结合力:重力作用和质体蛋白输入的界面。

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摘要

In flowering plants, gravity perception appears to involve the sedimentation of starch-filled plastids, called amyloplasts, within specialized cells (the statocytes) of shoots (endodermal cells) and roots (columella cells). Unfortunately, how the physical information derived from amyloplast sedimentation is converted into a biochemical signal that promotes organ gravitropic curvature remains largely unknown. Recent results suggest an involvement of the Translocon of the Outer Envelope of (Chloro)plastids (TOC) in early phases of gravity signal transduction within the statocytes. This review summarizes our current knowledge of the molecular mechanisms that govern gravity signal transduction in flowering plants and summarizes models that attempt to explain the contribution of TOC proteins in this important behavioral plant growth response to its mechanical environment.
机译:在开花植物中,重力感知似乎涉及在芽(内胚层细胞)和根(小柱细胞)的专门细胞(稳态细胞)内淀粉填充的淀粉质体(称为淀粉质体)的沉积。不幸的是,很大程度上尚不清楚如何将源自淀粉质体沉降的物理信息转换为能促进器官重力弯曲的生化信号。最近的结果表明(氯)质体(TOC)的外部信封的Translocon参与在稳态细胞内重力信号转导的早期阶段。这篇综述总结了我们目前对控制开花植物中重力信号转导的分子机制的知识,并总结了试图解释TOC蛋白在这种重要的行为植物生长对其机械环境的响应中的作用的模型。

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