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植物向重力性中的重力感应和信号转换。

Gravity sensing and signal conversion in plant gravitropism.

机构信息

Division of Plant Environmental Responses, National Institute for Basic Biology, Okazaki, Japan.

Department of Basic Biology, School of Life Science, SOKENDAI (The Graduate University for Advanced Studies), Okazaki, Japan.

出版信息

J Exp Bot. 2019 Jul 23;70(14):3495-3506. doi: 10.1093/jxb/erz158.

Abstract

Plant organs control their growth orientation in response to gravity. Within gravity-sensing cells, the input (gravity sensing) and signal conversion (gravity signalling) progress sequentially. The cells contain a number of high-density, starch-accumulating amyloplasts, which sense gravity when they reposition themselves by sedimentation to the bottom of the cell when the plant organ is re-orientated. This triggers the next step of gravity signalling, when the physical signal generated by the sedimentation of the amyloplasts is converted into a biochemical signal, which redirects auxin transport towards the lower flank of the plant organ. This review focuses on recent advances in our knowledge of the regulatory mechanisms that underlie amyloplast sedimentation and the system by which this is perceived, and on recent progress in characterising the factors that play significant roles in gravity signalling by which the sedimentation is linked to the regulation of directional auxin transport. Finally, we discuss the contribution of gravity signalling factors to the mechanisms that control the gravitropic set-point angle.

摘要

植物器官通过响应重力来控制其生长方向。在重力感应细胞中,输入(重力感应)和信号转换(重力信号转导)依次进行。当植物器官重新定向时,细胞内的一些高密度、淀粉积累的淀粉体通过沉降重新定位到细胞底部,从而感知重力。这触发了重力信号转导的下一步,当淀粉体沉降产生的物理信号被转化为生化信号时,生长素运输就会重新定向到植物器官的下侧。本综述重点介绍了我们对淀粉体沉降的调控机制以及对其感知系统的最新认识,以及在描述重力信号转导中起重要作用的因素方面的最新进展,这些因素通过沉降与定向生长素运输的调控联系起来。最后,我们讨论了重力信号转导因子对控制向重力性设定点角度的机制的贡献。

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