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韧皮部卸出和根系发育的调控。

Control of phloem unloading and root development.

机构信息

Organismal and Evolutionary Biology Research Programme, Faculty of Biology and Environmental Sciences, University of Helsinki, Helsinki, Finland.

Organismal and Evolutionary Biology Research Programme, Faculty of Biology and Environmental Sciences, University of Helsinki, Helsinki, Finland.

出版信息

J Plant Physiol. 2024 Apr;295:154203. doi: 10.1016/j.jplph.2024.154203. Epub 2024 Feb 17.

Abstract

Root growth and development need proper carbon partitioning between sources and sinks. Photosynthesis products are unloaded from the phloem and enter the root meristem cell by cell. While sugar transporters play a major role in phloem loading, phloem unloading occurs via the plasmodesmata in growing root tips. The aperture and permeability of plasmodesmata strongly influence symplastic unloading. Recent research has dissected the symplastic path for phloem unloading and identified several genes that regulate phloem unloading in the root. Callose turnover and membrane lipid composition alter the shape of plasmodesmata, allowing fine-tuning to adapt phloem unloading to the environmental and developmental conditions. Unloaded sugars act both as an energy supply and as signals to coordinate root growth and development. Increased knowledge of how phloem unloading is regulated enhances our understanding of carbon allocation in plants. In the future, it may be possible to modulate carbon allocation between sources and sinks in a manner that would contribute to increased plant biomass and carbon fixation.

摘要

根的生长和发育需要在源和汇之间进行适当的碳分配。光合作用产物从韧皮部卸载,并通过质膜进入根分生组织细胞。虽然糖转运蛋白在韧皮部装载中起主要作用,但韧皮部卸载是通过生长根尖中的胞间连丝进行的。胞间连丝的孔径和通透性强烈影响共质体卸载。最近的研究剖析了韧皮部卸载的共质体途径,并鉴定了几个调节根中韧皮部卸载的基因。胼胝质周转和膜脂组成改变了胞间连丝的形状,从而可以精细调节以适应韧皮部卸载的环境和发育条件。卸载的糖不仅作为能量供应,而且作为信号来协调根的生长和发育。对韧皮部卸载如何被调节的深入了解增强了我们对植物中碳分配的理解。将来,有可能以增加植物生物量和碳固定的方式调节源和汇之间的碳分配。

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