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首页> 外文期刊>Biochimica et biophysica acta. Bioenergetics >Metabolite transport and associated sugar signalling systems underpinning source/sink interactions
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Metabolite transport and associated sugar signalling systems underpinning source/sink interactions

机译:代谢物运输和相关的糖信号系统支撑了源/库相互作用

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Metabolite transport between organelles, cells and source and sink tissues not only enables pathway coordination but it also facilitates whole plant communication, particularly in the transmission of information concerning resource availability. Carbon assimilation is co-ordinated with nitrogen assimilation to ensure that the building blocks of biomass production, amino acids and carbon skeletons, are available at the required amounts and stoichiometry, with associated transport processes making certain that these essential resources are transported from their sites of synthesis to those of utilisation. Of the many possible posttranslational mechanisms that might participate in efficient co-ordination of metabolism and transport only reversible thiol-disulphide exchange mechanisms have been described in detail. Sucrose and trehalose metabolism are intertwined in the signalling hub that ensures appropriate resource allocation to drive growth and development under optimal and stress conditions, with trehalose-6-phosphate acting as an important signal for sucrose availability. The formidable suite of plant metabolite transporters provides enormous flexibility and adaptability in inter-pathway coordination and source-sink interactions. Focussing on the carbon metabolism network, we highlight the functions of different transporter families, and the important of thioredoxins in the metabolic dialogue between source and sink tissues. In addition, we address how these systems can be tailored for crop improvement. (C) 2016 The Authors. Published by Elsevier B.V. This is an open access article under the CC BY license.
机译:细胞器,细胞以及源和汇组织之间的代谢物运输不仅可以实现途径协调,而且还可以促进整个植物的交流,尤其是在传递有关资源可用性的信息时。碳同化与氮同化相协调,以确保以所需的数量和化学计量获得生物量生产,氨基酸和碳骨架的基本组成部分,并且相关的运输过程确保了这些基本资源是从其原地运输的。综合利用。在可能参与代谢和运输的有效协调的许多可能的翻译后机制中,仅详细描述了可逆的巯基-二硫化物交换机制。蔗糖和海藻糖代谢在信号传递枢纽中交织在一起,从而确保适当的资源分配,以在最佳和压力条件下驱动生长和发育,其中6-磷酸海藻糖是蔗糖可用性的重要信号。强大的植物代谢物转运蛋白套件在通路间协调和源库相互作用中提供了极大的灵活性和适应性。着眼于碳代谢网络,我们重点介绍了不同转运蛋白家族的功能,以及硫氧还蛋白在源和汇组织之间的代谢对话中的重要作用。此外,我们介绍了如何针对作物改良量身定制这些系统。 (C)2016作者。由Elsevier B.V.发布。这是CC BY许可下的开放获取文章。

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