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Transgenic approaches to altering carbon and nitrogen partitioning in whole plants: assessing the potential to improve crop yields and nutritional quality

机译:改变整个植物碳氮分配的转基因方法:评估提高作物产量和营养质量的潜力

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摘要

The principal components of plant productivity and nutritional value, from the standpoint of modern agriculture, are the acquisition and partitioning of organic carbon (C) and nitrogen (N) compounds among the various organs of the plant. The flow of essential organic nutrients among the plant organ systems is mediated by its complex vascular system, and is driven by a series of transport steps including export from sites of primary assimilation, transport into and out of the phloem and xylem, and transport into the various import-dependent organs. Manipulating C and N partitioning to enhance yield of harvested organs is evident in the earliest crop domestication events and continues to be a goal for modern plant biology. Research on the biochemistry, molecular and cellular biology, and physiology of C and N partitioning has now matured to an extent that strategic manipulation of these transport systems through biotechnology are being attempted to improve movement from source to sink tissues in general, but also to target partitioning to specific organs. These nascent efforts are demonstrating the potential of applied biomass targeting but are also identifying interactions between essential nutrients that require further basic research. In this review, we summarize the key transport steps involved in C and N partitioning, and discuss various transgenic approaches for directly manipulating key C and N transporters involved. In addition, we propose several experiments that could enhance biomass accumulation in targeted organs while simultaneously testing current partitioning models.
机译:从现代农业的角度来看,植物生产力和营养价值的主要组成部分是植物各个器官之间有机碳(C)和氮(N)化合物的获取和分配。植物器官系统中必需有机养分的流动是由其复杂的血管系统介导的,并受到一系列运输步骤的驱动,包括从主要同化部位的出口,进出韧皮部和木质部的运输,以及进入韧皮部和木质部的运输。各种依赖进口的器官。在最早的农作物驯化事件中,操纵C和N分配以提高收获的器官的产量是显而易见的,并且仍然是现代植物生物学的目标。碳和氮分配的生物化学,分子和细胞生物学以及生理学的研究现已成熟到一定程度,人们正在尝试通过生物技术对这些运输系统进行战略性操纵,以改善从源头到下沉组织的总体运动,而且还可以靶向分配到特定器官。这些新生的努力展示了应用生物质的潜力,但同时也确定了需要进一步基础研究的基本营养素之间的相互作用。在这篇综述中,我们总结了涉及C和N分配的关键转运步骤,并讨论了直接操纵涉及的关键C和N转运蛋白的各种转基因方法。此外,我们提出了一些实验,可以增强目标器官中生物量的积累,同时测试当前的分区模型。

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