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首页> 外文期刊>The Plant Cell >Engineering Strategies to Boost Crop Productivity by Cutting Respiratory Carbon Loss
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Engineering Strategies to Boost Crop Productivity by Cutting Respiratory Carbon Loss

机译:通过切割呼吸碳损失提高作物生产力的工程策略

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摘要

Roughly half the carbon that crop plants fix by photosynthesis is subsequently lost by respiration. Nonessential respiratory activity leading to unnecessary CO2 release is unlikely to have been minimized by natural selection or crop breeding, and cutting this large loss could complement and reinforce the currently dominant yield-enhancement strategy of increasing carbon fixation. Until now, however, respiratory carbon losses have generally been overlooked by metabolic engineers and synthetic biologists because specific target genes have been elusive. We argue that recent advances are at last pinpointing individual enzyme and transporter genes that can be engineered to (1) slow unnecessary protein turnover, (2) replace, relocate, or reschedule metabolic activities, (3) suppress futile cycles, and (4) make ion transport more efficient, all of which can reduce respiratory costs. We identify a set of engineering strategies to reduce respiratory carbon loss that are now feasible and model how implementing these strategies singly or in tandem could lead to substantial gains in crop productivity.
机译:大约一半的碳,通过光合作用作物植物修复,随后被呼吸丢失。通过自然选择或作物繁殖,不可能最大限度地减少了导致不必要的二氧化碳的呼吸活动,切割这种大量损失可以补充并加强目前碳固定的目前显着的产量增强策略。然而,到目前为止,由于特定的靶基因已经难以捉摸,呼吸碳损失通常被代谢工程师和合成生物学家忽视。我们认为,最近的进展终于针对可以工程化的单个酶和转运基因,以(1)缓慢不必要的蛋白质周转,(2)替换,重新安置或重新安排代谢活动,(3)抑制徒劳的循环,(4)使离子运输更有效,所有这些都可以减少呼吸成本。我们确定了一套工程策略,以减少呼吸碳损失,现在可行和模型如何单独或串联实施这些策略可能导致作物生产率的大量收益。

著录项

  • 来源
    《The Plant Cell》 |2019年第2期|共18页
  • 作者单位

    AIR Worldwide Corp Boston MA 02116 USA;

    Max Planck Inst Mol Plant Physiol D-14476 Potsdam Germany;

    Univ Florida Hort Sci Dept Gainesville FL 32611 USA;

    Univ Western Australia ARC Ctr Excellence Plant Energy Biol Sch Mol Sci Crawley WA 6009 Australia;

    Max Planck Inst Mol Plant Physiol D-14476 Potsdam Germany;

    Univ Oxford Dept Plant Sci Oxford OX1 3RB England;

    Univ Adelaide ARC Ctr Excellence Plant Energy Biol Dept Plant Sci Sch Agr Food &

    Wine Waite Res Inst Glen Osmond SA 5064 Australia;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 植物细胞学;
  • 关键词

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