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Engineering Strategies to Boost Crop Productivity by Cutting Respiratory Carbon Loss

机译:通过减少呼吸碳损失来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:作物通过光合作用固定的碳大约一半随后被呼吸损失。通过自然选择或作物育种不可能将导致不必要的CO2释放的不必要的呼吸活动减至最少,减少这种大的损失可以补充并加强目前占主导地位的增加固碳的增产策略。然而,到目前为止,由于特定的靶基因难以捉摸,因此代谢工程师和合成生物学家通常忽略了呼吸碳损失。我们认为,最近的进展最终是确定了可以设计用于(1)减慢不必要的蛋白质更新,(2)替换,重新定位或重新安排代谢活动,(3)抑制无效循环和(4)的单个酶和转运蛋白基因。使离子传输更加有效,所有这些都可以降低呼吸成本。我们确定了一套减少呼吸道碳损失的工程策略,这些策略现在是可行的,并模拟了单独或串联实施这些策略如何可以大幅提高作物生产力。

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