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Integration of sulfate assimilation with carbon and nitrogen metabolism in transition from C3 to C4 photosynthesis

机译:从C3到C4光合作用的过渡过程中硫酸盐同化与碳氮代谢的整合

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摘要

The first product of sulfate assimilation in plants, cysteine, is a proteinogenic amino acid and a source of reduced sulfur for plant metabolism. Cysteine synthesis is the convergence point of the three major pathways of primary metabolism: carbon, nitrate, and sulfate assimilation. Despite the importance of metabolic and genetic coordination of these three pathways for nutrient balance in plants, the molecular mechanisms underlying this coordination, and the sensors and signals, are far from being understood. This is even more apparent in C4 plants, where coordination of these pathways for cysteine synthesis includes the additional challenge of differential spatial localization. Here we review the coordination of sulfate, nitrate, and carbon assimilation, and show how they are altered in C4 plants. We then summarize current knowledge of the mechanisms of coordination of these pathways. Finally, we identify urgent questions to be addressed in order to understand the integration of sulfate assimilation with carbon and nitrogen metabolism particularly in C4 plants. We consider answering these questions to be a prerequisite for successful engineering of C4 photosynthesis into C3 crops to increase their efficiency.
机译:植物中硫酸盐吸收的第一个产物半胱氨酸是一种蛋白质氨基酸,是植物代谢中还原硫的来源。半胱氨酸合成是主要新陈代谢的三个主要途径的汇合点:碳,硝酸盐和硫酸盐同化。尽管这三种途径对于植物营养平衡的代谢和遗传协调非常重要,但这种协调所基于的分子机制以及传感器和信号仍远未得到理解。这在C4植物中更加明显,在这些植物中,这些半胱氨酸合成途径的协调包括差异空间定位的额外挑战。在这里,我们回顾了硫酸盐,硝酸盐和碳同化的配位,并展示了它们如何在C4植物中发生改变。然后,我们总结了这些途径协调机制的最新知识。最后,我们确定了亟待解决的问题,以了解硫酸同化与碳和氮代谢的整合,特别是在C4植物中。我们认为回答这些问题是成功将C4光合作用工程化为C3作物以提高其效率的前提。

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