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Proteomic Analysis Revealed Nitrogen-mediated Metabolic Developmental and Hormonal Regulation of Maize (Zea mays L.) Ear Growth

机译:蛋白质组学分析揭示了氮介导的玉米(Zea mays L.)耳朵生长的代谢发育和激素调节

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摘要

Optimal nitrogen (N) supply is critical for achieving high grain yield of maize. It is well established that N deficiency significantly reduces grain yield and N oversupply reduces N use efficiency without significant yield increase. However, the underlying proteomic mechanism remains poorly understood. The present field study showed that N deficiency significantly reduced ear size and dry matter accumulation in the cob and grain, directly resulting in a significant decrease in grain yield. The N content, biomass accumulation, and proteomic variations were further analysed in young ears at the silking stage under different N regimes. N deficiency significantly reduced N content and biomass accumulation in young ears of maize plants. Proteomic analysis identified 47 proteins with significant differential accumulation in young ears under different N treatments. Eighteen proteins also responded to other abiotic and biotic stresses, suggesting that N nutritional imbalance triggered a general stress response. Importantly, 24 proteins are involved in regulation of hormonal metabolism and functions, ear development, and C/N metabolism in young ears, indicating profound impacts of N nutrition on ear growth and grain yield at the proteomic level.
机译:最佳氮(N)供应对于实现玉米高产至关重要。众所周知,氮素的缺乏会显着降低谷物的产量,而氮素的过量供应会降低氮素的利用效率,而不会显着提高产量。但是,蛋白质组学的基本机制仍然知之甚少。当前的田间研究表明,氮素的缺乏显着降低了穗大小和穗粒和谷物中干物质的积累,直接导致了谷物产量的显着下降。在不同的氮制度下,蚕丝期幼穗中的氮含量,生物量积累和蛋白质组学变异都得到了进一步的分析。氮缺乏显着降低了玉米幼穗中的氮含量和生物量积累。蛋白质组学分析鉴定了47种蛋白质,这些蛋白质在不同N处理下在幼穗中具有明显的差异积累。十八种蛋白质还对其他非生物和生物胁迫作出反应,表明氮的营养失衡引发了一般的应激反应。重要的是,24种蛋白质参与了幼耳的激素代谢和功能,耳朵发育以及C / N代谢的调控,这表明蛋白质组学上氮营养对耳朵生长和谷物产量的深远影响。

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