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Variations in Nitrogen Metabolism are Closely Linked with Nitrogen Uptake and Utilization Efficiency in Cotton Genotypes under Various Nitrogen Supplies

机译:氮素代谢变化与棉花在不同氮素供应下的氮素吸收和利用效率密切相关

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摘要

Cotton production is highly sensitive to nitrogen (N) fertilization, whose excessive use is responsible for human and environmental problems. Lowering N supply together with the selection of N-efficient genotypes, more able to uptake, utilize, and remobilize the available N, could be a challenge to maintain high cotton production sustainably. The current study aimed to explore the intraspecific variation among four cotton genotypes in response to various N supplies, in order to identify the most distinct N-efficient genotypes and their nitrogen use efficiency (NUE)-related traits in hydroponic culture. On the basis of shoot dry matter, CCRI-69 and XLZ-30 were identified as N-efficient and N-inefficient genotypes, respectively, and these results were confirmed by their contrasting N metabolism, uptake (NUpE), and utilization efficiency (NUtE). Overall, our results indicated the key role of shoot glutamine synthetase (GS) and root total soluble protein in NUtE. Conversely, tissue N concentration and N-metabolizing enzymes were considered as the key traits in conferring high NUpE. The remobilization of N from the shoot to roots by high shoot GS activity may be a strategy to enhance root total soluble protein, which improves root growth for N uptake and NUE. In future, multi-omics studies will be employed to focus on the key genes and pathways involved in N metabolism and their role in improving NUE.
机译:棉花生产对氮肥高度敏感,氮肥过量使用会造成人类和环境问题。减少氮供应以及选择更多能吸收,利用和调动可用氮的高效氮基因型,可能是维持可持续高棉花产量的挑战。当前的研究旨在探索响应不同氮供应的四种棉花基因型之间的种内变异,以便确定水培栽培中最独特的氮高效基因型及其与氮利用效率(NUE)相关的性状。根据茎干物质,分别将CCRI-69和XLZ-30鉴定为N效率和N效率低的基因型,这些结果通过对比N代谢,吸收(NUpE)和利用效率(NUtE)得到了证实。 )。总体而言,我们的结果表明,茎杆谷氨酰胺合成酶(GS)和根总可溶性蛋白在NUtE中起着关键作用。相反,组织氮浓度和氮代谢酶被认为是赋予高NUpE的关键性状。 N的高芽GS活性将N从芽转移到根上可能是增强根总可溶性蛋白的策略,从而改善了N吸收和NUE的根生长。未来,将进行多组学研究,重点研究与N代谢有关的关键基因和途径及其在改善NUE中的作用。

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