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不同氮效率棉花基因型中,棉花苞叶的生理特性与产量相关。

Physiological Characteristics of Cotton Subtending Leaf Are Associated With Yield in Contrasting Nitrogen-Efficient Cotton Genotypes.

作者信息

Iqbal Asif, Jing Niu, Qiang Dong, Xiangru Wang, Huiping Gui, Hengheng Zhang, Nianchang Pang, Xiling Zhang, Meizhen Song

机构信息

State Key Laboratory of Cotton Biology, Institute of Cotton Research of Chinese Academy of Agricultural Sciences, Anyang, China.

Western Agricultural Research Center of Chinese Academy of Agricultural Sciences, Changji, China.

出版信息

Front Plant Sci. 2022 Feb 7;13:825116. doi: 10.3389/fpls.2022.825116. eCollection 2022.

Abstract

Nitrogen (N) plays an important role in various plant physiological processes, but studies on the photosynthetic efficiency and enzymatic activities in the cotton subtending leaves and their contribution to yield are still lacking. This study explored the influence of low, moderate, and high N levels on the growth, photosynthesis, carbon (C) and N metabolizing enzymes, and their contribution to yield in CCRI-69 (N-efficient) and XLZ-30 (N-inefficient). The results showed that moderate to high N levels had significantly improved growth, photosynthesis, and sucrose content of CCRI-69 as compared to XLZ-30. The seed cotton yield and lint yield of CCRI-69 were similar under moderate and high N levels but higher than XLZ-30. Similarly, moderate to high N levels improved the C/N metabolizing enzymatic activities in the subtending leaf of CCRI-69 than XLZ-30. A strong correlation was found between subtending leaf N concentration with C/N metabolizing enzymes, photosynthesis, sucrose contents, boll weight, and seed cotton yield of N-efficient cotton genotype. These findings suggest that subtending leaf N concentration regulates the enzymatic activities and has a key role in improving the yield. These parameters may be considered for breeding N-efficient cotton genotypes, which might help to reduce fertilizer loss and improve crop productivity.

摘要

氮(N)在植物的各种生理过程中起着重要作用,但关于棉花苞叶光合效率、酶活性及其对产量贡献的研究仍较为缺乏。本研究探讨了低氮、中氮和高氮水平对中棉所69(氮高效型)和新陆中30(氮低效型)棉花生长、光合作用、碳(C)和氮代谢酶及其对产量贡献的影响。结果表明,与新陆中30相比,中高氮水平显著提高了中棉所69的生长、光合作用和蔗糖含量。中棉所69在中高氮水平下的籽棉产量和皮棉产量相近,但高于新陆中30。同样,中高氮水平下中棉所69苞叶中碳/氮代谢酶活性比新陆中30有所提高。研究发现,氮高效棉花基因型的苞叶氮浓度与碳/氮代谢酶、光合作用、蔗糖含量、铃重和籽棉产量之间存在很强的相关性。这些研究结果表明,苞叶氮浓度调节酶活性,对提高产量起着关键作用。在培育氮高效棉花基因型时可考虑这些参数,这可能有助于减少肥料损失并提高作物生产力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7319/8859460/04705de866c4/fpls-13-825116-g001.jpg

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