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[土壤肥力和施氮量对小麦氮素吸收与转运、籽粒产量及籽粒蛋白质含量的影响]

[Effects of soil fertility and nitrogen application rate on nitrogen absorption and translocation, grain yield, and grain protein content of wheat].

作者信息

Wang Yuefu, Yu Zhenwen, Li Xiangxia, Yu Songlie

机构信息

Department of Agronomy, Shandong Agricultural University, Taian 271018, China.

出版信息

Ying Yong Sheng Tai Xue Bao. 2003 Nov;14(11):1868-72.

Abstract

The results of this study showed that nitrogen application improved the nitrogen uptake by wheat, especially during its late growth stage. Although a higher nitrogen application rate could increase the amount of absorbed nitrogen, an excess of nitrogen would remain in vegetative organs at the stage after flowering, owing to the low translocation rate of nitrogen from these organs to the grain, and hence, the nitrogen use efficiency and nitrogen harvest index were decreased. Compared with that on high fertility soil, the ratio of nitrogen absorbed from fertilizer to total absorbed nitrogen was higher when the wheat was grown on low fertility soil. On high fertility soil, wheat plant absorbed more nitrogen from top-dressed fertilizer than from basis fertilizer, and top-dressed fertilizer contributed more nitrogen to the grain. It was reversed on low fertility soil.

摘要

本研究结果表明,施氮提高了小麦的氮素吸收,尤其是在其生长后期。虽然较高的施氮量可以增加氮素吸收量,但由于开花后阶段氮素从营养器官向籽粒的转运率较低,过量的氮会残留在营养器官中,从而导致氮素利用效率和氮素收获指数降低。与高肥力土壤相比,小麦在低肥力土壤上生长时,肥料吸收氮占总吸收氮的比例更高。在高肥力土壤上,小麦植株从追肥中吸收的氮比基肥多,追肥对籽粒的氮贡献更大。在低肥力土壤上情况则相反。

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