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油菜繁殖对氮利用效率相关性状的影响。

Effect of breeding on nitrogen use efficiency-associated traits in oilseed rape.

机构信息

Department of Plant Breeding, IFZ Research Centre for Biosystems, Land Use and Nutrition, Justus Liebig University, Giessen, Germany.

Department of Biometry and Population Genetics, IFZ Research Centre for Biosystems, Land Use and Nutrition, Justus Liebig University, Giessen, Germany.

出版信息

J Exp Bot. 2019 Mar 27;70(6):1969-1986. doi: 10.1093/jxb/erz044.

Abstract

Oilseed rape is one of the most important dicotyledonous field crops in the world, where it plays a key role in productive cereal crop rotations. However, its production requires high nitrogen fertilization and its nitrogen footprint exceeds that of most other globally important crops. Hence, increased nitrogen use efficiency (NUE) in this crop is of high priority for sustainable agriculture. We report a comprehensive study of macrophysiological characteristics associated with breeding progress, conducted under contrasting nitrogen fertilization levels in a large panel of elite oilseed rape varieties representing breeding progress over the past 20 years. The results indicate that increased plant biomass at flowering, along with increases in primary yield components, have increased NUE in modern varieties. Nitrogen uptake efficiency has improved through breeding, particularly at high nitrogen. Despite low heritability, the number of seeds per silique is associated positively with increased yield in modern varieties. Seed weight remains unaffected by breeding progress; however, recent selection for high seed oil content and for high seed yields appears to have promoted a negative correlation (r= -0.39 at high and r= -0.49 at low nitrogen) between seed weight and seed oil concentration. Overall, our results reveal valuable breeding targets to improve NUE in oilseed rape.

摘要

油菜是世界上最重要的双子叶大田作物之一,在生产性谷物轮作中起着关键作用。然而,其生产需要大量的氮肥,其氮足迹超过了大多数其他全球重要作物。因此,提高这种作物的氮素利用效率(NUE)是可持续农业的首要任务。我们报告了一项在大型油菜优良品种群体中进行的与育种进展相关的宏观生理特性的综合研究,该研究在对照氮施肥水平下进行,代表了过去 20 年的育种进展。结果表明,开花期植物生物量的增加,以及初级产量组成部分的增加,提高了现代品种的 NUE。通过育种,氮吸收效率得到了提高,尤其是在高氮水平下。尽管遗传力低,但每角粒数与现代品种的产量增加呈正相关。种子重量不受育种进展的影响;然而,最近对高油含量和高种子产量的选择似乎促进了种子重量和种子油浓度之间的负相关(高氮时 r = -0.39,低氮时 r = -0.49)。总的来说,我们的结果揭示了提高油菜 NUE 的有价值的育种目标。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0b88/6436158/ce85dc2f3f12/erz04401.jpg

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