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高产水稻品种秋田 63 的选育。

High yielding ability of a large-grain rice cultivar, Akita 63.

机构信息

Graduate School of Agricultural Science, Tohoku University, 468-1 Aramaki-Aoba, Aoba-ku, Sendai, 980-8572, Japan.

Faculty of Bioresource Sciences, Akita Prefectural University, Shimosinjyou, Akita, 010-0195, Japan.

出版信息

Sci Rep. 2020 Jul 22;10(1):12231. doi: 10.1038/s41598-020-69289-0.

Abstract

To increase the yield potential while limiting the environmental impact of N management practices is an important issue in rice cultivation. The large-grain rice cultivar Akita 63 showed higher N-use efficiency for grain production. To elucidate this, we analyzed yield characteristics of Akita 63 in comparison with those of a maternal cultivar, Oochikara with a large grain, a paternal cultivar, Akita 39 with a normal grain, and a Japanese leading cultivar, Akitakomachi. The yields of Akita 63 were 20% higher than those of Oochikara and Akita 39, and 50% higher than those of Akitakomachi for the same N application. Akita 63 showed superior N uptake capacity. Whereas a trade-off between single grain weight and grain number was found for Oochikara, Akita 63 did not show such a relationship. The success in Akita 63 breeding was due to overcoming such a trade-off. Akita 63 had the large-grain alleles of GS3 and qSW5. Thus, an enlargement of grain size can have a great impact on an increase in yield with improved N-use efficiency. However, an enlargement of sink capacity led to source limitation. Thus, both sink and source improvements are essential for a further increase in the yield of today's high-yielding cultivars.

摘要

在提高氮管理实践的环境影响的同时提高产量潜力是水稻栽培中的一个重要问题。大粒水稻品种秋田 63 表现出更高的氮素利用效率用于粮食生产。为了阐明这一点,我们分析了秋田 63 与大粒母本品种大吟酿、正常粒父本品种秋田 39 和日本主导品种秋田光町的产量特性。与大吟酿和秋田 39 相比,秋田 63 的产量高出 20%,与秋田光町相比,秋田 63 的产量高出 50%,而氮素用量相同。秋田 63 表现出较高的氮吸收能力。然而,大吟酿和秋田 39 之间存在单粒重和粒数之间的权衡关系,而秋田 63 则没有表现出这种关系。秋田 63 品种的成功培育是由于克服了这种权衡关系。秋田 63 具有 GS3 和 qSW5 的大粒等位基因。因此,粒重的增大对提高氮素利用效率和产量的增加有很大的影响。然而,库容量的增大导致源的限制。因此,对于当今高产品种的产量进一步提高,源和库的改善都是必不可少的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/19c8/7376063/586f278c28eb/41598_2020_69289_Fig1_HTML.jpg

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