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Agronomic performance of drought-resistance rice cultivars grown under alternate wetting and drying irrigation management in southeast China

机译:东南干湿交替灌溉管理下种植的抗旱水稻品种的农艺表现

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摘要

Compared to drought-susceptible rice cultivars (DSRs), drought-resistance rice cultivars (DRRs) could drastically reduce the amount of irrigation water input and simultaneously result in higher grain yield under water-saving irrigation conditions. However, the mechanisms underlying these properties are unclear. We investigated how improved agronomic traits contribute to higher yield and higher water use efficiency (WUE) in DRRs than in DSRs under alternate wetting and drying (AWD). Two DRRs and two DSRs were field-grown in 2015 and 2016 using two different irrigation regimes: continuous flooding (CF) and AWD. Under CF, no statistical differences in grain yield and WUE were observed between DRRs and DSRs. Irrigation water under the AWD regime was 275–349 mm, an amount 49.8%–56.2% of that (552–620 mm) applied under the CF regime. Compared to CF, AWD significantly decreased grain yield in both DRRs and DSRs, with a more significant reduction in DSRs, and WUE was increased in DRRs, but not in DSRs, by 9.9%–23.0% under AWD. Under AWD, DRRs showed a 20.2%–26.2% increase in grain yield and an 18.6%–24.5%increase in WUE compared to DSRs. Compared to DSRs, DRRs showed less redundant vegetative growth, greater sink capacity, higher grain filling efficiency, larger root biomass, and deeper root distribution under AWD. We conclude that these improved agronomic traits exert positive influences on WUE in DRRs under AWD.
机译:与干旱敏感型水稻品种(DSRs)相比,抗旱水稻品种(DRRs)可以大大减少灌溉水的输入量,同时在节水灌溉条件下可提高谷物产量。但是,这些属性的潜在机制尚不清楚。我们研究了在交替湿润和干燥(AWD)下,改善的农艺性状如何比DRR中的DRR更高的产量和更高的水分利用效率(WUE)。在2015年和2016年,使用两种不同的灌溉方式在田间种植了两个DRR和两个DSR:连续洪水(CF)和AWD。在CF条件下,DRR和DSR之间没有观察到谷物产量和WUE的统计差异。 AWD模式下的灌溉水为275–349 mm,是CF模式下的灌溉水量(552–620 mm)的49.8%–56.2%。与CF相比,AWD显着降低了DRR和DSR的籽粒产量,而DSR的减少更为显着,而DRR的WUE增加了,而DSR的WUE增加了,在AWD下提高了9.9%–23.0%。在AWD条件下,与DSR相比,DRRs的谷物单产提高了20.2%–26.2%,WUE增加了18.6%–24.5%。与DSR相比,DRR在AWD下显示出更少的多余营养生长,更大的汇能力,更高的谷物填充效率,更大的根生物量以及更深的根分布。我们得出结论,这些改良的农艺性状对AWD下DRR中的WUE产生积极影响。

著录项

  • 来源
    《作物学报(英文版)》 |2018年第5期|482-494|共13页
  • 作者单位

    China National Rice Research Institute, Chinese Academy of Agricultural Sciences, Hangzhou 310006, Zhejiang, China;

    China National Rice Research Institute, Chinese Academy of Agricultural Sciences, Hangzhou 310006, Zhejiang, China;

  • 收录信息 中国科学引文数据库(CSCD);中国科技论文与引文数据库(CSTPCD);
  • 原文格式 PDF
  • 正文语种 eng
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