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Solar radiation-use characteristics of indica/japonica hybrid rice (Oryza sativa L.) in the late season in southeast China

机译:中国东南部晚期籼/粳杂交稻(Oryza Sativa L.)的太阳辐射使用特征

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摘要

New indica and japonica hybrid rice cultivars,such as the Yongyou series,provide farmers with very high yield potential.However,information on their canopy light capture and solar radiation use efficiency in the late season is limited.Field experiments were performed to compare the radiation-use parameters of four rice types:indica rice(IR),inbred japonica rice(IJR),hybrid japonica rice(HJR),and hybrid indica/japonica rice(HIJR),from 2016 to 2018 during the late season in Hangzhou,China.The grain yield,aboveground biomass,intercepted solar radiation(SI),and radiation-use efficiency(RUE)of the HIJR were on average respectively 13.4%–53.4%,14.3%–30.6%,7.6%–21.4%,and 8.2%–14.9%higher than those of the HJR,IJR,and IR.The leaf area index(LAI)of the HIJR was 18.2%–57.0%greater than that of the IJR and HJR at four growth stages,resulting in respectively 17.8%–38.5%and 10.7%–42.8%greater canopy light interception rates(LIR)and amount of intercepted solar radiation during the vegetative stage.The prolonged grain-filling stage also led to respectively 33.9%–52.6%and 30.5%–51.4%increases in amounts of incident and intercepted radiation for the HIJR relative to the IR during grain filling.These results indicate that the SI superiority of the HIJR was caused by canopy closure as rapid as that of the IR during the vegetative stage(greater LAI and canopy LIR during the growing season)and a grain-filling stage as long as that of the HJR.For grain-filling stage,differences in leaf Pn between HIJR,IR,and IJR were not significant,suggesting that the greater RUE of the HIJR(12.7%–52.8%higher)than that of the other rice types resulted from improved canopy architecture after flowering(FL).Principal components analysis(PCA)revealed that the superiority of the HIJR in terms of solar radiation use resulted from the greater canopy light capture capability of IR and the prolonged growth period(especially during grain filling)of japonica rice in the late growing season.
机译:新的籼稻和粳稻杂交水稻品种,如永友系列,为农民提供了非常高的收益潜力。然而,有限季节的顶篷光捕获和太阳辐射利用效率的信息是有限的。菲尔德实验进行了比较辐射 - 四种稻米类型的参数:籼稻(IR),血交粳稻(IJR),杂交粳稻(HJR)和杂交籼稻/粳稻(HIJR),2016年至2018年在杭州,中国杭州市。谷物产量,地上生物量,截取的太阳辐射(Si),以及HIJR的辐射使用效率(Rue)平均分别为13.4%-53.4%,14.3%-30.6%,7.6%-21.4%和8.2高于HJR,IJR和IR的%-14.9%。赫德尔的叶面积指数(LAI)比IJR和HJR在四个增长阶段的叶片区指数(LAI)为18.2%-57.0%,导致分别为17.8% -38.5%和10.7%-42.8%概念性阶段期间的截止光拦截率大(LIR)和截获的太阳辐射量。他长期的籽粒灌装阶段也导致了33.9%-52.6%和30.5%-51.4%的发生量增加,并且在谷物填充过程中捕获了赫基尔的辐射的辐射。这些结果表明,赫德的SI优势由于在营养阶段(在生长季节期间,在生长季节的大赖和冠层lir)和谷物灌装阶段,植物灌装阶段的植物封闭术后是迅速的,因为谷物灌装阶段,叶子灌浆阶段,叶子差异在HIJR,IR和IJR之间的PN并不重要,这表明在开花(FL)后改善的冠层架构中的其他水稻类型的更高级别(12.7%-52.8%).princ组分分析( PCA)揭示了HIJR在太阳辐射使用方面的优越性是由于在晚期生长季节的粳稻粳稻的较大的冠覆光捕获能力和延长的生长期(特别是在谷物填充期间)。

著录项

  • 来源
    《作物学报:英文版》 |2021年第002期|P.427-439|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;

    The Faculty of Agriculture Life and Environmental Sciences Zhejiang University Hangzhou 310029 Zhejiang China;

    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;

    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;

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

  • 收录信息
  • 原文格式 PDF
  • 正文语种 chi
  • 中图分类 禾谷类作物;
  • 关键词

    indica/japonica hybrid rice; Solar radiation use; Canopy light capture; Leaf area index;

    机译:籼/粳杂交米;太阳辐射使用;树冠光捕获;叶面积指数;
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