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Coordination of high grain yield and high nitrogen use efficiency through large sink size and high post-heading source capacity in rice

机译:通过大型水槽尺寸和稻米后测源能力的高籽粒产量和高氮利用效率的协调

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摘要

Breeding green varieties that have high yield potential and require less resource input is the ideal way to cope with the challenges that human is facing with respect to food security and environmental pollution. However, few studies have focused on how high yield and high resource use efficiency is coordinated in rice (Oryza sativa L.). Here three varieties with different sink size, namely Yongyou4949 (YY4949) with large sink size, Yangliangyou6 (YLY6) with medium sink size, and Huanghuazhan (HHZ) with small sink size, were used in field and pot experiments in 2015-2017. The objective was to examine how enlarged sink size coordinate high yield and high nitrogen (N) use efficiency (NUE). It was found that YY4949 produced a grain yield of 9.60-11.79t ha(-1) in 2015-2017, which was higher than that of YLY6 by 0.3-1.75t ha(-1), and that of HHZ by 1.3-2.18t ha(-1) . N use efficiency for grain production (NUEg) of YY4949 reached 47.7-58.3 kg kg(-1) depending on the weather condition, which was 5.3-12.8% higher than that of YLY6 and 15.8-20.7% higher than that of HHZ. The concomitantly higher grain yield and NUEg of YY4949 were due to: (1) higher efficiency of spikelet production in respect of dry matter, N, accumulated temperature and radiation; (2) higher biomass production and N accumulation after flowering; (3) higher RUE after flowering due to the better canopy structure. In conclusion, rice breeding in the future should continue to enlarge the sink size especially through the improvement in production efficiency of sink size, while simultaneously increase the post-heading biomass production capacity.
机译:育种具有高收益潜力的绿色品种,需要较少的资源投入是应对人类对粮食安全和环境污染面临的挑战的理想方式。然而,很少有研究专注于大米(Oryza Sativa L.)协调高产和高资源使用效率。这三种具有不同的水槽尺寸,即永沟4949(YY4949),具有大的水槽尺寸,带有小水槽尺寸的大室尺寸,杨建国6(YLY6),以及带有小水槽尺寸的黄虎山(HHZ),用于2015 - 2017年的田间和盆栽实验。目的是检查放大的吸收尺寸坐标高产和高氮(n)使用效率(nue)。结果发现,2015-2017的谷物产量为9.60-11.79t HA(-1),其高于Yly6的0.3-1.75t HA(-1),以及HHz的谷物产量高1.3-2.18 t ha(-1)。 N利用YY4949的谷物生产效率(NUEG)达到47.7-58.3千克(-1),取决于天气状况,比以至于yly6的5.3-12.8%,高于HHz的5.3-12.8%。伴随着更高的谷物产量和YY4949的NUEG是由于:(1)对干物质,N,积聚温度和辐射的小穗产生的效率更高; (2)开花后更高的生物量生产和N累积; (3)由于冠层结构更好的开花后更高的rue。总之,未来的稻米育种应继续扩大水槽尺寸,特别是通过提高水槽尺寸的生产效率,同时增加前航向后生物质生产能力。

著录项

  • 来源
    《Field Crops Research》 |2019年第2019期|共10页
  • 作者单位

    Huazhong Agr Univ Key Lab Crop Ecophysiol &

    Farming Syst Middle Rea Natl Key Lab Crop Improvements Minister Agr Coll Plant Sci &

    Technol Wuhan 430070 Hubei Peoples R China;

    Huazhong Agr Univ Key Lab Crop Ecophysiol &

    Farming Syst Middle Rea Natl Key Lab Crop Improvements Minister Agr Coll Plant Sci &

    Technol Wuhan 430070 Hubei Peoples R China;

    Huazhong Agr Univ Key Lab Crop Ecophysiol &

    Farming Syst Middle Rea Natl Key Lab Crop Improvements Minister Agr Coll Plant Sci &

    Technol Wuhan 430070 Hubei Peoples R China;

    Huazhong Agr Univ Key Lab Crop Ecophysiol &

    Farming Syst Middle Rea Natl Key Lab Crop Improvements Minister Agr Coll Plant Sci &

    Technol Wuhan 430070 Hubei Peoples R China;

    Huazhong Agr Univ Key Lab Crop Ecophysiol &

    Farming Syst Middle Rea Natl Key Lab Crop Improvements Minister Agr Coll Plant Sci &

    Technol Wuhan 430070 Hubei Peoples R China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 农业科学;
  • 关键词

    Grain yield; N use efficiency; Sink size; Large panicle; Rice;

    机译:谷物产量;n使用效率;水槽尺寸;大穗;米饭;

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