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Selecting traits to improve the yield and water use efficiency of winter wheat under limited water supply

机译:选择特征以提高有限供水下冬小麦产量和用水效率

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摘要

Using high-yielding cultivars is an important measure to maintain grain production, especially in dryland environments. A field study in the 2016/17 and 2017/18 seasons was conducted at Luancheng station in the North China Plain (NCP) to investigate winter wheat cultivars with high-yielding characteristics under water deficit conditions. The experiment contained two parts, with part one involving 10 cultivars of winter wheat grown under I0 (rainfed), I1 (one irrigation) and I2 (two irrigations) treatments and part two involving 32 cultivars grown under I1 treatment. The three irrigation regimes I0, I1, and I2 provided approximately 60 %, 70 % and 80 % of the seasonal potential evapotranspiration, respectively. Yield variations were up to 47 % among the 10 cultivars in the two seasons, and several cultivars could produce continuously higher yields than those of other cultivars under the different treatments. High-yielding cultivars produced higher water productivity than that of other cultivars. No single agronomic or physiological characteristics, except for biomass, could explain the yield differences among cultivars. However, canopy temperature (CT) during the grain filling stage had a continuous negative linear correlation with grain yield under limited water supply conditions in a high-yielding environment. The results indicated that the genetic variation in grain yield might be attributed to the ability to withdraw soil water, especially the deeper soil water, during the grain filling stage, which would result in a cooler canopy. CT as an indicator of high-yielding cultivars was further confirmed among the 32 cultivars under I1 treatment in the 2016/17. A relative adequate water supply during the grain filling stage also prolonged leaf greenness which was beneficial to dry matter production and grain yield. Therefore, the ability to efficiently utilize soil water and maintain dry matter production during the grain filling stage are two important characteristics for maintaining the high yield of winter wheat under water deficit conditions in the NCP.
机译:使用高产品种是维持谷物生产的重要措施,特别是在旱地环境中。 2016/17和2017/18赛季的田间研究是在华北平原(NCP)的栾城站进行的,调查冬小麦品种,在水赤字条件下具有高产特征。该实验含有两种部分,其中涉及10种冬小麦的冬小麦,I1(雨水),I1(一次灌溉)和I2(两种灌溉)治疗,部分涉及在I1治疗下生长的32种栽培品种。三个灌溉制度I00,I1和I2分别提供了大约60%,70%和80%的季节性潜在蒸散。在两个季节的10种品种中,产量变异高达47%,并且在不同治疗中,几种品种可能产生比其他品种的产量不断更高。高产品种生产比其他品种更高的水生产率。除生物量外,没有单一农艺或生理特性,可以解释品种的产量差异。然而,在谷物填充阶段期间的孔孔温度(CT)在高收益环境下在有限的供水条件下具有与谷物产量的连续负线性相关性。结果表明,籽粒产量的遗传变异可能归因于在谷物灌装阶段期间撤出土壤水,特别是较深的土壤水,这将导致凉爽的冠层。 CT作为高产品种的指标,在​​2016/17年度的I1治疗下进一步确认了32种栽培品种。籽粒灌装阶段的相对充足的供水也延长了叶片绿色,这对干物质产生和籽粒产量有益。因此,能够有效地利用土壤水和在谷物灌装阶段维持干物质产生的能力是在NCP中水缺损条件下维持冬小麦的高产率的两个重要特征。

著录项

  • 来源
    《Agricultural Water Management》 |2020年第1期|共12页
  • 作者单位

    Chinese Acad Sci Hebei Lab Agr Water Saving Key Lab Agr Water Resources Ctr Agr Resources Res Inst Genet &

    Dev Biol 286 Huaizhong Rd Shijiazhuang 050021 Hebei Peoples R China;

    Chinese Acad Sci Hebei Lab Agr Water Saving Key Lab Agr Water Resources Ctr Agr Resources Res Inst Genet &

    Dev Biol 286 Huaizhong Rd Shijiazhuang 050021 Hebei Peoples R China;

    Chinese Acad Sci Hebei Lab Agr Water Saving Key Lab Agr Water Resources Ctr Agr Resources Res Inst Genet &

    Dev Biol 286 Huaizhong Rd Shijiazhuang 050021 Hebei Peoples R China;

    Chinese Acad Sci Hebei Lab Agr Water Saving Key Lab Agr Water Resources Ctr Agr Resources Res Inst Genet &

    Dev Biol 286 Huaizhong Rd Shijiazhuang 050021 Hebei Peoples R China;

    Chinese Acad Sci Hebei Lab Agr Water Saving Key Lab Agr Water Resources Ctr Agr Resources Res Inst Genet &

    Dev Biol 286 Huaizhong Rd Shijiazhuang 050021 Hebei Peoples R China;

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

    Canopy temperature; Post-anthesis dry matter accumulation; Grain yield; Water use efficiency; Winter wheat;

    机译:冠层温度;后开发后的干物质积累;籽粒产量;用水效率;冬小麦;

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