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Performance of Double-Cropped Winter Wheat-Summer Maize under Minimum Irrigation in the North China Plain

机译:华北平原最小灌溉条件下冬小麦夏玉米双季播种的表现

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摘要

The double cropping of winter wheat (Triticum aestivum L.) and summer maize (Zea mays L.) in the North China Plain (NCP) requires intensive irrigation that results in rapidly depleting aquifers and threatens the sustainable agricultural development in the region. This study investigated the possibility of growing winter wheat and maize with minimum irrigation (MI) by bringing soil moisture in the top root zone to field capacity at sowing with no further irrigation afterwards. Results over 8 yr (1997–2005) showed that grain yield of winter wheat was over 5000 kg ha–1 and maize was over 6000 kg ha–1 in most of the seasons under MI. The average yield was decreased by 14% for winter wheat and 13% for maize compared with the fully irrigated treatment (FI). Water use efficiency (WUE) under MI was increased by 15% for winter wheat and 10% for maize compared with that under FI. Average seasonal evapotranspiration (ET) was 335 mm under MI and 447 mm under FI for winter wheat, and 319 mm and 403 mm for maize, respectively. The annual irrigation requirement of MI was only half that of FI. Yield reduction in MI was negatively related to seasonal rainfall (significant at P < 0.05). The success of MI depended on the deeper root system of winter wheat using soil moisture that accumulated below the shallower rooted maize over the summer rainfall season. The results showed that an MI strategy that would be simple to implement for farmers would contribute significantly to the sustainability of the groundwater resource.
机译:华北平原(NCP)的冬小麦(Triticum aestivum L.)和 夏玉米(Zea mays L.)的双季种植需要 的密集灌溉,导致快速灌溉耗尽 的含水层并威胁 地区的农业可持续发展。这项研究研究了通过使 <播种时,通过使顶根区的土壤水分达到田间处理能力,以最小灌溉量(MI)种植冬小麦和玉米的可能性。 / sup>此后无需进一步灌溉。在1997年至2005年的8年中的结果表明,冬小麦的籽粒产量超过5000 kg ha –1 玉米超过6000 kg在MI下大多数季节的 ha –1 。与完全灌溉处理 (FI)相比,冬季 小麦的平均产量降低了14%,玉米降低了13%。与 相比,MI下的冬小麦水分利用效率(WUE)提高了15%,玉米的水分利用效率提高了10%。冬小麦在 MI下和FI下在FI下的平均季节性蒸散量(ET)分别为335 mm和玉米下的319 mm和403 mm。 MI的年灌溉需求 仅为FI的一半。 MI的产量下降与季节性降雨呈负相关(在P <0.05时显着)。 MI的 成功与否取决于冬小麦 的较深根系,而该土壤水分在夏季降雨季节积累在较浅根 玉米之下。结果表明,对于农民 易于实施的 MI战略将极大地促进 地下水资源的可持续性。

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  • 来源
    《Agronomy Journal》 |2006年第6期|1620-1626|共7页
  • 作者单位

    The Center for Agricultural Resources Research, Institute of Genetic and Developmental Biology, The Chinese Academy of Sciences, 286 Huaizhong Rd., Shijiazhuang 050021, China;

    The Center for Agricultural Resources Research, Institute of Genetic and Developmental Biology, The Chinese Academy of Sciences, 286 Huaizhong Rd., Shijiazhuang 050021, China;

    The Center for Agricultural Resources Research, Institute of Genetic and Developmental Biology, The Chinese Academy of Sciences, 286 Huaizhong Rd., Shijiazhuang 050021, China;

    The Center for Agricultural Resources Research, Institute of Genetic and Developmental Biology, The Chinese Academy of Sciences, 286 Huaizhong Rd., Shijiazhuang 050021, China;

    The Center for Agricultural Resources Research, Institute of Genetic and Developmental Biology, The Chinese Academy of Sciences, 286 Huaizhong Rd., Shijiazhuang 050021, China;

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