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Benefits and limitations to straw- and plastic-film mulch on maize yield and water use efficiency: A meta-analysis across hydrothermal gradients

机译:对玉米产量和水使用效率的肥大和塑料膜覆盖的益处和局限性:水热梯度的荟萃分析

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摘要

Ridge-furrow mulching can reduce soil evaporation and conserve rainfall, thereby increasing crop yield and water use efficiency (WUE) in dryland cropping systems. In this study, we collected 837 observations from 50 published papers and used meta-analysis to investigate whether ridge-furrow and mulching practices are equally effective on maize yield, WUE and evapotranspiration (ET) across a range of precipitation and temperature gradients and soil types in China. Five practices were included: (i) straw mulch on flat plots (SMF), (ii) straw mulch on ridge-furrow plots (SMR), (iii) plastic mulch on flat plots (PMF), (iv) plastic mulch on ridge-furrow plots (PMR), and (v) flat plots without mulch, which was used as a control (CK). The meta-analysis showed that both straw mulch and plastic mulch significantly increased maize yields and WUE (except for SMR), and that plastic mulch was more effective than straw mulch in increasing yields, particularly in cold and dry environments. PMR has the highest yields and is more effective in clay loam than in silt loam soils. Straw mulch, but particularly plastic mulch, increased the soil moisture compared to the CK, while plastic mulch increased soil temperature, mainly in spring. However, the positive effect of plastic mulch on maize yield diminished with increasing mean growing-season temperature and precipitation, reaching zero (similar to the CK of no mulch and flat plots) when the growing-season precipitation was greater than 770?mm and the mean growing-season air temperature exceeded 24?°C. The small benefit of straw mulch (on average about 12%) was similar across the precipitation and temperature gradients, including when the benefits of plastic mulch reached zero. While our analysis has shown the benefits of ridge-furrow plastic mulch on yield and water-use efficiency, it has also highlighted the limitations of the benefits. The results provide a guide to the regions where plastic-film mulch and ridge-furrow planting are likely to improve maize yields and regions where the benefits are likely to be limited.
机译:Ridge-Furrow Mulching可以减少土壤蒸发并节省降雨,从而提高旱地裁剪系统中的作物产量和水分利用效率(WUE)。在这项研究中,我们收集了837篇文章的观察结果,并使用了Meta分析,以研究脊沟和覆盖实践是否对玉米产量,WUE和蒸散蒸腾(ET)的玉米菌,WUE和蒸馏散热(ET)进行了同样有效在中国。包括五种实践:(i)在山脊沟(SMF)上的稻草覆盖物(SMF),(ii)稻草覆盖物(SMR),(iii)塑料覆盖在山脊上的平板(PMF),(IV)塑料覆盖物-Furrow图(PMR),(v)没有覆盖的平面图,用作对照(CK)。荟萃分析表明,稻草覆盖物和塑料覆盖率都显着增加了玉米产量和WUE(SMR除外),并且塑料覆盖物比秸秆覆盖物在增加产率,特别是在冷和干燥环境中更有效。 PMR的产量最高,在粘土壤土中比淤泥壤土土壤更有效。秸秆覆盖物,但特别是塑料覆盖物,与CK相比增加了土壤水分,而塑料覆盖量增加了土壤温度,主要在春天。然而,当生长季节降水大于770Ωmm时,塑料覆盖物对玉米产量对玉米产量的积极作用减少了,达到零(类似于无覆盖和扁平地块的CK)。平均成长季节空气温度超过24°C。秸秆覆盖的小益处(平均约12%)在沉淀和温度梯度方面相似,包括塑料覆盖的效益达到零时。虽然我们的分析表明了Ridge-Furrow塑料覆盖物的效果,但它也强调了益处的局限性。结果为塑料薄膜覆盖物和脊沟种植的区域提供了一个导轨,种植可能会改善玉米产量和益处可能受到限制的区域。

著录项

  • 来源
    《European Journal of Agronomy》 |2018年第2018期|共10页
  • 作者单位

    State Key Laboratory of Grassland Agro-ecosystems Institute of Arid Agroecology School of Life Sciences Lanzhou University;

    The UWA Institute of Agriculture and UWA School of Agriculture and Environment The University of Western Australia;

    State Key Laboratory of Grassland Agro-ecosystems Institute of Arid Agroecology School of Life Sciences Lanzhou University;

    State Key Laboratory of Grassland Agro-ecosystems Institute of Arid Agroecology School of Life Sciences Lanzhou University;

    State Key Laboratory of Grassland Agro-ecosystems Institute of Arid Agroecology School of Life Sciences Lanzhou University;

    State Key Laboratory of Grassland Agro-ecosystems Institute of Arid Agroecology School of Life Sciences Lanzhou University;

    State Key Laboratory of Grassland Agro-ecosystems Institute of Arid Agroecology School of Life Sciences Lanzhou University;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 other
  • 中图分类 农学(农艺学);
  • 关键词

    Straw mulch; Plastic-film mulch; Hydrothermal environment; Growing-season temperature; Growing-season precipitation; Climate change; Soil type;

    机译:稻草覆盖;塑料薄膜覆盖物;水热环境;生长季节温度;生长季节降水;气候变化;土壤类型;

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