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Agroforestry enables high efficiency of light capture, photosynthesis and dry matter production in a semi-arid climate

机译:农业遗产能够在半干旱气候中实现高效率的光捕获,光合和干物质生产

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摘要

Agroforestry systems, which combine annual crops with trees, are used widely in semi-arid regions to reduce wind erosion and improve resource (e.g. water) use efficiency. Limited knowledge is available on optimizing such systems by the choice of crop species with specific physiological traits (i.e. C3 vs C4, N-fixing vs non-N-fixing). In this study we quantified the light interception and utilization efficiency of trees and crops in agro-forestry systems comprising apricot trees and a C3 species (sweet potato), a C4 species (millet) or an N-fixing legume species (peanut), and used measurements in the sole stands as a reference. A significant delay in leaf growth was found in millet. Maximum LAI of millet was 17% higher in agroforestry then expected from sole crop LAI, taking into account the relative density of 2/3, while a 25% decrease in maximum LAI compared to expected was observed in peanut and sweet potato. The total light interception in agroforestry was 54% higher than in sole tree stands and 23% higher than in sole crops. The millet intercepted more light and produced more biomass in agroforestry than peanut and sweet potato. The LUE values of the crops in the mixed systems were higher than those of the sole crops, as was the photosynthetic efficiency of individual leaves, especially in plants in the border rows of the crop strips. High light capture in agroforestry made a greater contribution to productivity of understory crops than the increases in light use efficiency. We conclude that agroforestry systems with apricot trees and annual crops, especially millet, can improve light utilization in semi-arid climates and contribute to regional sustainability and adaptation to climate change.
机译:None

著录项

  • 来源
    《European Journal of Agronomy》 |2018年第2018期|共11页
  • 作者单位

    China Agr Univ Coll Resources &

    Environm Sci Beijing 100193 Peoples R China;

    Liaoning Acad Agr Sci Tillage &

    Cultivat Res Inst Shenyang 110161 Liaoning Peoples R China;

    Liaoning Acad Agr Sci Tillage &

    Cultivat Res Inst Shenyang 110161 Liaoning Peoples R China;

    Liaoning Acad Agr Sci Tillage &

    Cultivat Res Inst Shenyang 110161 Liaoning Peoples R China;

    China Agr Univ Coll Resources &

    Environm Sci Beijing 100193 Peoples R China;

    Liaoning Acad Agr Sci Tillage &

    Cultivat Res Inst Shenyang 110161 Liaoning Peoples R China;

    Liaoning Acad Agr Sci Tillage &

    Cultivat Res Inst Shenyang 110161 Liaoning Peoples R China;

    Liaoning Acad Agr Sci Tillage &

    Cultivat Res Inst Shenyang 110161 Liaoning Peoples R China;

    Liaoning Acad Agr Sci Tillage &

    Cultivat Res Inst Shenyang 110161 Liaoning Peoples R China;

    Liaoning Acad Agr Sci Tillage &

    Cultivat Res Inst Shenyang 110161 Liaoning Peoples R China;

    Liaoning Acad Agr Sci Tillage &

    Cultivat Res Inst Shenyang 110161 Liaoning Peoples R China;

    Liaoning Acad Agr Sci Tillage &

    Cultivat Res Inst Shenyang 110161 Liaoning Peoples R China;

    Liaoning Acad Agr Sci Tillage &

    Cultivat Res Inst Shenyang 110161 Liaoning Peoples R China;

    Wageningen Univ Ctr Crop Syst Anal CSA Droevendaalsesteeg 1 NL-6708 PB Wageningen Netherlands;

    Wageningen Univ Ctr Crop Syst Anal CSA Droevendaalsesteeg 1 NL-6708 PB Wageningen Netherlands;

    China Agr Univ Coll Resources &

    Environm Sci Beijing 100193 Peoples R China;

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

    Border row effect; Leaf photosynthesis; Millet; Peanut; Sweet potato;

    机译:边界效果;叶光合作用;小米;花生;甘薯;

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