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The combination of limited irrigation and high plant density optimizes canopy structure and improves the water use efficiency of cotton

机译:有限灌溉和高植物密度的组合优化了冠层结构,提高了棉花的用水效率

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摘要

Increasing plant density under insufficiency or deficit irrigation is considered a new water-saving technique in cotton production, especially in Xinjiang, China, an arid area with a short growing period. Increasing plant density reduces light intensity within the canopy; therefore, we hypothesized that resource use efficiency may be the main factor affecting cotton yield and water use efficiency under limited irrigation conditions. To test this hypothesis, 2-year field experiments were conducted to explore the effects of two irrigation patterns (I-500, conventional irrigation; I-425, limited irrigation) and three planting densities (D-12, 12; D-24, 24; D-36, 36 plants m(-2)) on cotton yield, fiber quality, light interception rate, canopy photosynthesis and irrigation water use efficiency (IWUE). I425D36 raised yield and IWUE by 1.40-22.4% and 13.4-34.5%, respectively, but it did not affect fiber quality compared with other treatments. Further, I425D36 increased the leaf area index and the top and middle-canopy light interception rates after 105 days after sowing, which improved the canopy apparent photosynthetic rate. Seed cotton yield was associated with leaf area index and the top- and bottom-canopy light interception rates. We conclude that irrigation of cotton with limited irrigation at a 425-mm level and a plant density at 36 plants m(-2) had significant benefits in terms of economized irrigation without reducing yield in arid areas.
机译:增加的植物密度在不足或赤字灌溉下被认为是一种新的棉花生产节水技术,特别是在新疆,中国,一个干旱地区,增长较短。增加植物密度降低了树冠内的光强度;因此,我们假设资源利用效率可能是影响灌溉条件下影响棉花产量和水利用效率的主要因素。为了测试这一假设,进行了2年的现场实验,探讨了两种灌溉模式的影响(I-500,常规灌溉; I-425,限量灌溉)和三种种植密度(D-12,12; D-24, 24; D-36,36植物M(-2))棉花产量,纤维质量,光截取率,冠层光合作用和灌溉用水效率(IWUE)。 I425D36分别将产量和IWU提高1.40-22.4%和13.4-34.5%,但与其他治疗相比,它不会影响纤维质量。此外,I425D36在播种后105天后增加了叶面积指数和顶层和中间冠层光截止率,这改善了顶层表观光合速率。种子棉花产量与叶面积指数和顶层和底部冠层光截取率有关。我们得出结论,在425毫米水平下灌溉灌溉的灌溉和36株植物密度的灌溉和植物密度在节省灌溉方面具有显着的益处,而不会降低干旱地区的产量。

著录项

  • 来源
    《Agricultural Water Management》 |2019年第2019期|共10页
  • 作者单位

    Shihezi Univ Xinjiang Prod &

    Construct Grp Key Lab Oasis Ecoagr Shihezi 832003 Xinjiang Peoples R China;

    Shihezi Univ Xinjiang Prod &

    Construct Grp Key Lab Oasis Ecoagr Shihezi 832003 Xinjiang Peoples R China;

    Shihezi Univ Xinjiang Prod &

    Construct Grp Key Lab Oasis Ecoagr Shihezi 832003 Xinjiang Peoples R China;

    Shihezi Univ Xinjiang Prod &

    Construct Grp Key Lab Oasis Ecoagr Shihezi 832003 Xinjiang Peoples R China;

    Xinjiang Acad Agr &

    Reclamat Sci Cotton Inst Shihezi 832003 Xinjiang Peoples R China;

    Shihezi Univ Xinjiang Prod &

    Construct Grp Key Lab Oasis Ecoagr Shihezi 832003 Xinjiang 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

    Cotton; Leaf area index; Light interception rate; Canopy apparent photosynthetic rate; Yield;

    机译:棉花;叶面积指数;光截取率;树冠表观光合速率;产量;

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