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Presowing fertigation effects on soil moisture absorption and consumption of cotton in arid regions

机译:对干旱地区土壤湿度吸收和棉花消费的施肥效应

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摘要

To increase the yield and water-use efficiency of cotton in arid regions, irrigation and fertilizer management must be optimized. This study evaluated the effects of two irrigation levels (i.e., with (W-80) and without (W-0) presowing irrigation) combined with two basal fertilization methods (i.e., surface application (F-10) and deep application (F-30)) on soil water absorption and transport, and relationships with water-use efficiency. Our results showed significantly positive relationships between water-use efficiency and the root surface area in the 0-30 cm soil layer (RSA-30), root vigor in the 0-30 cm soil layer (RV-30), root vigor in the 60-80 cm soil layer (RV-80), the leaf transpiration rate, stomatal conductance, sap flow, and water productivity. Principal component analysis showed that the W80F10 treatment initially positively influenced RSA-30, RV-30, and RV-80 and that these parameters affected the leaf transpiration rate, stomatal conductance, sap flow, and leaf area (i.e., the main transpiration area), which finally influenced water productivity and water-use efficiency. In addition, the W80F10 treatment increased the ability of aerial parts to compete for water after 69 days after emergency. These findings indicate that the combination of presowing irrigation and basal fertilizer surface application can enhance the ability of aerial parts to compete for water and increase water-use efficiency by promoting water absorption and consumption after the full flowering stage. This research provides valuable information on agricultural management in aridregions.
机译:为了提高干旱地区棉花的产量和水利用效率,必须优化灌溉和肥料管理。该研究评估了两种灌溉水平的影响(即,用(W-80)和未经(W-0)的灌溉)与两种基础施肥方法(即表面施用(F-10)和深应用(F- 30))土壤吸水和运输,以及利用水效率的关系。我们的结果显示出水性效率与0-30厘米土层(RSA-30)中的根表面面积,0-30厘米土层(RV-30)的根部活力,根部活力之间显着阳性关系。 60-80厘米的土壤层(RV-80),叶片蒸腾速率,气孔电导,SAP流量和水生产率。主成分分析表明,W80F10治疗初步影响了RSA-30,RV-30和RV-80,这些参数影响了叶片蒸腾速率,气孔电导,SAP流动和叶面积(即主蒸腾区域)最终影响了水生产率和水利用效率。此外,W80F10治疗提高了紧急状态后69天后竞争水的空中零件的能力。这些发现表明,灌溉和基础肥料表面应用的组合可以提高空中零件竞争水的能力,并通过促进完整开花阶段之后的吸水和消费来提高水利用效率。本研究提供了有关ARIDREGIONS农业管理的有价值的信息。

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  • 来源
    《Agricultural Water Management》 |2018年第2018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;

    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

    Water-nutrient management; Cotton; Root; Sap flow; Water productivity;

    机译:水营养管理;棉;根;SAP流动;水生产率;

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