首页> 外文期刊>The Science of the Total Environment >Subsurface drip irrigation reduces cadmium accumulation of pepper (Capsicum annuum L.) plants in upland soil
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Subsurface drip irrigation reduces cadmium accumulation of pepper (Capsicum annuum L.) plants in upland soil

机译:地下滴灌降低了高地土壤中辣椒(Capsicum Anuum L.)植物的镉积累

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摘要

Given that Cd pollution in dry land has aroused wide public concern, numerous remediation technologies has been utilized, yet there are limited cost-effective techniques that do not affect the original planting patterns. Fortunately, irrigation management can meet these requirements, while the effects of irrigation practices on Cd uptake by crops in slightly Cd-polluted upland soil remain elusive. Here, we aimed to investigate how the irrigation methods altered the Cd availability in soil, Cd accumulation in plants, microorganism population in soil, root morphology, and enzyme activities in soil and plants. We examined three irrigation treatments - surface drip irrigation (DI), subsurface drip irrigation (SDI), alternate-rows irrigation (ARI), and the control conventional furrow irrigation (CFI). The results showed that SDI remarkably reduced Cd content in roots, shoots and fruits, increased yield, and improved root growth and activity in soil of 20-40 cm compared to other treatments, though the Cd concentration in rhizosphere was not decreased significantly. The microbial population and enzyme activities in rhizosphere and enzyme activities in leaves and roots in SDI and ARI were basically higher than DI and CFI. Therefore, SDI has the prominent potential to reduce Cd uptake by crops in upland soil polluted with low Cd.
机译:鉴于干旱的CD污染引起了广泛的公众关注,已经利用了许多修复技术,但有限的经济高效的技术不影响原始种植模式。幸运的是,灌溉管理可以满足这些要求,而灌溉实践对略微CD污染的高地土壤中的作物对CD摄取的影响仍然难以捉摸。在这里,我们旨在调查灌溉方法如何改变土壤中的CD可用性,植物CD积累,土壤中的微生物群,土壤和植物中的酶活性。我们检查了三次灌溉处理 - 表面滴灌(DI),地下滴灌(SDI),交替行灌溉(ARI),以及对照传统沟灌(CFI)。结果表明,与其他治疗相比,SDI在根,芽和水果中的镉含量显着降低了根,芽和水果,产量增加,产量增加20-40厘米的土壤中的活性,但无根际的CD浓度没有显着降低。在SDI和ARI中的根际和叶片中的微生物种群和酶活性基本上高于DI和CFI。因此,SDI具有减少用低CD污染的旱地土壤中的作物减少CD摄取的突出潜力。

著录项

  • 来源
    《The Science of the Total Environment》 |2021年第2期|142650.1-142650.10|共10页
  • 作者单位

    Farmland Irrigation Research Institute Chinese Academy of Agricultural Sciences Xinxiang 453002 China;

    Farmland Irrigation Research Institute Chinese Academy of Agricultural Sciences Xinxiang 453002 China;

    Farmland Irrigation Research Institute Chinese Academy of Agricultural Sciences Xinxiang 453002 China;

    Farmland Irrigation Research Institute Chinese Academy of Agricultural Sciences Xinxiang 453002 China National Research and Observation Station of Shangqiu Agro-ecology System Shangqiu 476000 China;

    Farmland Irrigation Research Institute Chinese Academy of Agricultural Sciences Xinxiang 453002 China;

    Farmland Irrigation Research Institute Chinese Academy of Agricultural Sciences Xinxiang 453002 China;

    Farmland Irrigation Research Institute Chinese Academy of Agricultural Sciences Xinxiang 453002 China National Research and Observation Station of Shangqiu Agro-ecology System Shangqiu 476000 China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Subsurface drip irrigation; Surface drip irrigation; Alternate-rows irrigation; Cadmium;

    机译:地下滴灌;表面滴灌;替代行灌溉;镉;

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