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Recognizing the role of plant species composition in the modification of soil nutrients and water in rubber agroforestry systems

机译:认识到植物物种组成在橡胶制剂系统中土壤养分和水改性中的作用

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摘要

Reliable guidance for crop selection and related management to achieve sustainable soil resource use in rubber agroforestry systems is limited. One important reason for this limited guidance is that our understanding of the effects of different plant functional groups on soil resources is still insufficient. Here, to examine the effects of the species composition of trees, shrubs and herbs on soil nutrients and soil water with increases in the complexity of the plant community structure, we measured the soil nutrient concentrations (i.e., C, N, P, K, Ca and Mg), soil water content and soil water residence time (with stable hydrogen and oxygen isotope tracers) at six soil depths in a monoculture rubber plantation, four multi-species rubber agroforestry systems, and a tropical rainforest As the plant species composition increased, the soil C and N increased. The soil water content also increased with increases in soil C and N. However, the effects of plant species composition on the soil water content gradually changed from positive to negative, especially under the effects of herb species, which could accelerate soil water drainage and hence shorten the soil water residence time. Therefore, the faster water infiltration and potentially higher flow of soil water in complex plant communities increased the risk and magnitude of mineral nutrient leaching. In addition, as the plant composition increased, plant competition decreased the concentration of soil nutrients, especially soil P, K and Ca. In general, plant interspecific interactions definitively decreased soil mineral nutrients as the plant composition increased, and the effects of tree, shrub and herb species on soil nutrients and soil water differed and sometimes appeared contradictory. However, the effects of plant species composition on soil gradually weakened with increases in soil depth.
机译:作物选择和相关管理的可靠指导,实现橡胶制剂系统可持续土壤资源使用的有限。这种有限指导的一个重要原因是我们对土壤资源对不同植物官能团的影响仍然不足。在这里,为了检查树木,灌木和草药对土壤养分和土壤水的影响随着植物群落结构的复杂性的增加,我们测量了土壤养分浓度(即C,N,P,K, CA和Mg),土壤水含量和土壤水分停留时间(用稳定的氢气和氧同位素示踪剂)在单一栽培橡胶厂,四种多种橡胶农业系统中的六种土壤深处,以及植物物种组成增加的热带雨林,土壤c和n增加。土壤含水量也随着土壤C和N的增加而增加。然而,植物物种组成对土壤水含量的影响逐渐从阳性变为阴性,尤其是草药物种的影响,这可以加速土壤排水和因此缩短土壤水停留时间。因此,复杂植物社区中的水渗透速度更快,土壤水潜力较高,增加了矿物营养浸出的风险和程度。此外,随着植物组成的增加,植物竞争降低了土壤营养素的浓度,尤其是土壤P,K和CA。一般而言,随着植物组成的增加,植物间隙相互作用明确地降低了土壤矿物质营养素,以及树,灌木和草药对土壤养分和土壤水的影响不同,有时呈现矛盾。然而,植物物种组成对土壤的影响随着土壤深度的增加而逐渐削弱。

著录项

  • 来源
    《The Science of the Total Environment》 |2020年第25期|138042.1-138042.11|共11页
  • 作者单位

    CAS Key Laboratory of Tropical Forest Ecology Xishuangbanna Tropical Botanical Garden Chinese Academy of Sciences Menglun Yunnan 666303 China Center of Plant Ecology Core Botanical Gardens Chinese Academy of Sciences Menglun Yunnan 666303 China;

    CAS Key Laboratory of Tropical Forest Ecology Xishuangbanna Tropical Botanical Garden Chinese Academy of Sciences Menglun Yunnan 666303 China Center of Plant Ecology Core Botanical Gardens Chinese Academy of Sciences Menglun Yunnan 666303 China University of Chinese Academy of Sciences Beijing 100049 China;

    CAS Key Laboratory of Tropical Forest Ecology Xishuangbanna Tropical Botanical Garden Chinese Academy of Sciences Menglun Yunnan 666303 China Center of Plant Ecology Core Botanical Gardens Chinese Academy of Sciences Menglun Yunnan 666303 China;

    CAS Key Laboratory of Tropical Forest Ecology Xishuangbanna Tropical Botanical Garden Chinese Academy of Sciences Menglun Yunnan 666303 China Center of Plant Ecology Core Botanical Gardens Chinese Academy of Sciences Menglun Yunnan 666303 China;

    CAS Key Laboratory of Tropical Forest Ecology Xishuangbanna Tropical Botanical Garden Chinese Academy of Sciences Menglun Yunnan 666303 China Center of Plant Ecology Core Botanical Gardens Chinese Academy of Sciences Menglun Yunnan 666303 China;

    CAS Key Laboratory of Tropical Forest Ecology Xishuangbanna Tropical Botanical Garden Chinese Academy of Sciences Menglun Yunnan 666303 China Center of Plant Ecology Core Botanical Gardens Chinese Academy of Sciences Menglun Yunnan 666303 China;

    CAS Key Laboratory of Tropical Forest Ecology Xishuangbanna Tropical Botanical Garden Chinese Academy of Sciences Menglun Yunnan 666303 China Center of Plant Ecology Core Botanical Gardens Chinese Academy of Sciences Menglun Yunnan 666303 China University of Chinese Academy of Sciences Beijing 100049 China;

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  • 正文语种 eng
  • 中图分类
  • 关键词

    Mean residence time; Plant competition; Plant species composition; Plant-soil interaction; Soil macronutrient; Stable hydrogen and oxygen isotopes;

    机译:平均停留时间;植物竞争;植物物种组成;植物土相互作用;土壤Macronutient;稳定的氢气和氧同位素;

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