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Can soil phosphorus availability in tropical forest systems be increased by nitrogen-fixing leguminous trees?

机译:固氮豆科树木能否增加热带森林系统中土壤磷的利用率?

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摘要

Understanding the role of N-fixing leguminous trees for phosphorus (P) cycling in highly weathered tropical soils is relevant for the conservation of natural forests as well as the sustainable management of agroforests and forest plantations with low P input in the Brazilian Atlantic Forest region. We hypothesized that N-fixing leguminous trees can increase the availability of soil P by exploiting different P sources without causing a depletion of soil organic P due to efficient biogeochemical cycling, but empirical evidence remains scarce. For this purpose,~(31)P nuclear magnetic resonance spectroscopy (~(31)P NMR) was used for quantifying soil P forms and the Hedley sequential extraction to determine soil P fractions. The studied sites were forestry systems with leguminous trees: mixed forest plantations with different proportions of fast-growing N-fixing leguminous trees; pure plantations, and agroforestry systems with leguminous trees. The results show that all N-fixing leguminous trees and N mineral fertilization positively affected the concentrations of available soil P in relation to the control treatments. There were increases of all P fractions through cycling in all forest sites.~(31)P NMR spectra clearly identified and quantified that a large amount of phosphomonoesters followed by phosphodiesters in the form of DNA, as well as high reserves of P_i species (ortho-P and pyrophosphate) in the first eleven years of growth at pure plantations, mixed plantations or agroforests. The relations between both ortho-P and DNA with the resin-P_i, NaHCO_3-P_i and NaOH-P_i fractions suggest that both analysis methods provide complementary information about the soil P transformations. Thus, the paper highlights the importance of the use of different N-fixing leguminous tree species under different environmental conditions, production systems and management practices for recovering heavily degraded areas, which may be a suitable strategy through efficient management of P in highly weathered tropical soils in the Brazilian Atlantic Forest biome.
机译:了解氮固定的豆科树木在高风化的热带土壤中对磷(P)循环的作用与巴西大西洋森林地区天然林的保护以及低磷输入的农林和人工林的可持续管理有关。我们假设固氮的豆科树木可以通过利用不同的磷源来增加土壤磷的利用率,而不会由于有效的生物地球化学循环而导致土壤有机磷的消耗,但是经验证据仍然很少。为此,使用〜(31)P核磁共振波谱(〜(31)P NMR)定量分析土壤P形态并进行Hedley顺序提取以确定土壤P分数。研究地点是有豆科树木的林业系统:不同比例的速生固氮豆科树木的混交林。纯人工林和带有豆科植物的农林业系统。结果表明,与固氮处理相比,所有固氮豆科植物和氮肥均对土壤有效磷含量产生了积极影响。在所有森林地点中,所有P组分都通过循环而增加。〜(31)P NMR光谱清楚地识别并量化了大量的磷酸单酯,其次是DNA形式的磷酸二酯,以及P_i物种的高储量(邻位-P和焦磷酸盐)在最初的11年中在纯人工林,混交林或农林中生长。邻位P和DNA与树脂P_i,NaHCO_3-P_i和NaOH-P_i馏分之间的关​​系表明,两种分析方法都提供了有关土壤P转化的补充信息。因此,本文强调了在不同的环境条件,生产系统和管理实践下使用不同固氮豆科树种以恢复严重退化的地区的重要性,这可能是通过在高风化热带土壤中有效管理磷的合适策略。在巴西大西洋森林生物群落中。

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  • 来源
    《The Science of the Total Environment》 |2020年第10期|136405.1-136405.14|共14页
  • 作者

  • 作者单位

    Laboratorio de Solos Universidade Estadual do Norte Fluminense Darcy Ribeiro Campos dos Coytacazes Rj Brazil Crupo Metabolomica Laboratorio de Ciencias Quimicas Universidade Estadual do Norte Fluminense Darcy Ribeiro Campos dos Goytacazes RJ Brazil;

    Laboratorio de Solos Universidade Estadual do Norte Fluminense Darcy Ribeiro Campos dos Coytacazes Rj Brazil;

    Laboratorio de Leguminosas Florestais Embrapa Agrobiologia Seropedica RJ Brazil;

    Crupo Metabolomica Laboratorio de Ciencias Quimicas Universidade Estadual do Norte Fluminense Darcy Ribeiro Campos dos Goytacazes RJ Brazil;

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

    Atlantic Forest; N-fixing leguminous trees; Soil organic phosphorus; Sequential extraction method; Solution ~(31)P NMR spectroscopy; Oxisols; Ultisols;

    机译:大西洋森林;固氮豆科树木;土壤有机磷;顺序提取方法;溶液〜(31)P NMR光谱;氧化溶胶;Ultisols;

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