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首页> 外文期刊>Ecological indicators >Assessing the sustainability of land use management of northern Ethiopian drylands by various indicators for soil health
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Assessing the sustainability of land use management of northern Ethiopian drylands by various indicators for soil health

机译:通过各种土壤健康指标评估埃塞俄比亚北部旱地土地利用管理的可持续性

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摘要

Land use change and agricultural intensification in developing countries affect terrestrial carbon (C) stocks, CO2 efflux, microbial communities and overall soil health. This study assesses the effects of four land use types typical for northern Ethiopia (forests, exclosures, grazing lands and intensively cultivated croplands) on various soil health indicators. We quantified and compared microbial biomass carbon (MBC), water extractable organic carbon (WOC), metabolic quotient (qCO(2)), substrate use efficiency (SUE) and dynamics of C-14-labelled glucose added to soil. Irrespective of the land use, MBC but not SUE decreased 2- to 8-fold with increasing depth, demonstrating the C limitation of subsoil microbial communities under all land use forms. Sandy soils, however, which permit seepage and leaching of WOC into lower layers and promote subsoil microbial communities, adapted to frequent input of easily accessible C substrates. Significantly higher qCO(2) were recorded in subsoils compared to topsoils, especially in croplands with low MBC. In croplands, high glucose-C-14 incorporation (approximate to 20%) into their low microbial biomass indicates a high SUE and reflects a better nutrient supply of these microbial communities. Mineralization of up to 95% of C-14-labeled glucose in topsoils of forest and grazing lands was higher than in croplands, and exclosures never reached the level of natural ecosystems. This demonstrates that 6-10 years of exclosure establishment does not result in soil microbial communities and soil C dynamics resembling those of natural forests.Our study demonstrates that land use can negatively affect the ecological performance of microbial communities and that these impacts are more severe in sandy than in clayey soils. Mitigation strategies such as minimum tillage or residue retention in intensively cultivated croplands can increase microbial abundance and activity and help ensure environmental sustainability and mitigation of climate change. Nonetheless, such measures need to be carefully accompanied by monitoring indicators of soil health to confirm the sustainability of the chosen mitigation strategies.
机译:发展中国家的土地利用变化和农业集约化影响陆地碳(C)储量,CO2流出,微生物群落和整体土壤健康。这项研究评估了埃塞俄比亚北部典型的四种土地利用类型(森林,荒坡,牧场和集约耕地)对各种土壤健康指标的影响。我们量化和比较了微生物生物量碳(MBC),水可提取有机碳(WOC),代谢商(qCO(2)),底物使用效率(SUE)和添加到土壤中的C-14标记葡萄糖的动力学。无论使用哪种土地,随着深度的增加,MBC而不是SUE下降了2到8倍,这表明在所有土地利用形式下,土壤微生物群落的碳限制。但是,砂土允许WOC渗入和浸出到较低的层中,并促进地下土壤微生物群落,从而适合于频繁输入容易获得的C基质。与表层土壤相比,特别是在MBC较低的农田中,地下土壤中的qCO(2)明显更高。在农田中,高葡萄糖-C-14掺入其低微生物生物量中(约占20%)表明SUE较高,并反映了这些微生物群落的营养供应更好。在森林和牧场地表土中,高达95%的C-14标记葡萄糖的矿化程度高于耕地,而排泄物从未达到自然生态系统的水平。这表明,禁闭期为6-10年不会导致土壤微生物群落和土壤C的动态变化类似于天然林。我们的研究表明,土地利用会对微生物群落的生态性能产生负面影响,而这些影响在2000年更为严重。沙质的土壤比黏土土壤的要多。在集约耕地中减少耕种或残留残留物等缓解策略可以增加微生物的丰度和活性,并有助于确保环境的可持续性和气候变化的缓解。但是,在采取此类措施时,还应仔细监测土壤健康的指标,以确认所选缓解策略的可持续性。

著录项

  • 来源
    《Ecological indicators》 |2020年第5期|106092.1-106092.12|共12页
  • 作者

  • 作者单位

    Mekelle Univ Dept Land Resources Management & Environm Protect POB 231 Mekelle Ethiopia|Mekelle Univ Inst Climate & Soc POB 231 Mekelle Ethiopia|Georg August Univ Goettingen Biogeochem Agr Agroecosyst Buesgenweg 2 D-37077 Gottingen Germany;

    Georg August Univ Goettingen Biogeochem Agr Agroecosyst Buesgenweg 2 D-37077 Gottingen Germany;

    Mekelle Univ Dept Land Resources Management & Environm Protect POB 231 Mekelle Ethiopia;

    Mekelle Univ Dept Land Resources Management & Environm Protect POB 231 Mekelle Ethiopia|Mekelle Univ Inst Climate & Soc POB 231 Mekelle Ethiopia;

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

    Land use systems; Microbial biomass carbon; Substrate mineralization; Sub-Saharan Africa; Metabolic quotient; Substrate use efficiency;

    机译:土地利用系统;微生物生物量碳基质矿化;撒哈拉以南非洲;代谢商基板使用效率;

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