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首页> 外文期刊>Journal of arid environments >Responses of biological soil crusts to rehabilitation strategies
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Responses of biological soil crusts to rehabilitation strategies

机译:生物土壤结皮对修复策略的响应

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Biological soil crusts (biocrusts) are common to dryland ecosystems and can influence a broad suite of soil ecological functions including stability and surface hydrology. Due to long recovery times following disturbance, there is a clear need for rehabilitation strategies to enhance the recovery of biocrust communities. Essential to biocrust recovery are exopolysaccharides (EPS): secretions comprised mainly of high molecular weight polymers that protect cyanobacteria and other biocrust organisms from harsh environmental conditions. We examined whether biocrust rehabilitation strategies (combinations of inoculation with surface shading and artificial soil stabilization) promote EPS production. To test if responses varied by soil texture, we measured biocrust recovery on two fine-textured soils (clay and sandy clay loam) in a cool desert ecosystem. Shade coupled with inoculum addition resulted in the highest biocrust recovery, especially on clay soils. Independent of rehabilitation strategies, natural recovery of biocrusts occurred more rapidly on clay soils, reflected by greater increases in chlorophyll a (chl a). Chl a, a proxy for cyanobacterial biomass, was correlated to EPS amounts, suggesting that cyanobacteria are significant contributors to EPS production in biocrust development. Despite the role of EPS in biocrust establishment, EPS amounts had negligible effects on soil stability on the fine soil texture.
机译:生物土壤结皮(生物结皮)在旱地生态系统中很常见,并且可以影响广泛的土壤生态功能,包括稳定性和地表水文学。由于扰动后恢复时间长,显然需要采取康复策略以增强生物结皮群落的恢复。生物外壳恢复必不可少的是胞外多糖(EPS):分泌物主要由高分子量聚合物组成,这些聚合物可保护蓝细菌和其他生物外壳生物免受恶劣环境的影响。我们检查了生物结皮修复策略(接种与表面遮光和人工土壤稳定的组合)是否可以促进EPS的生产。为了测试响应是否随土壤质地而变化,我们在凉爽的沙漠生态系统中的两种质地优良的土壤(粘土和沙质壤土)上测量了生物结皮的回收率。阴影加上接种物可导致最高的生物结皮回收率,尤其是在粘土土壤上。与恢复策略无关,粘土在土壤中的自然恢复速度更快,这反映在叶绿素a(chla)的增加上。 Chl a是蓝细菌生物量的替代物,与EPS量相关,表明蓝细菌是生物结壳发育中EPS产生的重要贡献者。尽管EPS在生物结皮中具有一定的作用,但EPS量对土壤质地细密的土壤稳定性的影响可忽略不计。

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