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Novel soil quality indicators for the evaluation of agricultural management practices:a biological perspective

机译:用于农业管理实践评价的新型土壤质量指标:生物学视角

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Developments in soil biology and in methodsto characterize soil organic carbon can potentially delivernovel soil quality indicators that can help identifymanagement practices able to sustain soil productivityand environmental resilience. This work aimed atsynthesizing results regarding the suitability of a range ofsoil biological and biochemical properties as novel soilquality indicators for agricultural management. The soilproperties, selected through a published literature review,comprised different labile organic carbon fractions [hydrophilicdissolved organic carbon, dissolved organic carbon,permanganate oxidizable carbon (POXC), hot waterextractable carbon and particulate organic matter carbon],soil disease suppressiveness measured using a Pythium-Lepidium bioassay, nematode communities characterizedby amplicon sequencing and qPCR, and microbialcommunity level physiological profiling measured withMicroResp™. Prior studies tested the sensitivity of each ofthe novel indicators to tillage and organic matter additionin ten European long-term field experiments (LTEs) andassessed their relationships with pre-existing soil qualityindicators of soil functioning. Here, the results of theseprevious studies are brought together and interpretedrelative to each other and to the broader body of literatureon soil quality assessment. Reduced tillage increasedcarbon availability, disease suppressiveness, nematoderichness and diversity, the stability and maturity of thefood web, and microbial activity and functional diversity.Organic matter addition played a weaker role in enhancingsoil quality, possibly due to the range of composition of theorganic matter inputs used in the LTEs. POXC was theindicator that discriminated best between soil managementpractices, followed by nematode indices based on functionalcharacteristics. Structural equation modeling showsthat POXC has a central role in nutrient retention/supply,carbon sequestration, biodiversity conservation, erosion control and disease regulation/suppression. The novelindicators proposed here have great potential to improveexisting soil quality assessment schemes. Their feasibilityof application is discussed and needs for future research areoutlined.
机译:土壤生物学和方法中的开发表征土壤有机碳可以潜在的漏洞土壤质量指标,可以帮助识别能够维持土壤生产率和环境恢复性的管理措施。这项工作旨在atsynthesizesize造成的型生物和生物化学特性适用于农业管理新的土壤正式指标。通过发表的文献综述选出的土壤备用,包括不同的不稳定有机碳级分[亲水性溶解的有机碳,溶解有机碳,高锰酸盐可氧化碳(POXC),使用蟒蛇测量的土壤疾病抑制性的土壤疾病抑制性Lepidium Bioassay,线虫社区表征了扩增子测序和QPCR,以及用MICRORESP™测量的微生物顺序水平生理分析。先前的研究测试了每个新型指标对耕作和有机物质的敏感性,有机物质的十个欧洲长期野外实验(LTES)以及与预先存在的土壤功能的土壤质量inders的关系。在这里,这些方法的结果将彼此聚集在一起,并诠释了彼此的更广泛的文献土壤质量评估。减少耕作碳的可用性,疾病抑制性,线虫和多样性,粮食缺陷的稳定性和成熟度,以及微生物活性和微生物活性和功能多样性。有机物质添加在增强的质量中发挥了较弱的作用,可能是由于所使用的大体物质输入的组成的范围在LTE中。 POXC是歧视土壤管理前线之间最好的人,其次是基于功能性特征的线虫指数。结构方程模型Showsthat Poxc在营养保留/供应,碳封存,生物多样性保护,腐蚀控制和疾病调节/抑制中具有核心作用。这里提出的新选择者对即兴化的土壤质量评估计划具有很大的潜力。他们讨论了申请的可行性,并需要未来的研究被禁止。

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