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Review: soil biological properties as indicators of soil quality in Australian viticulture

机译:综述:土壤生物学特性作为澳大利亚葡萄栽培中土壤质量的指标

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摘要

Any reduction in soil quality as a consequence of production practices, through processes, such as erosion, salinisation, sodicity, acidity and structural decline, threatens the long-term sustainability of winegrape production. Monitoring of soil quality is thus needed to identify when degradation is occurring in order to allow management intervention. This review examines the suite of biological indicators available for this purpose and the potential for their adoption as part of a minimum dataset by industry. Physical and chemical indicators are discussed in a companion paper. Many groups of organisms and various biological processes have been used as indicators of soil quality in research programs. There is a lack of consensus, however, on which are the key indicators for extensive monitoring programs, and little information is available on threshold values to aid data interpretation. At present, only soil organic carbon (together with labile carbon), potentially mineralisable nitrogen and microbial biomass can be recommended for measuring the biological aspects of soil quality in Australian viticulture. Although newer molecular methods have been developed to elucidate the community structure and genetic profiles of groups in the soil biota, and thus supplement measurements of microbial biomass, these methods are not readily available through commercial laboratories. Moreover, with the exception of tests for some pathogenic organisms, these measurements have not yet been linked to soil functions influencing grapevine growth and nutrition and so are not suitable for routine monitoring of vineyard soil quality.
机译:由于侵蚀,盐渍化,碱度,酸度和结构下降等过程而导致的生产实践导致的土壤质量下降,都会威胁到葡萄种植的长期可持续性。因此需要对土壤质量进行监测,以识别何时发生退化,以便进行管理干预。这项审查审查了为此目的可用的一系列生物指标,以及它们被行业采纳为最低数据集的一部分的潜力。物理和化学指标在配套文件中进行了讨论。许多种类的生物和各种生物过程已被用作研究计划中土壤质量的指标。但是,关于广泛监控程序的关键指标缺乏共识,关于阈值的信息很少,无法用于数据解释。目前,仅建议使用土壤有机碳(以及不稳定碳),潜在可矿化的氮和微生物生物量来衡量澳大利亚葡萄栽培中土壤质量的生物学方面。尽管已经开发了更新的分子方法来阐明土壤生物群中各族的群落结构和遗传特征,从而补充了微生物生物量的测量方法,但是这些方法尚不能通过商业实验室获得。此外,除了对某些病原生物的测试外,这些测量尚未与影响葡萄生长和营养的土壤功能相关联,因此不适合常规监测葡萄园土壤质量。

著录项

  • 来源
    《Australian Journal of Grape and Wine Research》 |2013年第3期|311-323|共13页
  • 作者单位

    Department of Environment and Primary Industries, La Trobe University, 5 Ring Road, Bundoora, Vic. 3083, Australia;

    Department of Environment and Primary Industries, La Trobe University, 5 Ring Road, Bundoora, Vic. 3083, Australia;

    CSIRO, Waite Campus, PMB 2, Glen Osmond, SA 5064, Australia;

    CSIRO, Waite Campus, PMB 2, Glen Osmond, SA 5064, Australia;

    South Australian Research and Development Institute, GPO Box 397, Adelaide, SA 5001, Australia;

    Department of Environment and Primary Industries, La Trobe University, 5 Ring Road, Bundoora, Vic. 3083, Australia;

    Melbourne School of Land and Environment, The University of Melbourne, Parkville, Vic. 3010, Australia;

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

    biological activity; microbial biomass; vineyard soil monitoring;

    机译:生物活性微生物生物量葡萄园土壤监测;

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