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A practical guide to measuring functional indicators and traits in biocrusts

机译:测量生物科技功能指标和特征的实用指南

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摘要

Biocrusts are multifunctional communities that are increasingly being used to restore degraded or damaged ecosystems. Concurrently, restoration science is shifting away from the use of purely structural metrics, such as relative abundance, to more functional approaches. Although biocrust restoration technology is advancing, there is a lack of readily available information on how to monitor biocrust functioning and set appropriate restoration goals. We therefore compiled a selection of 22 functional indicators that can be used to monitor biocrust functions, such as CO2 exchange as an indicator of productivity or soil aggregate stability as a proxy for erosion resistance. We describe the functional importance of each indicator and the available protocols with which it may be measured. The majority of indicators can be measured as a functional trait of species by using patches of biocrust or cultures that contain only one species. Practitioners wishing to track the multifunctionality of an entire biocrust community would be advised to choose one indicator from each broad functional group (erosion resistance, nutrient accumulation, productivity, energy balance, hydrology), whereas a targeted approach would be more appropriate for projects with a key function of interest. Because predisturbance data are rarely available for biocrust functions, restoration goals can be based on a closely analogous site, literature values, or an expert elicitation process. Finally, we advocate for the establishment of a global trait database for biocrusts, which would reduce the damage resulting from repeated sampling, and provide a wealth of future research opportunities.
机译:生物熏化的是多功能社区,越来越多地用于恢复退化或受损的生态系统。同时,恢复科学正在远离使用纯粹结构度量,例如相对丰富,以更新的方法。虽然生物熏制的恢复技术正在推进,但有关如何监控生物化功能并确定适当的恢复目标的易于提供的信息。因此,我们编制了一个选择的22个功能指标,可用于监测生物型功能,例如CO2交换作为生产率或土壤聚集稳定性的指标,作为侵蚀抗性的代理。我们描述了每个指标的功能重要性和可以测量它的可用协议。大多数指标可以通过使用只有一个物种的斑块或含有一种物种的斑块来测量物种功能性状。希望跟踪整个生物型社区多功能力的从业者将被建议从每个广泛的功能群中选择一个指标(侵蚀抵抗,营养积累,生产力,能量平衡,水文),而目标方法将更适合与a的项目兴趣的关键功能。由于近际数据很少可用于生物化功能,所以恢复目标可以基于紧密类似的网站,文献值或专家阐述过程。最后,我们倡导建立一个为生物教库的全球特质数据库,这将减少反复抽样引起的损害,并提供了丰富的未来研究机会。

著录项

  • 来源
    《Restoration ecology》 |2020年第s2期|S56-S66|共11页
  • 作者单位

    Univ New South Wales Sch Biol Earth & Environm Sci Ctr Ecosyst Sci Sydney NSW Australia|Univ New South Wales Sch Biol Earth & Environm Sci Ecol & Evolut Res Ctr Sydney NSW Australia;

    No Arizona Univ Sch Forestry Flagstaff AZ 86011 USA;

    No Arizona Univ Sch Forestry Flagstaff AZ 86011 USA;

    Univ New South Wales Sch Biol Earth & Environm Sci Ctr Ecosyst Sci Sydney NSW Australia|Univ New South Wales Sch Biol Earth & Environm Sci Ecol & Evolut Res Ctr Sydney NSW Australia;

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

    biocrust; ecosystem functioning; functional traits; monitoring; restoration;

    机译:生物教;生态系统功能;功能性状;监测;恢复;

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