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Using species records and ecological attributes of bryophytes to develop an ecosystem health indicator

机译:使用苔藓植物的物种记录和生态属性来开发生态系统健康指标

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摘要

Environmental policy decisions should be based on robust indicators of changes in the environment. In Scotland these have been formalised as Ecosystem Health Indicators. Indicators work best where there is a direct link between what is measured and environmental change; changes in indices of species diversity or abundance provide alerts to environmental change but do not in themselves provide evidence of mechanisms. An alternative approach is to replace species occurrence data with species habitat or attribute values to create an indicator that links changes in species occurrences to environmental drivers.A series of indicators based on biological recording data, Ellenberg habitat preference values and mean climate niche was created by taking all records for bryophytes in Scotland (522187 records, 1960-2016) and analysing changes in mean attribute values through time for each 10 kmx10 km grid square. The resulting mean attribute values were analysed at the country level and showed clear quadratic (humped) trends for Ellenberg Nitrogen (N) and Reaction (R), an index of environmental acidity. There are linear decreasing trends for Ellenberg Light (L) and Precipitation, and linear increasing trends for January and July Temperature. Ellenberg Moisture (F) showed a clear trend, but it was not interpretable and appeared influenced by recording effort. Disaggregating to region was partly successful, but reduced samples sizes meant that for many regions the national trend was not significant.Ellenberg N and the two Temperature indices appear to be useful indicators as they are interpretable and performed better in the downscaling. Changes in L were also interpretable, but it performed poorly in downscaling to regional values. Ellenberg R appeared to be driven by changes in N as the two values are highly correlated across species. The downward trend in Precipitation ran counter to increases in rainfall suggesting that temperature driven evaporation is more likely to be driving changes in bryophyte distribution and whilst the indicator performed well it is difficult to explain to non-experts.Opportunistically collected data, like plant records, have great potential to be employed as indicators, especially as citizen scientists are involved and state resources can be used for data archiving and analysis. Also, conversion to attribute values removes many of the biases brought by differences in recorder effort and it directly links changes in species occurrences to environmental drivers.
机译:环境政策决策应基于环境变化的强大指标。在苏格兰,这些已被形式化为生态系统健康指标。指标在衡量和环境变化之间存在直接联系的地方最佳工作;物种多样性或丰富指数的变化提供了环境变革的警报,但本身不提供机制的证据。另一种方法是用物种栖息地或属性值替换物种发生数据,以创建一个指标,该指标将物种发生的变化链接到环境驱动程序。基于生物记录数据的一系列指标,Ellenberg栖息地偏好值和平均气候利基创建以苏格兰(522187纪录,1960-2016)在苏格兰进行所有记录,并通过时间为每个10kmx10 km网格广场分析平均属性值的变化。在国家一级分析所得到的平均属性值,并显示壳蛋白氮(N)和反应(R),环境酸度指数的明显二次(驼峰)趋势。 Ellenberg Light(L)和1月和7月温度的降水和线性增加趋势的线性降低趋势。 Ellenberg水分(F)显示出明显的趋势,但它不可解决,并且由于记录工作而受到影响。分解到地区是部分成功的,但减少的样品规模意味着对于许多地区而言,国家趋势并不重要。伦贝格N和两个温度指数似乎是有用的指标,因为它们是可解释的并且在较低的尺寸下表现更好。 L的变化也是可解释的,但它对区域价值观的次标表现不佳。 Ellenberg R似乎被N的变化驱动,因为两个值跨物种高度相关。降雨量的下降趋势增加降雨量的增加表明,温度驱动的蒸发更有可能在苔藓植物分布的变化以及指标表现良好的情况下,难以向非专家解释.Portunisticy收集的数据,如植物记录,有很大的潜力将被雇用为指标,特别是因为涉及公民科学家并且国家资源可用于数据归档和分析。此外,转换为属性值删除了记录器工作中差异所带来的许多偏差,并且它直接链接种类发生的变化对环境驱动程序。

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