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温度对地表节肢动物陷阱捕获量的影响:一种偏差校正模型与方法

Temperature effects on pitfall catches of epigeal arthropods: a model and method for bias correction.

作者信息

Saska Pavel, van der Werf Wopke, Hemerik Lia, Luff Martin L, Hatten Timothy D, Honek Alois, Pocock Michael

机构信息

Department of Entomology, Crop Research Institute Drnovska 507, Prague 6 - Ruzyne, 161 06, Czech Republic.

出版信息

J Appl Ecol. 2013 Feb;50(1):181-189. doi: 10.1111/1365-2664.12023. Epub 2012 Dec 17.

Abstract

Carabids and other epigeal arthropods make important contributions to biodiversity, food webs and biocontrol of invertebrate pests and weeds. Pitfall trapping is widely used for sampling carabid populations, but this technique yields biased estimates of abundance ('activity-density') because individual activity - which is affected by climatic factors - affects the rate of catch. To date, the impact of temperature on pitfall catches, while suspected to be large, has not been quantified, and no method is available to account for it. This lack of knowledge and the unavailability of a method for bias correction affect the confidence that can be placed on results of ecological field studies based on pitfall data.Here, we develop a simple model for the effect of temperature, assuming a constant proportional change in the rate of catch per °C change in temperature, , consistent with an exponential Q response to temperature. We fit this model to 38 time series of pitfall catches and accompanying temperature records from the literature, using first differences and other detrending methods to account for seasonality. We use meta-analysis to assess consistency of the estimated parameter among studies.The mean rate of increase in total catch across data sets was 0·0863 ± 0·0058 per °C of maximum temperature and 0·0497 ± 0·0107 per °C of minimum temperature. Multiple regression analyses of 19 data sets showed that temperature is the key climatic variable affecting total catch. Relationships between temperature and catch were also identified at species level. Correction for temperature bias had substantial effects on seasonal trends of carabid catches.. The effect of temperature on pitfall catches is shown here to be substantial and worthy of consideration when interpreting results of pitfall trapping. The exponential model can be used both for effect estimation and for bias correction of observed data. Correcting for temperature-related trapping bias is straightforward and enables population estimates to be more comparable. It may thus improve data interpretation in ecological, conservation and monitoring studies, and assist in better management and conservation of habitats and ecosystem services. Nevertheless, field ecologists should remain vigilant for other sources of bias.

摘要

步甲及其他地表节肢动物对生物多样性、食物网以及无脊椎害虫和杂草的生物防治有着重要贡献。陷阱诱捕法被广泛用于步甲种群的采样,但由于个体活动(受气候因素影响)会影响捕获率,该技术会产生有偏差的丰度估计值(“活动密度”)。迄今为止,虽然温度对陷阱捕获量的影响被认为很大,但尚未进行量化,且没有可用的方法来对此进行校正。这种知识的缺乏以及偏差校正方法的缺失影响了基于陷阱数据的生态野外研究结果的可信度。在此,我们开发了一个简单的温度效应模型,假设温度每变化1°C,捕获率呈恒定比例变化,这与对温度的指数Q响应一致。我们将该模型应用于文献中38个陷阱捕获量的时间序列及相应的温度记录,使用一阶差分和其他去趋势方法来考虑季节性。我们使用荟萃分析来评估研究间估计参数的一致性。各数据集总捕获量的平均增加率为最高温度每升高1°C增加0.0863±0.0058,最低温度每升高1°C增加0.0497±0.0107。对19个数据集的多元回归分析表明,温度是影响总捕获量的关键气候变量。在物种水平上也确定了温度与捕获量之间的关系。温度偏差校正对步甲捕获量的季节性趋势有显著影响。本文表明温度对陷阱捕获量的影响很大,在解释陷阱诱捕结果时值得考虑。指数模型可用于效应估计和观测数据偏差校正。校正与温度相关的诱捕偏差很简单,能使种群估计更具可比性。因此,它可能会改善生态、保护和监测研究中的数据解释,并有助于更好地管理和保护栖息地及生态系统服务。尽管如此,野外生态学家仍应警惕其他偏差来源。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d8ad/3607414/a8e336b326d0/JPE-50-181-g001.jpg

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