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Exploring the predictive performance of several temperature measurements on Neotropical dung beetle assemblages: Methodological implications

机译:探索近几季度粪便甲虫组合的温度测量的预测性能:方法论影响

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Basic characteristics of species assemblages are frequently related to temperature variables recorded at a coarse-grained scale. In this study, 15 min instant-measurements of environmental and soil temperatures were recorded during 1 year in six Atlantic Forest sites of southern Brazil, ranging from 250 to 1,630 m a.s.l. These measurements were used to examine the comparative explanatory capacity of several temperature variables in predicting species richness and total or specific variations of dung beetle abundance. The results suggest that temperature measurements obtained during the survey period have the highest explanatory capacity. Furthermore, average temperature values seem to have a relatively higher explanatory capacity than absolute minimum or maximum values reflecting extreme conditions. In general, there is no rule in selecting a temperature variable when the objective involves explaining the variation in species abundances. Both soil and air variables can have similar explanatory capacities. The present results should be considered when designing future ecological studies in Neotropical conditions.
机译:物种组合的基本特征通常与以粗粒度记录的温度变量有关。在这项研究中,在巴西南部的六个大西洋森林地点,从250至1,630米A.L.1年内记录了15分钟的环境和土壤温度的即时测量环境和土壤温度。这些测量用于检查几种温度变量的比较解释能力,以预测物种丰富性和粪甲虫丰度的总体或特异性变异。结果表明,调查期间获得的温度测量值最高的解释能力。此外,平均温度值似乎具有比反射极端条件的绝对最小值或最大值的相对较高的解释能力。通常,在目标涉及解释物种丰富的变化时,选择温度变量没有规则。土壤和空气变量都可以具有相似的解释能力。在设计未来的新生儿病症生态研究时应考虑目前的结果。

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