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Extinction, extirpation, and exotics: effects on the correlation between traits and environment at the continental level

机译:灭绝,灭绝和外来物种:对大陆一级性状与环境之间相关性的影响

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摘要

Ecometrics is the study of the relationship between organismal traits and environments. This study used Monte Carlo methods to assess the effects of extinction, extirpation, and exotic species on ecometric correlations at the continental scale. These potentially confounding processes arise from anthropogenic activities, taphonomic biases in fossil assemblages, and selective mass extinctions. Random, independent local extinctions introduced a predictable downward bias in ecometric correlations, which can be corrected by rarefaction if correlations are being estimated from fossil assemblages. Random global extinctions on species have a less predictable effect on ecometric correlations and introduce pronounced effects if more than 25% of the continental fauna is affected; however, global extinctions do not bias the estimation of R~2 even though they increase its uncertainty. Selective extinction and introduction of exotic species had little impact on ecometric correlations, though caution is urged in generalizing this result.
机译:经济学是对生物特征与环境之间关系的研究。这项研究使用了蒙特卡洛方法来评估灭绝,灭绝和外来物种对大陆尺度上生态计量相关性的影响。这些潜在的混杂过程是由于人为活动,化石组合中的物种偏向以及选择性的物种灭绝引起的。随机的,独立的局部灭绝在生态相关性中引入了可预测的向下偏差,如果从化石组合中估计出相关性,则可以通过稀疏度来纠正。全球物种的随机灭绝对生态学相关性的影响较小,如果超过25%的大陆动物受到影响,则会产生明显的影响;但是,全球灭绝不会增加R〜2的估计值,即使它们增加了不确定性。选择性灭绝和引进外来物种对生态相关性影响不大,尽管在推广这一结果时仍需谨慎。

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