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当代干旱及气候变化对濒危钝鼻豹纹蜥蜴(Gambelia sila)的未来影响

Contemporary Drought and Future Effects of Climate Change on the Endangered Blunt-Nosed Leopard Lizard, Gambelia sila.

作者信息

Westphal Michael F, Stewart Joseph A E, Tennant Erin N, Butterfield H Scott, Sinervo Barry

机构信息

Hollister Field Office, U.S. Bureau of Land Management, Hollister, California, United States of America.

Department of Ecology and Evolutionary Biology, University of California at Santa Cruz, Santa Cruz, California, United States of America.

出版信息

PLoS One. 2016 May 2;11(5):e0154838. doi: 10.1371/journal.pone.0154838. eCollection 2016.

Abstract

Extreme weather events can provide unique opportunities for testing models that predict the effect of climate change. Droughts of increasing severity have been predicted under numerous models, thus contemporary droughts may allow us to test these models prior to the onset of the more extreme effects predicted with a changing climate. In the third year of an ongoing severe drought, surveys failed to detect neonate endangered blunt-nosed leopard lizards in a subset of previously surveyed populations where we expected to see them. By conducting surveys at a large number of sites across the range of the species over a short time span, we were able to establish a strong positive correlation between winter precipitation and the presence of neonate leopard lizards over geographic space. Our results are consistent with those of numerous longitudinal studies and are in accordance with predictive climate change models. We suggest that scientists can take immediate advantage of droughts while they are still in progress to test patterns of occurrence in other drought-sensitive species and thus provide for more robust models of climate change effects on biodiversity.

摘要

极端天气事件可为测试预测气候变化影响的模型提供独特机会。众多模型预测干旱会愈发严重,因此当代干旱或许能让我们在更极端的气候变化影响出现之前对这些模型进行测试。在持续严重干旱的第三年,调查未能在之前调查过的部分种群中发现濒危的钝鼻豹纹蜥幼蜥,而我们原本预计会在这些地方看到它们。通过在短时间内对该物种分布范围内的大量地点进行调查,我们得以在地理空间上确定冬季降水量与豹纹蜥幼蜥的出现之间存在强正相关。我们的结果与众多纵向研究的结果一致,并且符合预测性气候变化模型。我们建议科学家可以在干旱仍在持续时立即利用干旱来测试其他对干旱敏感物种的出现模式,从而为气候变化对生物多样性影响建立更可靠的模型。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fb26/4852947/8e33b120944e/pone.0154838.g001.jpg

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