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首页> 外文期刊>Climatic Change >Interactions between habitat loss and climate change: implications for fairy shrimp in the Central Valley ecoregion of California, USA.
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Interactions between habitat loss and climate change: implications for fairy shrimp in the Central Valley ecoregion of California, USA.

机译:生境丧失与气候变化之间的相互作用:对美国加利福尼亚中央谷地生态区的仙虾的影响。

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摘要

Combinations of habitat loss and climate change can alter the distribution of environmental conditions available to organisms. The magnitude and direction of these changes may have important implications for ecological processes and species persistence. This study explored the potential impacts of projected changes in climate and land-use for five fairy shrimp species (Crustacea: Anostraca) endemic to vernal pools in the Central Valley ecoregion of California, U.S.A. Scenarios describing habitat extent and climate were developed for 2040 and 2100 and compared to a 1990's baseline. Hydrologic conditions in vernal pools were found to be sensitive to projected climate changes, and, in the absence of habitat loss, warmer temperatures and greater winter precipitation would drive vernal pools toward longer, more frequent periods of inundation. However, existing biological reserves for three of the five species are biased toward drier areas and if unprotected habitat were lost, the net change in hydrologic conditions would be reversed with remaining habitat providing shorter, less frequent inundations. Species with unbiased representation in reserves do not show this reversal, and they have predictable shifts in hydrologic conditions. These results demonstrate the importance of biologically and climatically representative reserve systems under climate change and habitat loss.
机译:生境丧失和气候变化的结合可以改变生物体可获得的环境条件的分布。这些变化的程度和方向可能会对生态过程和物种持久性产生重要影响。这项研究探讨了美国加利福尼亚州中央谷地生态区的5种神仙虾物种(甲壳纲:Anostraca)特有的气候和土地利用的预计变化的潜在影响,该情景描述了2040年和2100年栖息地范围和气候的情景并与1990年代的基准进行比较。发现春季池中的水文条件对预计的气候变化敏感,并且在没有生境丧失的情况下,温度升高和冬季降水增加将驱使春季池向更长,更频繁的淹没期发展。但是,五个物种中三个物种的现有生物储备偏向干旱地区,如果失去了未受保护的栖息地,水文条件的净变化将被逆转,而剩余的栖息地将提供较短,较不频繁的淹没。在储量中具有无偏见表示的物种没有显示出这种逆转,并且在水文条件方面具有可预测的变化。这些结果证明了在气候变化和生境丧失下具有生物学和气候代表性的保护系统的重要性。

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