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Divergence of species responses to climate change

机译:物种对气候变化反应的多样性

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Climate change can have profound impacts on biodiversity and the sustainability of many ecosystems. Various studies have investigated the impacts of climate change, but large-scale, trait-specific impacts are less understood. We analyze abundance data over time for 86 tree species/groups across the eastern United States spanning the last three decades. We show that more tree species have experienced a westward shift (73%) than a poleward shift (62%) in their abundance, a trend that is stronger for saplings than adult trees. The observed shifts are primarily due to the changes of subpopulation abundances in the leading edges and are significantly associated with changes in moisture availability and successional processes. These spatial shifts are associated with species that have similar traits (drought tolerance, wood density, and seed weight) and evolutionary histories (most angiosperms shifted westward and most gymnosperms shifted poleward). Our results indicate that changes in moisture availability have stronger near-term impacts on vegetation dynamics than changes in temperature. The divergent responses to climate change by trait- and phylogenetic-specific groups could lead to changes in composition of forest ecosystems, putting the resilience and sustainability of various forest ecosystems in question.
机译:气候变化可能对生物多样性和许多生态系统的可持续性产生深远影响。各种研究已经调查了气候变化的影响,但是对大规模,特质影响的了解却很少。我们分析了过去三十年来美国东部地区86种树种/种群随时间的丰度数据。我们显示,更多树木物种的丰度经历了向西偏移(73%)而不是向极偏移(62%),对于树苗,这种趋势比成年树更强。观察到的变化主要归因于前缘亚种群数量的变化,并且与水分供应和演替过程的变化显着相关。这些空间变化与具有相似特征(耐旱性,木材密度和种子重量)和进化历史(大多数被子植物向西移动,而裸子植物向极移动)的物种相关。我们的结果表明,水分供应的变化比温度变化对植被动态的近期影响更大。特质和系统发育特定群体对气候变化的不同反应可能导致森林生态系统组成的变化,从而使各种森林生态系统的复原力和可持续性成为问题。

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