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Controls on Mountain Plant Diversity in Northern California: A 14,000-Year Overview

机译:加利福尼亚州山地植物多样性的控制:14,000年概述

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A network of eight Holocene paleoenvironmental records from lakes in the Klamath Mountains of Northern California provides insights on how diverse coniferous forests are maintained in the face of climate change. Pollen data suggest that in most cases plants kept pace with climate change. The steep costal-to-inland precipitation gradient resulted in asynchronous responses to climate change with coastal forests responding before inland sites. This was likely due to the proximity to oceans, warm valleys, and the differential responses to changes in ocean upwelling. Plants growing on soils with heavy metals showed little response to Holocene climate variability, suggesting that they experienced stability during the Holocene, which helps explain the localized plant diversity on the harsh soils. Plant communities on soils without heavy metals adjusted their ranges along elevational gradients in response to climate change, however. Fires were a common occurrence at all sites and tracked climate; however, sites that were more coastal experienced fewer fires than inland sites. Fire severity remained similar through the Holocene at individual sites; however, it was low to moderate at southern locations and higher at more northern locations. The article highlights historical factors that help explain the diversity of plant species in the forests of Northern California and provides insights for managing these complex ecosystems.
机译:来自北加州克拉马斯山区湖泊的八个全社会环境网络的网络提供了关于在气候变化面前维持多元化的针叶林多样化的见解。花粉数据表明,在大多数情况下,工厂在气候变化方面保持速度。陡峭的肋骨到内陆降水梯度导致了对内陆地点的沿海林的气候变化产生异步响应。这可能是由于海洋,温暖的山谷以及对海洋上升的变化的差异反应的邻近。生长在具有重金属的土壤上的植物表现出对全茂气候变化的影响很小,表明它们在全新世期间经历了稳定性,这有助于解释众所周知的土壤上的局部植物多样性。然而,在没有重金属的土壤上的植物社区沿着高度梯度调整了他们的范围,以应对气候变化。火灾是所有网站的常见发生和追踪气候;然而,更多沿海地区的网站经历了比内陆地点更少的火灾。通过个别地点的全新世,火灾严重程度保持相似;然而,在南部地区的中度和更高的地区,它很低。本文突出了历史因素,有助于解释北加州森林植物种类的多样性,并为管理这些复杂的生态系统提供了洞察力。

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