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构建山地生物多样性:地质和进化过程。

Building mountain biodiversity: Geological and evolutionary processes.

机构信息

Center for Macroecology, Evolution and Climate, GLOBE Institute, University of Copenhagen, Denmark.

Department of Life Sciences, Imperial College London, Ascot SL5 7PY, UK.

出版信息

Science. 2019 Sep 13;365(6458):1114-1119. doi: 10.1126/science.aax0151.

Abstract

Mountain regions are unusually biodiverse, with rich aggregations of small-ranged species that form centers of endemism. Mountains play an array of roles for Earth's biodiversity and affect neighboring lowlands through biotic interchange, changes in regional climate, and nutrient runoff. The high biodiversity of certain mountains reflects the interplay of multiple evolutionary mechanisms: enhanced speciation rates with distinct opportunities for coexistence and persistence of lineages, shaped by long-term climatic changes interacting with topographically dynamic landscapes. High diversity in most tropical mountains is tightly linked to bedrock geology-notably, areas comprising mafic and ultramafic lithologies, rock types rich in magnesium and poor in phosphate that present special requirements for plant physiology. Mountain biodiversity bears the signature of deep-time evolutionary and ecological processes, a history well worth preserving.

摘要

山区的生物多样性异常丰富,有大量分布范围狭窄的物种聚集,形成了特有物种的中心。山脉在地球生物多样性中扮演着多种角色,并通过生物交流、区域气候变化和营养物质流失等方式影响着邻近的低地。某些山脉的高生物多样性反映了多种进化机制的相互作用:独特的共存和谱系延续机会增强了物种形成速度,长期气候变化与地形动态景观相互作用塑造了谱系。大多数热带山脉的高度多样性与基岩地质密切相关——特别是由镁含量丰富而磷酸盐含量低的镁铁质和超镁铁质岩组成的区域,这些岩石类型对植物生理学提出了特殊要求。山地生物多样性带有深层进化和生态过程的特征,这段历史非常值得保存。

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