系统发育树
系统发育多样性
物种丰富度
生物多样性
生物
生态学
温带气候
亚热带
蝴蝶
全球生物多样性
热带
干旱
物种多样性
系统发育学
生物地理学
分类等级
生物多样性热点
宏观生态学
多样性(政治)
进化生物学
系统发育比较方法
空间生态学
地理
伽马多样性
作者
Hong Qian,Michael Kessler,Shenhua Qian
摘要
Abstract Taxonomic diversity (TD) and phylogenetic diversity (PD) are two important metrics of biodiversity, but they are often mismatched in many areas across the world. This geographic mismatch, typically identified through assessment of relative phylogenetic diversity (RPD), is associated with climatic conditions and is critical not only to understanding the origin and maintenance of biodiversity but also conservation planning. Here, using a comprehensive data set of butterflies across the world, we explore geographic patterns of RPD and its relationships with climatic factors. Butterfly species assemblages used in this study are species in 12 407 grid cells across the world. We use two different metrics to measure RPD: one directly relating PD to TD (PD dev ) and the other exploring variation on phylogenetic branch length (Mishler's RPD). We find that RPD is higher in humid subtropical and tropical regions, where butterflies originated and maintain many distinct phylogenetic lineages, and is lower in temperate and arid tropical regions as well as in geologically young mountains, where there are fewer major phylogenetic lineages and where regional radiations form clusters of closely related species. The patterns of PD dev and Mishler's RPD are largely similar, but PD dev is more strongly related to temperature, whereas Mishler's RPD is more strongly related to precipitation, suggesting that these metrics capture different ways in which climate influences PD. Overall, areas with higher RPD likely hold higher evolutionary potential than areas with equivalent species richness but lower RPD, so that areas of high RPD would be of particular interest for biodiversity conservation.
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