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冷水连接:北美的淡水鱼类中的伯格曼法则。

The cold-water connection: Bergmann's rule in North American freshwater fishes.

机构信息

Department of Fish and Wildlife Conservation, Virginia Polytechnic Institute and State University, Blacksburg, Virginia 24061; and Wisconsin Department of Natural Resources, Bureau of Science Services, Madison, Wisconsin 53716.

出版信息

Am Nat. 2014 Jan;183(1):147-56. doi: 10.1086/674094. Epub 2013 Nov 12.

Abstract

Understanding general rules governing macroecological body size variations is one of the oldest pursuits in ecology. However, this science has been dominated by studies of terrestrial vertebrates, spurring debate over the validity of such rules in other taxonomic groups. Here, relationships between maximum body size and latitude, temperature, and elevation were evaluated for 29 North American freshwater fish species. Bergmann's rule (i.e., that body size correlates positively with latitude and negatively with temperature) was observed in 38% of species, converse Bergmann's rule (that body size correlates negatively with latitude and positively with temperature) was observed in 34% of species, and 28% of species showed no macroecological body size relationships. Most notably, every species that expressed Bergmann's rule was a cool- or cold-water species while every species that expressed converse Bergmann's rule was a warm-water species, highlighting how these patterns are likely connected to species thermal niches. This study contradicts previous research suggesting Bergmann's rule does not apply to freshwater fishes, and is congruent with an emerging paradigm of variable macroecological body size patterns in poikilotherms.

摘要

了解宏观生态学中体型变化的一般规律是生态学中最古老的研究课题之一。然而,这一科学一直以来主要集中在对陆生脊椎动物的研究上,这引发了关于这些规律在其他分类群中有效性的争论。在这里,我们评估了 29 种北美的淡水鱼类物种的最大体型与纬度、温度和海拔之间的关系。在 38%的物种中观察到贝格曼法则(即体型与纬度呈正相关,与温度呈负相关),在 34%的物种中观察到相反的贝格曼法则(即体型与纬度呈负相关,与温度呈正相关),而 28%的物种则没有表现出宏观生态学体型关系。值得注意的是,表现出贝格曼法则的每一种物种都是冷水或低温物种,而表现出相反的贝格曼法则的每一种物种都是温水物种,这突出表明这些模式可能与物种的热生态位有关。这项研究与之前的研究结果相反,之前的研究表明贝格曼法则不适用于淡水鱼类,而且与变温动物宏观生态学体型模式的新兴范例一致。

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