Convergent local adaptation in size and growth rate but not metabolic rate in a pair of parapatric Orthoptera species
Author:
Affiliation:
1. Phoenix lab, Ecology Group; IAE; Massey University; Palmerston North New Zealand
2. Statistics and Bioinformatics; IFS; Massey University; Palmerston North New Zealand
Funder
Massey University
Julie Alley bursary
Publisher
Oxford University Press (OUP)
Subject
Ecology, Evolution, Behavior and Systematics
Link
http://academic.oup.com/biolinnean/article-pdf/113/1/123/16713865/bij12304.pdf
Reference50 articles.
1. Body size divergence in nine-spined sticklebacks: disentangling additive genetic and maternal effects;Ab Ghani;Biological Journal of the Linnean Society,2012
2. Metabolic cold adaptation in insects: a large-scale perspective;Addo-Bediako;Functional Ecology,2002
3. Temperature, growth rate, and body size in ectotherms: fitting pieces of a life-history puzzle;Angilletta;Integrative and Comparative Biology,2004
4. Adaptive intrinsic growth rates: an integration across taxa;Arendt;Quarterly Review of Biology,1997
5. Conservation of mass-specific metabolic rate among high- and low-elevation populations of the acridid grasshopper Xanthippus corallipes;Ashby;Physiological Zoology,1997
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