Body size variation in insects: a macroecological perspective

被引:582
作者
Chown, Steven L. [1 ]
Gaston, Kevin J. [2 ]
机构
[1] Univ Stellenbosch, Ctr Invas Biol, Dept Bot & Zool, ZA-7602 Matieland, South Africa
[2] Univ Sheffield, Dept Anim & Plant Sci, Biodivers & Macroecol Grp, Sheffield S10 2TN, S Yorkshire, England
关键词
Bergmann's rule; clinal variation; compensatory growth; frequency distribution; gigantism; ontogeny; Rensch's rule; seasonality; sexual size dimorphism; LIFE-HISTORY TRAITS; SEASONAL TIME CONSTRAINT; BEE ANTHOPHORA-PLUMIPES; TROPICAL RAIN-FOREST; AFRICAN DUNG BEETLE; REACTION NORMS; EGG SIZE; BERGMANNS RULE; METABOLIC-RATE; GEOGRAPHIC-VARIATION;
D O I
10.1111/j.1469-185X.2009.00097.x
中图分类号
Q [生物科学];
学科分类号
07 ; 0710 ; 09 ;
摘要
Body size is a key feature of organisms and varies continuously because of the effects of natural selection on the size-dependency of resource acquisition and mortality rates. This review provides a critical and synthetic overview of body size variation in insects from a predominantly macroecological (large-scale temporal and spatial) perspective. Because of the importance of understanding the proximate determinants of adult size, it commences with a brief summary of the physiological mechanisms underlying adult body size and its variation, based mostly on findings for the model species Drosophila melanogaster and Manduca sexta. Variation in nutrition and temperature have variable effects on critical weight, the interval to cessation of growth (or terminal growth period) and growth rates, so influencing final adult size. Ontogenetic and phylogenetic variation in size, compensatory growth, scaling at the intra-and interspecific levels, sexual size dimorphism, and body size optimisation are then reviewed in light of their influences on individual and species body size frequency distributions. Explicit attention is given to evolutionary trends, including gigantism, Cope's rule and the rates at which size change has taken place, and to temporal ecological trends such as variation in size with succession and size-selectivity during the invasion process. Large-scale spatial variation in size at the intraspecific, interspecific and assemblage levels is considered, with special attention being given to the mechanisms proposed to underlie clinal variation in adult body size. Finally, areas particularly in need of additional research are identified.
引用
收藏
页码:139 / 169
页数:31
相关论文
共 364 条
[91]   Phenotypic plasticity and developmental temperature in Drosophila: Analysis and significance of reaction norms of morphometrical traits [J].
David, JR ;
Gibert, P ;
Gravot, E ;
Petavy, G ;
Morin, JP ;
Karan, D ;
Moreteau, B .
JOURNAL OF THERMAL BIOLOGY, 1997, 22 (06) :441-451
[92]   SIMILARITIES AND DIFFERENCES IN LATITUDINAL ADAPTATION OF 2 DROSOPHILA SIBLING SPECIES [J].
DAVID, JR ;
BOCQUET, C .
NATURE, 1975, 257 (5527) :588-590
[93]   A physiological perspective on the response of body size and development time to simultaneous directional selection [J].
Davidowitz, G ;
Roff, DA ;
Nijhout, HF .
INTEGRATIVE AND COMPARATIVE BIOLOGY, 2005, 45 (03) :525-531
[94]   The physiological basis of reaction norms: The interaction among growth rate, the duration of growth and body size [J].
Davidowitz, G ;
Nijhout, HF .
INTEGRATIVE AND COMPARATIVE BIOLOGY, 2004, 44 (06) :443-449
[95]  
Davidowitz G, 2004, EVOL ECOL RES, V6, P49
[96]   Critical weight in the development of insect body size [J].
Davidowitz, G ;
D'Amico, LJ ;
Nijhout, HF .
EVOLUTION & DEVELOPMENT, 2003, 5 (02) :188-197
[97]  
Davies KF, 2000, ECOLOGY, V81, P1450, DOI 10.1890/0012-9658(2000)081[1450:WTOSPP]2.0.CO
[98]  
2
[99]   Von Bertalanffy's growth equation should not be used to model age and size at maturity [J].
Day, T ;
Taylor, PD .
AMERICAN NATURALIST, 1997, 149 (02) :381-393
[100]   Developmental thresholds and the evolution of reaction norms for age and size at life-history transitions [J].
Day, T ;
Rowe, L .
AMERICAN NATURALIST, 2002, 159 (04) :338-350