DETERMINATION OF LARVAL MELANIZATION IN THE MOTH, MAMESTRA-BRASSICAE, AND THE ROLE OF MELANIN IN THERMOREGULATION

被引:64
作者
GOULSON, D
机构
[1] Ecology and Biocontrol, NERC Institute of Virology and Environmental Microbiology, Oxford, OX1 3SR, Mansfield Rd
关键词
LARVAL COLOR; LEPIDOPTERA; MELANIN; POLYMORPHISM THERMOREGULATION; VARIATION;
D O I
10.1038/hdy.1994.145
中图分类号
Q14 [生态学(生物生态学)];
学科分类号
071012 ; 0713 ;
摘要
Variability in the colour of lepidopteran larvae has been recorded in a broad range of species, yet little is known of its evolutionary significance, or whether it has a genetic basis. I assess the role of genes and environment in determining the degree of larval melanization in the moth, Mamestra brassicae, and examine functional aspects of larval pigmentation. In particular, whether melanization is of importance in thermoregulation, and whether larvae differing in melanization exhibit concurrent differences in size, rate of development, and fecundity. In the fourth and fifth instars, larval M. brassicae exhibit a continuous range of colour from pale green to black: a classification scheme is described to quantify this variation. Heritability (h(2)) was measured using regression of brood means against mid-parent values for 36 broods (2339 offspring), and was estimated to be 0.237 +/- 0.07 (SD) for fourth instar larvae and 0.421 +/- 0.10 (SD) for fifth instar larvae. However, environmental factors mediated development of larval colour: larvae were darker when reared at low temperature(12 degrees C) compared to high (24 degrees C). Direct measurement of larval temperatures using thermocouples inserted into the alimentary canal indicated that dark larvae absorbed more radiant heat, and thus under illumination consistently maintained a higher body temperature than pale larvae. Hence dark larvae are presumed to be at a selective advantage at low ambient temperatures, and increased melanization of larvae reared at low temperatures may be adaptive. I suggest that variation within natural populations may be maintained by fluctuating weather conditions. Dark larvae were found to be smaller, but developed more quickly than light larvae so that weight at pupation, time to pupation, and fecundity (measured by the number of fertile eggs produced) did not differ according to colour. Further studies are suggested to examine the influence of larval colour on thermoregulation, growth rates and predation in the field.
引用
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页码:471 / 479
页数:9
相关论文
共 38 条
[1]  
BRAKEFIELD PM, 1984, BIOL BUTTERFLIES, V11, P167
[2]  
BUROV V N, 1970, Entomologicheskoe Obozrenie, V49, P257
[3]   BUTTERFLY WING MORPHOLOGY VARIATION IN THE BRITISH-ISLES - THE INFLUENCE OF CLIMATE, BEHAVIORAL POSTURE AND THE HOSTPLANT-HABITAT [J].
DENNIS, RLH ;
SHREEVE, TG .
BIOLOGICAL JOURNAL OF THE LINNEAN SOCIETY, 1989, 38 (04) :323-348
[4]  
Dowdeswell W. H, 1981, LIFE MEADOW BROWN
[6]  
Falconer DS., 1981, INTRO QUANTITATIVE G
[7]  
FAURE IC, 1943, SCI B DEP AGR FOREST, V234, P2
[8]  
Faure J. C., 1943, FARMING IN S AFRICA, V18, P69
[9]   EFFECT OF DENSITY AND PLANT-AGE ON COLOR PHASE VARIATION AND DEVELOPMENT OF LARVAL VELVETBEAN CATERPILLAR, ANTICARSIA-GEMMATALIS HUBNER (LEPIDOPTERA, NOCTUIDAE) [J].
FESCEMYER, HW ;
HAMMOND, AM .
ENVIRONMENTAL ENTOMOLOGY, 1986, 15 (04) :784-789
[10]   THE IMPORTANCE OF SEASONAL-VARIATION IN HAIR COLORATION FOR THERMOREGULATION OF CTENUCHA-VIRGINICA LARVAE (LEPIDOPTERA, ARCTIIDAE) [J].
FIELDS, PG ;
MCNEIL, JN .
PHYSIOLOGICAL ENTOMOLOGY, 1988, 13 (02) :165-175