HERITABILITY OF SELECTIVELY ADVANTAGEOUS FORAGING BEHAVIOR IN A SMALL PASSERINE

被引:20
作者
LEMON, WC
机构
[1] Department of Zoology, University of Texas, Austin, 78712, TX
关键词
FORAGING BEHAVIOR; HERITABILITY; REPEATABILITY; TAENIOPYGIA; ZEBRA FINCH;
D O I
10.1007/BF01237873
中图分类号
Q14 [生态学(生物生态学)];
学科分类号
071012 ; 0713 ;
摘要
I measured the heritability of foraging patch choice in a laboratory population of zebra finches (Taeniopygia guttata). Mothers and offspring were tested for their ability to discriminate between four foraging patches which provided four different rates of energy gain. Use of a foraging patch with a high rate of energy gain has been shown to confer a selective advantage on zebra finches in a similar experimental system. In this population of zebra finches there was a large amount of variation in foraging patch choice behaviour both within and among individuals. I determined that foraging patch choice was a phenotypically labile trait with a degree of stereotypy or repeatability, much lower than those typically recorded for morphological traits. The mating behaviour of zebra finches required that heritability be determined from a mother-offspring regression, which showed that narrow sense heritability of foraging patch choice was approximately 0.346. This heritability was significantly different than zero, as was heritability when it was limited by repeatability to 0.246. Foraging patch choice, a behaviour that has a demonstrated fitness consequence, had a heritable component in this laboratory population of zebra finches.
引用
收藏
页码:421 / 428
页数:8
相关论文
共 33 条
[21]  
Mangel M., Clark C.W., Dynamic Modeling in Behavioral Ecology, (1988)
[22]  
Mousseau T.A, Roff D.A., Natural selection and the heritability of fitness components, Heredity, 59, pp. 181-97, (1987)
[23]  
Pulliam H.R., On the theory of optimal diets, The American Naturalist, 108, pp. 59-75, (1974)
[24]  
Pyke G.H., Optimal foraging theory: a critical review, Annual Review of Ecology and Systematics, 15, pp. 523-75, (1984)
[25]  
Pyke G.H., Pulliam H.R., Charnov E.L., Optimal foraging theory: a selective review of theory and tests, The Quarterly Review of Biology, 52, pp. 137-54, (1977)
[26]  
Ritchie M.E., Optimal foraging and fitness in Columbian ground squirrels, Oecologia, 82, pp. 56-67, (1990)
[27]  
Sakulak S.K., Smith R.L., Inheritance of male parental investment in an insect, Am. Nat., 312, pp. 594-601, (1988)
[28]  
Schemmel C., Studies on the genetics of feeding behavior in the cave fish Astyanax mexicanus f. anoptichthys. An example of apparent monofactorial inheritance by polygenes, Z. Tierpsychol., 53, pp. 9-22, (1980)
[29]  
Schoener T.W., Theory of feeding strategies, Annual Review of Ecology and Systematics, 2, pp. 369-404, (1971)
[30]  
Schoener T.W., A brief history of optimal foraging theory, Foraging Behavior, pp. 5-67, (1987)