Literature DB >> 17508339

Searching for the physiological mechanism of density dependence: does corticosterone regulate tadpole responses to density?

Lisa K Belden1, Michael J Rubbo, John C Wingfield, Joseph M Kiesecker.   

Abstract

Density-dependent population regulation is important in many natural populations, and in those populations, high population density is a likely stressor. In amphibians, previous laboratory studies with tadpoles suggest that corticosterone, the main glucocorticoid stress hormone, is one of the key regulators of density-dependent growth. To test this relationship in natural settings, we manipulated wood frog (Rana sylvatica) tadpole density at three levels in outdoor mesocosms and used a capture stress protocol to examine the hormonal stress response. In addition, we used the same capture protocol in six natural ponds (three high density and three low density). In the mesocosms, there was an increase in corticosterone levels in tadpoles following 1 h of confinement at weeks 1, 2, and 5. However, while tadpoles maintained at higher densities were smaller after metamorphosis, density did not alter mean levels of corticosterone obtained during confinement, and baseline levels of corticosterone did not differ between the densities. Similarly, in natural ponds, density did not correlate with baseline corticosterone or mean corticosterone levels obtained during confinement. We suggest that the physiological response to density may vary across the range of natural densities and that the role of corticosterone may be limited to periods of extreme high density, such as during pond-drying events.

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Year:  2007        PMID: 17508339     DOI: 10.1086/518375

Source DB:  PubMed          Journal:  Physiol Biochem Zool        ISSN: 1522-2152            Impact factor:   2.247


  5 in total

1.  The combined influence of trematode parasites and predatory salamanders on wood frog (Rana sylvatica) tadpoles.

Authors:  Lisa K Belden; Jeremy M Wojdak
Journal:  Oecologia       Date:  2011-03-08       Impact factor: 3.225

Review 2.  Ecophysiology meets conservation: understanding the role of disease in amphibian population declines.

Authors:  Andrew R Blaustein; Stephanie S Gervasi; Pieter T J Johnson; Jason T Hoverman; Lisa K Belden; Paul W Bradley; Gisselle Y Xie
Journal:  Philos Trans R Soc Lond B Biol Sci       Date:  2012-06-19       Impact factor: 6.237

3.  Natural stressors and ranavirus susceptibility in larval wood frogs (Rana sylvatica).

Authors:  Brooke C Reeve; Erica J Crespi; Christopher M Whipps; Jesse L Brunner
Journal:  Ecohealth       Date:  2013-04-12       Impact factor: 3.184

4.  Ecological adaptation drives wood frog population divergence in life history traits.

Authors:  Emily H Le Sage; Sarah I Duncan; Travis Seaborn; Jennifer Cundiff; Leslie J Rissler; Erica J Crespi
Journal:  Heredity (Edinb)       Date:  2021-02-03       Impact factor: 3.821

5.  Physiological, behavioral and maternal factors that contribute to size variation in larval amphibian populations.

Authors:  Robin W Warne; Adam Kardon; Erica J Crespi
Journal:  PLoS One       Date:  2013-10-15       Impact factor: 3.240

  5 in total

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