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Published on 13 August 2010 |

Version 1

Data from: Inbreeding depression increases with environmental stress: an experimental study and meta-analysis

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Fox, Charles W;Reed, David H

Description

Inbreeding-environment interactions occur when inbreeding leads to differential fitness loss in different environments. Inbred individuals are often more sensitive to environmental stress than are outbred individuals, presumably because stress increases the expression of deleterious recessive alleles or cellular safeguards against stress are pushed beyond the organism's physiological limits. We examined inbreeding-environment interactions, along two environmental axes (temperature and rearing host) that differ in the amount of developmental stress they impose, in the seed-feeding beetle Callosobruchus maculatus. We found that inbreeding depression (inbreeding load, L) increased with the stressfulness of the environment, with the magnitude of stress explaining as much as 66% of the variation in inbreeding depression. This relationship between L and developmental stress was not explainable by an increase in phenotypic variation in more stressful environments. To examine the generality of this experimental result, we conducted a meta-analysis of the available data from published studies looking at stress and inbreeding depression. The meta-analysis confirmed that the effect of the environment on inbreeding depression scales linearly with the magnitude of stress; a population suffers one additional lethal equivalent, on average, for each 33% reduction in fitness induced by the stressful environment.

Citations (1)

Mentions (0)

Metrics

Dataset Index

0.7

FAIR Score

13%

Citations

1

Mentions

0

Metrics Over Time

Publication Details

DOI

Publisher

Dryad

Assigned Domain

Subfield

Animal Science and Zoology

Field

Agricultural and Biological Sciences

Domain

Life Sciences

Confidence Score

45%

Source

Scholar Data Model

Keywords

Mating SystemsInbreedingCallosobruchus maculatusPopulation biology

Normalization Factors

FT

13.46

CTw

1.00

MTw

1.00