Is death–feigning adaptive? Heritable variation in fitness difference of death–feigning behaviour

The adaptation of death-feigning (thanatosis), a subject that has been overlooked in evolutionary biology, was inferred in a model prey-and-predator system. We studied phenotypic variation among individuals, fitness differences, and the inheritance of death-feigning behaviour in the red flour beetle...

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Published inProceedings of the Royal Society. B, Biological sciences Vol. 271; no. 1554; pp. 2293 - 2296
Main Authors Miyatake, T., Katayama, K., Takeda, Y., Nakashima, A., Sugita, A., Mizumoto, M.
Format Journal Article
LanguageEnglish
Published England The Royal Society 07.11.2004
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Abstract The adaptation of death-feigning (thanatosis), a subject that has been overlooked in evolutionary biology, was inferred in a model prey-and-predator system. We studied phenotypic variation among individuals, fitness differences, and the inheritance of death-feigning behaviour in the red flour beetle, Tribolium castaneum (Herbst) (Coleoptera: Tenebrionidae). Two-way artificial selections for the duration of death-feigning, over 10 generations, showed a clear direct response in the trait and a correlated response in the frequency of death-feigning, thus indicating variation and inheritance of death-feigning behaviour. A comparison of the two selected strains with divergent frequencies of death-feigning showed a significant difference in the fitness for survival when a model predator, a female Adanson jumper spider, Hasarius adansoni Audouin (Araneomophae: Salticidae), was presented to the beetles. The frequency of predation was lower among beetles from strains selected for long-duration than among those for short-duration death-feigning. The results indicate the possibility of the evolution of death-feigning under natural selection.
AbstractList The adaptation of death-feigning (thanatosis), a subject that has been overlooked in evolutionary biology, was inferred in a model prey-and-predator system. We studied phenotypic variation among individuals, fitness differences, and the inheritance of death-feigning behaviour in the red flour beetle, Tribolium castaneum (Herbst) (Coleoptera: Tenebrionidae). Two-way artificial selections for the duration of death-feigning, over 10 generations, showed a clear direct response in the trait and a correlated response in the frequency of death-feigning, thus indicating variation and inheritance of death-feigning behaviour. A comparison of the two selected strains with divergent frequencies of death-feigning showed a significant difference in the fitness for survival when a model predator, a female Adanson jumper spider, Hasarius adansoni Audouin (Araneomophae: Salticidae), was presented to the beetles. The frequency of predation was lower among beetles from strains selected for long-duration than among those for short-duration death-feigning. The results indicate the possibility of the evolution of death-feigning under natural selection.
The adaptation of death-feigning (thanatosis), a subject that has been overlooked in evolutionary biology, was inferred in a model prey-and-predator system. We studied phenotypic variation among individuals, fitness differences, and the inheritance of death-feigning behavior in the red flour beetle, Tribolium castaneum (Herbst) (Coleoptera: Tenebrionidae). Two-way artificial selections for the duration of death-feigning, over 10 generations, showed a clear direct response in the trait and a correlated response in the frequency of death-feigning, thus indicating variation and inheritance of death-feigning behavior. A comparison of the two selected strains with divergent frequencies of death-feigning showed a significant difference in the fitness for survival when a model predator, a female Adanson jumper spider, Hasarius adansoni Audouin (Araneomophae: Salticidae), was presented to the beetles. The frequency of predation was lower among beetles from strains selected for long-duration than among those for short-duration death-feigning. The results indicate the possibility of the evolution of death-feigning under natural selection.
Audouin (Araneomophae: Salticidae), was presented to the beetles. The frequency of predation was lower among beetles from strains selected for long–duration than among those for short–duration death–feigning. The results indicate the possibility of the evolution of death–feigning under natural selection.
Author Mizumoto, M.
Katayama, K.
Nakashima, A.
Sugita, A.
Miyatake, T.
Takeda, Y.
AuthorAffiliation Faculty of Agriculture, Okayama University, Okayama 700-8530, Japan
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  surname: Miyatake
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  email: miyatake@cc.okayama-u.ac.jp
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  organization: Faculty of Agriculture, Okayama University, Okayama 700-8530, Japan
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  surname: Takeda
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  organization: Faculty of Agriculture, Okayama University, Okayama 700-8530, Japan
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  surname: Nakashima
  fullname: Nakashima, A.
  organization: Faculty of Agriculture, Okayama University, Okayama 700-8530, Japan
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  doi: 10.1023/A:1011196420147
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  doi: 10.1007/978-94-011-3102-5_38
– ident: p_29
SSID ssj0009585
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Snippet Audouin (Araneomophae: Salticidae), was presented to the beetles. The frequency of predation was lower among beetles from strains selected for long–duration...
The adaptation of death-feigning (thanatosis), a subject that has been overlooked in evolutionary biology, was inferred in a model prey-and-predator system. We...
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SubjectTerms Adaptation, Biological - physiology
Animals
Anti-Predator Behaviour
Artificial Selection
Beetles
Behavior, Animal - physiology
Coleoptera
Death
Deception
Defence
Ecological competition
Female
Female animals
Genetic inheritance
Hasarius adansoni
Immobility
Insect behavior
Male
Natural selection
Observation
Predation
Predators
Predatory Behavior - physiology
Quantitative Genetics
Salticidae
Selection, Genetic
Spiders
Spiders - physiology
Tenebrionidae
Thanatosis
Tribolium - physiology
Tribolium castaneum
Title Is death–feigning adaptive? Heritable variation in fitness difference of death–feigning behaviour
URI http://rspb.royalsocietypublishing.org/content/271/1554/2293.abstract?cited-by=yes&legid=royprsb;271/1554/2293
https://api.istex.fr/ark:/67375/V84-87NPWLS2-H/fulltext.pdf
https://www.jstor.org/stable/4142959
https://royalsocietypublishing.org/doi/full/10.1098/rspb.2004.2858
https://www.ncbi.nlm.nih.gov/pubmed/15539355
https://search.proquest.com/docview/17700598
https://search.proquest.com/docview/67067593
https://pubmed.ncbi.nlm.nih.gov/PMC1691851
Volume 271
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