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ID 57364
フルテキストURL
著者
Miyatake, Takahisa Department of Evolutionary Ecology, Graduate School of Environmental and Life ScienceOkayama University ORCID Kaken ID publons researchmap
Matsumura, Kentarou Department of Evolutionary Ecology, Graduate School of Environmental and Life ScienceOkayama University
Kitayama, Ryota Department of Evolutionary Ecology, Graduate School of Environmental and Life ScienceOkayama University
Otsuki, Keiichi Faculty of Computer Science and Engineering Kyoto Sangyo University
Ji, Yuhao Department of Evolutionary Ecology, Graduate School of Environmental and Life ScienceOkayama University
Fujisawa, Ryusuke School of Computer Science and Systems EngineeringKyushu Institute of Technology
Nagaya, Naohisa Faculty of Computer Science and Engineering Kyoto Sangyo University
抄録
Tonic immobility (TI) is an effective anti-predator strategy. However, long immobility status on the ground increases the risk of being eaten by predators, and thus insects must rouse themselves when appropriate stimulation is provided. Here, the strength of vibration causing arousal from the state of TI was examined in strains artificially selected for longer duration of TI (L-strains: long sleeper) in a beetle. We provided different strengths of vibration stimuli to the long sleepers in Tribolium castaneum. Although immobilized beetles were never awakened by the stimuli from 0.01 to 0.12 mm in amplitude, almost of the beetles were aroused from immobilized status by the stimulus at 0.21 mm. There was a difference in sensitivity of individuals when the stimuli of 0.14 mm and 0.18 mm were provided. F2 individuals were also bred by crossing experiments of the strains selected for shorter and longer duration of TI. The arousal sensitivity to vibration was well separated in the F2 individuals. A positive relationship was observed between the duration of TI and the vibration amplitude, suggesting that immobilized beetles are difficult to arouse from a deep sleep, while light sleepers are easily aroused by even small vibrations. The results indicate a genetic basis for sensitivity to arousal from TI.
キーワード
Beetle
Crossing experiment
Death feigning
Selection experiment
Thanatosis
Tribolium
備考
This is an article published by Springer Nature
発行日
2019-06-21
出版物タイトル
Behavior Genetics
49巻
5号
出版者
Kluwer Academic/Plenum
開始ページ
478
終了ページ
483
ISSN
00018244
NCID
AA00558621
資料タイプ
学術雑誌論文
言語
英語
OAI-PMH Set
岡山大学
論文のバージョン
author
PubMed ID
DOI
関連URL
isVersionOf https://doi.org/10.1007/s10519-019-09962-x
Citation
Miyatake, T., Matsumura, K., Kitayama, R. et al. Behav Genet (2019) 49: 478. https://doi.org/10.1007/s10519-019-09962-x
助成機関名
JSPS