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Upregulation of heat-shock proteins in larvae, but not adults, of the flesh fly during hot summer days
by
Goto, Shin G.
, Harada, Eri
in
Adults
/ Animals
/ Biochemistry
/ Biomedical and Life Sciences
/ Biomedicine
/ Cancer Research
/ Carrion
/ Cell Biology
/ Chaperones
/ Chemical synthesis
/ Ecological monitoring
/ Exposure
/ Gene Expression Regulation - genetics
/ Habitats
/ Heat
/ Heat shock proteins
/ Heat-Shock Proteins - genetics
/ Heat-Shock Response - genetics
/ High temperature
/ Hot Temperature
/ Immunology
/ Insect Proteins - genetics
/ Insects
/ Larva - genetics
/ Larva - physiology
/ Larvae
/ Microenvironments
/ Microhabitats
/ Neurosciences
/ Ontogeny
/ Original Paper
/ Protein biosynthesis
/ Protein synthesis
/ Sarcophagidae - genetics
/ Sarcophagidae - physiology
/ Thermal stress
/ Thermoregulation
/ Transcription
/ Up-regulation
/ Vertebrates
2017
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Upregulation of heat-shock proteins in larvae, but not adults, of the flesh fly during hot summer days
by
Goto, Shin G.
, Harada, Eri
in
Adults
/ Animals
/ Biochemistry
/ Biomedical and Life Sciences
/ Biomedicine
/ Cancer Research
/ Carrion
/ Cell Biology
/ Chaperones
/ Chemical synthesis
/ Ecological monitoring
/ Exposure
/ Gene Expression Regulation - genetics
/ Habitats
/ Heat
/ Heat shock proteins
/ Heat-Shock Proteins - genetics
/ Heat-Shock Response - genetics
/ High temperature
/ Hot Temperature
/ Immunology
/ Insect Proteins - genetics
/ Insects
/ Larva - genetics
/ Larva - physiology
/ Larvae
/ Microenvironments
/ Microhabitats
/ Neurosciences
/ Ontogeny
/ Original Paper
/ Protein biosynthesis
/ Protein synthesis
/ Sarcophagidae - genetics
/ Sarcophagidae - physiology
/ Thermal stress
/ Thermoregulation
/ Transcription
/ Up-regulation
/ Vertebrates
2017
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Upregulation of heat-shock proteins in larvae, but not adults, of the flesh fly during hot summer days
by
Goto, Shin G.
, Harada, Eri
in
Adults
/ Animals
/ Biochemistry
/ Biomedical and Life Sciences
/ Biomedicine
/ Cancer Research
/ Carrion
/ Cell Biology
/ Chaperones
/ Chemical synthesis
/ Ecological monitoring
/ Exposure
/ Gene Expression Regulation - genetics
/ Habitats
/ Heat
/ Heat shock proteins
/ Heat-Shock Proteins - genetics
/ Heat-Shock Response - genetics
/ High temperature
/ Hot Temperature
/ Immunology
/ Insect Proteins - genetics
/ Insects
/ Larva - genetics
/ Larva - physiology
/ Larvae
/ Microenvironments
/ Microhabitats
/ Neurosciences
/ Ontogeny
/ Original Paper
/ Protein biosynthesis
/ Protein synthesis
/ Sarcophagidae - genetics
/ Sarcophagidae - physiology
/ Thermal stress
/ Thermoregulation
/ Transcription
/ Up-regulation
/ Vertebrates
2017
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Upregulation of heat-shock proteins in larvae, but not adults, of the flesh fly during hot summer days
Journal Article
Upregulation of heat-shock proteins in larvae, but not adults, of the flesh fly during hot summer days
2017
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Overview
Heat-shock proteins (HSPs) are highly expressed when organisms are exposed to thermal stresses. The HSPs are considered to play significant roles in thermal adaptation because they function as molecular chaperones facilitating proper protein synthesis. The expression of HSPs under field conditions, however, has not been evaluated much, and their importance, based on the ecological contexts in nature, is still unclear. We investigated this aspect in the larvae and adults of the flesh fly, Sarcophaga similis. These larvae spend their larval life in the carrion or faeces of vertebrates; therefore, they are less mobile and are occasionally exposed to high temperature. In contrast, the adults of this species can fly and, therefore, they are highly mobile. Massive transcription of Hsps was detected both in the larvae and adults in a laboratory heat-shock experiment. The larvae in the field showed no or less Hsp production on thermally mild days, whereas considerable upregulation of Hsp expression was detected on days with high temperature. The adults can also be exposed to thermal stress as high as 40 °C or higher in the field. However, most of the flies showed no or less Hsp expression. The observations in the experimental cage under field conditions revealed behavioural thermorégulation of adults through microhabitat selection. The present study demonstrates ontogenetic alteration of the strategy to overcome thermal stress in an insect; in the field, less mobile larvae use physiological protection against heat (HSP production), whereas highly mobile adults avoid the stress behaviourally (through microhabitat selection).
Publisher
Springer,Springer Netherlands,Springer Nature B.V
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