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Thermoregulation and microhabitat use in mountain butterflies of the genus Erebia: importance of fine-scale habitat heterogeneity.厄瑞玻斯属高山蝴蝶的体温调节与微生境利用:精细尺度生境异质性的重要性
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Thermal-safety margins and the necessity of thermoregulatory behavior across latitude and elevation.热安全裕度和跨纬度和海拔的体温调节行为的必要性。
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ATP-driven molecular chaperone machines.由三磷酸腺苷驱动的分子伴侣机器。
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Inducing extra copies of the Hsp70 gene in Drosophila melanogaster increases energetic demand.在黑腹果蝇中诱导 Hsp70 基因的额外拷贝会增加能量需求。
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Daily and seasonal changes in heat exposure and the Hsp70 level of individuals from a field population of Xeropicta derbentina (Krynicki 1836) (Pulmonata, Hygromiidae) in Southern France.法国南部野外种群 Xeropicta derbentina(Krynicki 1836)(Pulmonata,Hygromiidae)个体的热暴露和 Hsp70 水平的日变化和季节变化。
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Organization and expression of the Australian sheep blowfly (Lucilia cuprina) hsp23, hsp24, hsp70 and hsp83 genes.澳大利亚绵羊狂蝇(Lucilia cuprina)hsp23、hsp24、hsp70 和 hsp83 基因的组织与表达。
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Using double-stranded RNA to explore the role of heat shock protein genes in heat tolerance in Bemisia tabaci (Gennadius).利用双链 RNA 技术探索热休克蛋白基因在烟粉虱(Gennadius)耐热性中的作用。
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在炎热的夏日,肉蝇幼虫而非成虫的热休克蛋白上调。

Upregulation of heat-shock proteins in larvae, but not adults, of the flesh fly during hot summer days.

机构信息

Graduate School of Science, Osaka City University, 3-3-138 Sugimoto, Sumiyoshi-ku, Osaka, 558-8585, Japan.

出版信息

Cell Stress Chaperones. 2017 Nov;22(6):823-831. doi: 10.1007/s12192-017-0812-y. Epub 2017 Jun 8.

DOI:10.1007/s12192-017-0812-y
PMID:28597340
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC5655370/
Abstract

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 thermoregulation 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).

摘要

热休克蛋白(HSPs)在生物体暴露于热应激时高度表达。这些 HSPs 被认为在热适应中发挥重要作用,因为它们作为分子伴侣促进适当的蛋白质合成。然而,在野外条件下 HSP 的表达并没有得到太多评估,它们在自然生态环境中的重要性仍然不清楚。我们在肉蝇(Sarcophaga similis)的幼虫和成虫中研究了这一方面。这些幼虫在脊椎动物的尸体或粪便中度过幼虫期;因此,它们的活动性较低,偶尔会暴露在高温下。相比之下,该物种的成虫可以飞行,因此它们的活动性很高。在实验室热休克实验中,大量转录的 Hsps 在幼虫和成虫中均被检测到。在野外,在温度较温和的日子里,幼虫几乎没有或很少产生 HSP,但在高温天气下,Hsp 表达的上调则相当显著。成虫在野外也可能会受到高达 40°C 或更高的热应激。然而,大多数苍蝇表现出很少或几乎没有 Hsp 表达。在野外条件下实验笼中的观察揭示了成虫通过微生境选择进行的行为性体温调节。本研究表明昆虫在克服热应激方面存在个体发育改变的策略;在野外,活动性较低的幼虫使用生理保护来对抗热量(HSP 产生),而活动性较高的成虫则通过行为避免应激(通过微生境选择)。