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Extreme thermotolerance and behavioral induction of 70-kDa heat shock proteins and their encoding genes in honey bees

机译:蜜蜂中70-kDa热激蛋白及其编码基因的极端耐热性和行为诱导

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摘要

Foraging honey bees frequently leave the hive to gather pollen and nectar for the colony. This period of their lives is marked by periodic extremes of body temperature, metabolic expenditure, and flight muscle activity. Following ecologically relevant episodes of hyperthermia between 33°C and 50°C, heat shock protein 70 (Hsp70) expression and hsp70/hsc70-4 activity in brains of nonflying laboratory-held bees increased by only two to three times baseline at temperatures 46–50°C. Induction was undetectable in thoracic–flight muscles. Yet, thorax hsp70 mRNA (but not hsc70-4 mRNA) levels were up to ten times higher in flight-capable hive bees and foraging bees compared to 1-day-old, flight-incapable bees, while brain hsp70/hsc70-4 mRNA levels were low and varied little among behavioral groups. These data suggest honey bee tissues, especially flight muscles, are extremely thermotolerant. Furthermore, Hsp70 expression in the thoraces of flight-capable bees is probably flight-induced by oxidative and mechanical damage to flight muscle proteins rather than temperature.
机译:觅食蜜蜂经常离开蜂巢,为蜂群采集花粉和花蜜。他们一生的这段时期的特征是体温,代谢消耗和飞行肌肉活动的周期性极端。在33°C至50°C之间发生与生态有关的高温事件之后,在46–46°C的温度下,非飞行实验室饲养蜜蜂的大脑中的热休克蛋白70(Hsp70)表达和hsp70 / hsc70-4活性仅增加了基线的2至3倍。 50℃。在胸腹肌中检测不到诱导。然而,与具有飞行功能的1天龄蜜蜂相比,具有飞行能力的蜂和觅食蜜蜂的胸部hsp70 mRNA(而非hsc70-4 mRNA)水平高十倍,而脑中的hsp70 / hsc70-4 mRNA行为组之间的水平很低,变化很小。这些数据表明,蜜蜂组织,特别是飞行肌肉,具有极高的耐热性。此外,在具有飞行能力的蜜蜂的胸骨中,Hsp70的表达可能是由飞行肌肉蛋白质的氧化和机械损伤而不是温度引起的飞行诱导。

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