Metabolic Rate Suppression and Maintenance of Flight Muscle Metabolic Capacity during Diapause in Bumble Bee (Bombus impatiens) Queens.

Ariane Rondot, Charles-A Darveau
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Abstract

AbstractThe common eastern bumble bee (Bombus impatiens) queens endure cold winter months by entering a diapause state. During this overwintering period, these animals use stored energy reserves while maintaining a low metabolic rate. This study investigates changes in the metabolic rate of bumble bee queens during diapause-like laboratory conditions and the potential reorganization of the flight muscle metabolic properties during this period. We first confirmed the hypometabolic state of queens during diapause in the laboratory, which lowered their resting metabolic rate to less than 5% of normal resting values. Body mass decreased during diapause, body composition changed where carbohydrates decreased initially, and later protein declined, with a similar trend for lipid content. Using cellular respirometry, we determined the capacity of the flight muscle cells of bumble bee queens to use various metabolic fuels and whether this capacity changes during the progression of diapause to favor stored lipid-derived substrates. Queens showed a low capacity to oxidize the amino acid proline, compared with workers, and their capacity to oxidize all metabolic substrates did not change during a 4-mo diapause period in the laboratory. We also show no detectable ability to oxidize fatty acid by flight muscle mitochondria in this species. The metabolic properties of flight muscle tissue were further characterized using metabolic enzyme activity profiles showing little change during diapause, indicating that profound metabolic suppression is induced without major changes in muscle metabolic phenotypes. Overall, B. impatiens queens undergo diapause while maintaining flight muscle capacity under the conditions used.

大黄蜂(Bombus impatiens)蜂后休眠期代谢率抑制和飞行肌肉代谢能力维持。
摘要常见的东方熊蜂(Bombus impatiens)蜂王通过进入休眠状态来忍受寒冷的冬季。在越冬期间,这些动物会利用储存的能量,同时保持较低的新陈代谢率。本研究调查了大黄蜂蜂王在类似于实验室条件下进入休眠状态时代谢率的变化,以及在此期间飞行肌肉代谢特性的潜在重组。我们首先证实了蜂王在实验室停歇期间的低代谢状态,这使其静息代谢率降低到正常静息值的5%以下。体质量在休眠期下降,身体成分发生变化,碳水化合物最初减少,后来蛋白质减少,脂质含量也有类似趋势。利用细胞呼吸测定法,我们测定了熊蜂蜂后飞行肌肉细胞利用各种代谢燃料的能力,以及这种能力是否会在停歇过程中发生变化,从而有利于储存的脂质衍生底物。与工蜂相比,蜂后氧化氨基酸脯氨酸的能力较低,而且在实验室中4个月的休眠期内,它们氧化所有代谢底物的能力都没有变化。我们还发现,该物种的飞行肌肉线粒体没有氧化脂肪酸的能力。利用代谢酶活性图谱进一步描述了飞行肌肉组织的代谢特性,结果表明在停飞期间几乎没有变化,这表明在肌肉代谢表型没有发生重大变化的情况下,诱导了深层次的代谢抑制。总体而言,在所使用的条件下,无患子蜂王在经历休眠的同时仍能保持飞行肌肉的能力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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