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首页> 外文期刊>The Journal of Experimental Biology >Muscle biochemistry and the ontogeny of flight capacity during behavioral development in the honey bee, Apis mellifera
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Muscle biochemistry and the ontogeny of flight capacity during behavioral development in the honey bee, Apis mellifera

机译:蜜蜂Apis mellifera行为发育过程中的肌肉生物化学和飞行能力的个体发育

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摘要

A fundamental issue in physiology and behavior is underlie major behavioral shifts in organisms as they transitions are common in nature and include the age-related switch from nest/hive work to foraging in social insects such as honey bees (understanding the functional and genetic mechanisms that adopt new environments or life history tactics. Such). Because of their experimental Apis mellifera tractability, recently sequenced genome and well understood biology, honey bees are an ideal model system for integrating molecular, genetic, physiological and sociobiological perspectives to advance understanding of behavioral and life history transitions. When honey bees (Apis mellifera) transition from hive work to foraging, their flight muscles undergo changes Apis mellifera that allow these insects to attain the highest rates of flight muscle metabolism and power output ever recorded in the animal kingdom. Here, we review research to date showing that honey bee flight muscles undergo significant changes in biochemistry and gene expression and that these changes accompany a significant increase in the capacity to generate metabolic and aerodynamic power during flight. It is likely that changes in muscle gene expression, biochemistry, metabolism and functional capacity may be driven primarily by behavior as opposed to age, as is the case for changes in honey bee brains.
机译:生理和行为方面的一个基本问题是生物体的主要行为转变,因为它们在自然界很常见,并且包括与年龄相关的从巢/蜂巢工作向觅食的转变,例如蜜蜂在社交昆虫中觅食(了解功能和遗传机制,采用新的环境或生活史策略。由于蜜蜂具有实验性的蜜蜂可扩展性,最近已测序的基因组和众所周知的生物学特性,蜜蜂是整合分子,遗传,生理和社会生物学观点以增进对行为和生活史转变的理解的理想模型系统。当蜜蜂(蜜蜂)从蜂巢工作转变为觅食时,蜜蜂的飞行肌肉会发生蜜蜂蜜蜂的变化,这使这些昆虫能够获得有史以来动物界最高的飞行肌肉新陈代谢率和功率输出。在这里,我们回顾了迄今为止的研究,这些研究表明蜜蜂的飞行肌肉在生化和基因表达方面发生了显着变化,并且这些变化伴随飞行过程中产生代谢和空气动力的能力显着增加。蜜蜂基因变化的情况可能是肌肉的基因表达,生物化学,新陈代谢和功能能力的变化可能主要由行为而非年龄驱动。

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