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Energy Reallocation to Breeding Performance through Improved Nest Building in Laboratory Mice

机译:通过改良小鼠筑巢技术将能量重新分配至育种性能

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摘要

Mice are housed at temperatures (20-26°C) that increase their basal metabolic rates and impose high energy demands to maintain core temperatures. Therefore, energy must be reallocated from other biological processes to increase heat production to offset heat loss. Supplying laboratory mice with nesting material may provide sufficient insulation to reduce heat loss and improve both feed conversion and breeding performance. Naïve C57BL/6, BALB/c, and CD-1breeding pairs were provided with bedding alone, or bedding supplemented with either 8g of Enviro-Dri, 8g of Nestlets, for 6 months. Mice provided with either nesting material built more dome-like nests than controls. Nesting material improved feed efficiency per pup weaned as well as pup weaning weight. The breeding index (pups weaned/dam/week) was higher when either nesting material was provided. Thus, the sparing of energy for thermoregulation of mice given additional nesting material may have been responsible for the improved breeding and growth of offspring.
机译:将小鼠饲养在温度较高(20-26°C)的环境中,该温度会提高其基础代谢率,并需要较高的能量来维持核心温度。因此,必须从其他生物过程中重新分配能量以增加热量产生以抵消热量损失。向实验室小鼠提供嵌套材料可以提供足够的隔热效果,以减少热量损失并提高饲料转化率和繁殖性能。幼稚的C57BL / 6,BALB / c和CD-1育种对单独提供床上用品,或补充8g Enviro-Dri,8g Nestlets的床上用品,为期6个月。带有任一种嵌套材料的小鼠比控件构建的圆顶状嵌套更多。套料提高了每只幼仔断奶的饲料效率以及幼仔断奶的重量。当提供任何一种筑巢材料时,繁殖指数(断奶仔猪/坝/周)更高。因此,给予额外的筑巢材料以节省小鼠的体温调节可能是改善后代繁殖和生长的原因。

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