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首页> 外文期刊>Proceedings of the Royal Society. Biological sciences >Spare capacity and phenotypic flexibility in the digestive system of a migratory bird: defining the limits of animal design
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Spare capacity and phenotypic flexibility in the digestive system of a migratory bird: defining the limits of animal design

机译:候鸟消化系统的备用能力和表型灵活性:确定动物设计的局限性

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Flexible phenotypes enable animals to live in environments that change over space and time, and knowing the limits to and the required time scale for this flexibility provides insights into constraints on energy and nutrient intake, diet diversity and niche width. We quantified the level of immediate and ultimate spare capacity, and thus the extent of phenotypic flexibility, in the digestive system of a migratory bird in response to increased energy demand, and identified the digestive constraints responsible for the limits on sustained energy intake. Immediate spare capacity decreased from approximately 50% for birds acclimated to relatively benign temperatures to less than 20% as birds approached their maximum sustainable energy intake. Ultimate spare capacity enabled an increase in feeding rate of approximately 126% as measured in birds acclimated for weeks at 2298C compared with t218C. Increased gut size and not tissue-specific differences in nutrient uptake or changes in digestive efficiency or retention time were primarily responsible for this increase in capacity with energy demand, and this change required more than 1-2 days. Thus, the pace of change in digestive organ size may often constrain energy intake and, for birds, retard the pace of their migration.
机译:灵活的表型使动物能够生活在随时间和空间变化的环境中,了解这种灵活性的局限性和所需的时间尺度,可以洞悉能量和营养摄入,饮食多样性和生态位宽度的限制。我们量化了候鸟的消化系统中即时和最终备用能力的水平,以及表型灵活性的程度,以响应不断增加的能量需求,并确定造成持续能量摄入限制的消化系统限制因素。当家禽接近其最大可持续能量摄入量时,其即时备用容量从适应环境温度相对良好的家禽的约50%降至不足20%。与t218C相比,在2298C适应数周的家禽中测得的最终备用容量可使饲喂率提高约126%。肠道大小的增加而不是营养摄取的组织特异性差异或消化效率或保留时间的变化造成的,这主要是由于能量需求导致容量增加的原因,这种变化需要超过1-2天。因此,消化器官大小变化的速度通常会限制能量的摄入,对鸟类而言,会阻碍其迁移的速度。

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