Daily energy budgets of avian embryos: the paradox of the plateau phase in egg metabolic rate.

M W Dietz, M van Kampen, M J van Griensven, S van Mourik
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引用次数: 39

Abstract

The metabolic rate of precocial bird eggs reaches a plateau when about 80% of the incubation period has passed. This is unexpected, as in many species the embryo continues to grow and maintenance costs must therefore increase. To investigate this paradox, daily energy budgets were constructed for embryos of four galliform species according to two models that used empirical data on egg metabolic rate and embryo growth. In the first model, embryonic synthesis costs were estimated, with an assumed synthesis efficiency, before calculating the maintenance costs. In the second model, embryonic maintenance was calculated first, and no assumptions were made on the synthesis efficiency. The calculations show that assumptions of the synthesis efficiency had a major impact on the energy budget calculations, because embryonic growth rate was high. During the plateau phase, a galliform embryo allocated energy in favor of its maintenance costs in three ways: by decreasing growth rate, by increasing synthesis efficiency, and by depressing the formation of glycogen. Our study suggests that a reduction in growth rate plays a minor role. An increase of synthesis efficiency is more likely to explain the plateau in energy expenditure, since small increases in synthesis efficiency can lead to great savings on synthesis costs.

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鸟类胚胎的每日能量收支:蛋代谢率平稳期的悖论。
早生鸟蛋的代谢率在孵化期的80%左右后达到一个平稳期。这是出乎意料的,因为在许多物种中,胚胎继续生长,因此维护成本必须增加。为了研究这一悖论,我们利用卵子代谢率和胚胎生长的经验数据,根据两种模型构建了四种镓形动物胚胎的每日能量收支。在第一个模型中,在计算维持成本之前,先估算胚胎合成成本,并假设合成效率。在第二种模型中,首先计算胚胎维持期,不做合成效率的假设。计算表明,由于胚胎生长速率较高,合成效率的假设对能量收支计算有重大影响。在平台期,镓状胚胎以三种方式分配能量以维持其维持成本:降低生长速度,提高合成效率和抑制糖原的形成。我们的研究表明,生长速度的降低起了次要作用。合成效率的提高更有可能解释能量消耗的平稳期,因为合成效率的小幅提高可以导致合成成本的大幅节省。
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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