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饥饿和再投喂条件下大型溞(Daphnia magna Straus)的能量分配

Energy allocation in the cladoceran Daphnia magna Straus, under starvation and refeeding.

作者信息

Bradley M C, Perrin N, Calow P

机构信息

Department of Animal and Plant Sciences, University of Sheffield, Western Bank, S10 2QT, Sheffield, UK.

出版信息

Oecologia. 1991 May;86(3):414-418. doi: 10.1007/BF00317610.

Abstract

Models incorporating the energetics of individual daphnids (Cladocera) have been developed to predict the effect of environmental variables, particularly food availability, on population dynamics. One of them, that of Kooijman (1986), assumes that all assimilated energy enters a storage compartment prior to use in production and metabolism, and that under starvation the stores are used to support maintenance, reproduction and somatic growth, in that order of priority. This predicts that, under starvation, reproduction and growth will continue for a time, and that after they cease death will be immediate. Another model, that of McCauley et al. (1990), assumes that assimilated energy is used directly for maintenance and production, and that stores are accumulated to support maintenance metabolism under starvation. This predicts that growth and reproduction should cease immediately upon starvation and that death will not be immediate. We have carried out laboratory experiments, manipulating starvation time, on Daphnia magna to distinguish between these two models. The results support features of both models in that reproduction, but not growth, ceases upon starvation. We therefore developed a third model in which both maintenance and growth are supported from stores under starvation, with maintenance taking priority over growth under these conditions.

摘要

已开发出包含个体水蚤(枝角类)能量学的模型,以预测环境变量,尤其是食物可利用性对种群动态的影响。其中一个模型是库伊曼(1986年)提出的,该模型假设所有同化能量在用于生产和代谢之前先进入一个储存区,并且在饥饿状态下,储存的能量按该优先顺序用于维持、繁殖和体细胞生长。这预测出,在饥饿状态下,繁殖和生长会持续一段时间,并且在它们停止后死亡将立即发生。另一个模型是麦考利等人(1990年)提出的,该模型假设同化能量直接用于维持和生产,并且储存能量是为了在饥饿状态下支持维持代谢而积累的。这预测出饥饿时生长和繁殖应立即停止,且死亡不会立即发生。我们对大型溞进行了实验室实验,控制饥饿时间,以区分这两种模型。结果支持了两种模型的特征,即饥饿时繁殖停止,但生长未停止。因此,我们开发了第三个模型,在该模型中,饥饿时维持和生长均由储存能量支持,在这些条件下维持比生长具有更高优先级。

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