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可变资源环境中的生存与生产

Survival and production in variable resource environments.

作者信息

Muller E B, Nisbet R M

机构信息

Department of Ecology, Evolution and Marine Biology, University of California, Santa Barbara, CA 93106-9610, USA.

出版信息

Bull Math Biol. 2000 Nov;62(6):1163-89. doi: 10.1006/bulm.2000.0203.

Abstract

A dynamic energy budget (DEB) model describes the rates at which organisms assimilate and utilize energy from food for maintenance, growth, reproduction and development. We study the dynamic behavior of one particular DEB model, Kooijman's kappa-rule model, whose key assumption is that somatic and reproductive tissues are competing for energy. We assume an environment in which the food density fluctuates either periodically or stochastically (pink noise). Both types of fluctuations stimulate growth; the magnitude of the (average) increase in size depends on both the strength and duration of the fluctuations. In a stochastic environment, the risk of mortality due to starvation increases with increasing fluctuation intensity. The mean lifespan is also a function of the model parameter kappa characterizing the partitioning of energy between somatic and reproductive tissues. Organisms committing a large fraction of resources to reproduction endure periods of food shortage relatively well. The effects of food fluctuations on reproduction are complex. With stochastic food, reproduction in survivors increases with increasing fluctuation intensities, but lifetime reproduction decreases. Periodic fluctuations may enhance reproduction, depending on the value of kappa. Thus, a variable food supply stimulates growth, increases mortality and may enhance reproduction, depending on life history.

摘要

动态能量收支(DEB)模型描述了生物体从食物中同化和利用能量以维持、生长、繁殖和发育的速率。我们研究了一个特定的DEB模型——库伊曼的κ规则模型的动态行为,其关键假设是体细胞组织和生殖组织在争夺能量。我们假设在一个食物密度周期性或随机性(粉红噪声)波动的环境中。这两种类型的波动都会刺激生长;(平均)体型增加的幅度取决于波动的强度和持续时间。在随机环境中,因饥饿导致死亡的风险会随着波动强度的增加而增加。平均寿命也是模型参数κ的函数,κ表征了能量在体细胞组织和生殖组织之间的分配。将很大一部分资源用于繁殖的生物体相对较好地忍受食物短缺期。食物波动对繁殖的影响很复杂。在食物随机波动的情况下,幸存者的繁殖随着波动强度的增加而增加,但终生繁殖量会减少。周期性波动可能会促进繁殖,这取决于κ的值。因此,可变的食物供应会刺激生长、增加死亡率,并且可能会促进繁殖,这取决于生活史。

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