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动态能量预算中生长与繁殖分配对生活史的影响。

Life history implications of allocation to growth versus reproduction in dynamic energy budgets.

作者信息

Lika Konstadia, Kooijman Sebastiaan A L M

机构信息

Department of Biology, University of Crete, GR-71409, Iraklion, Crete, Greece.

出版信息

Bull Math Biol. 2003 Sep;65(5):809-34. doi: 10.1016/S0092-8240(03)00039-9.

Abstract

We compare the implications of determinate vs. indeterminate growth of a parthenogenetic iteroparous ectotherm at constant food density in the context of the dynamic energy budget theory, which specifies the tight links between life history traits, such as feeding, aging, growth and reproduction. We do a comparative analysis using, as measure of fitness, the life span reproduction, the population growth rate, and the conversion efficiency of food to biomass. When extrinsic mortality is constant, indeterminate growth cannot maximize fitness if measured by the population growth rate or the conversion efficiency, except when mortality is low, in which case both types of animals are similar. If the fitness measure is life span reproduction, indeterminate growth maximizes fitness even with constant mortality, provided it is not very high. When mortality decreases with size, indeterminate growth maximizes fitness for almost all measures of fitness. Finally, we suggest an evolutionary link between allocation strategies and expected life span. In populations of long living species, each type of animal can establish in the population of the other. In populations of short living species, determinate growers can invade, and displace, a population of indeterminate ones. However, when the mortality risk of organisms with small size is much higher than those of large size, indeterminate growers can be superior.

摘要

在动态能量平衡理论的背景下,我们比较了孤雌生殖的多次生殖变温动物在食物密度恒定的情况下,确定性生长与不确定性生长的影响,该理论明确了诸如摄食、衰老、生长和繁殖等生活史特征之间的紧密联系。我们进行了一项比较分析,以寿命繁殖、种群增长率和食物转化为生物量的效率作为适合度的衡量指标。当外在死亡率恒定时,如果以种群增长率或转化效率来衡量,不确定性生长无法使适合度最大化,除非死亡率很低,在这种情况下两种动物类型相似。如果适合度衡量指标是寿命繁殖,即使死亡率恒定,只要不是非常高,不确定性生长就能使适合度最大化。当死亡率随体型减小而降低时,对于几乎所有适合度衡量指标,不确定性生长都能使适合度最大化。最后,我们提出了分配策略与预期寿命之间的进化联系。在长寿物种的种群中,每种动物类型都能在另一种动物的种群中立足。在短寿物种的种群中,确定性生长者能够入侵并取代不确定性生长者的种群。然而,当小型生物的死亡风险远高于大型生物时,不确定性生长者可能更具优势。

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