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首页> 外文期刊>Philosophical Transactions of the Royal Society of London, Series B. Biological Sciences >Complex numerical responses to top-down and bottom-up processes in vertebrate populations
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Complex numerical responses to top-down and bottom-up processes in vertebrate populations

机译:对脊椎动物种群自上而下和自下而上过程的复杂数值响应

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摘要

Population growth rate is determined in all vertebrate populations by food supplies, and we postulate bottom-up control as the universal primary standard. But this primary control system can be overridden by three secondary controls: top-down processes from predators, social interactions within the species and disturbances. Different combinations of these processes affect population growth rates in different ways. Thus, some relationships between growth rate and density can be hyperbolic or even have multiple nodes. We illustrate some of these in marsupial, ungulate and rabbit populations. Complex interactions between food, predators, environmental disturbance and social behaviour produce the myriad observations of population growth in nature, and we need to develop generalizations to classify populations. Different animal groups differ in the combination of these four processes that affect them, in their growth rates and in their vulnerability to extinction. Because conservation and management of populations depend critically on what factors drive population growth, we need to develop universal generalizations that will relieve us from the need to study every single population before we can make recommendations for management. [References: 74]
机译:人口增长率由食物供应决定所有脊椎动物的种群,我们假定自下而上的控制是普遍的主要标准。但是,这个主要控制系统可以被三个次要控制所覆盖:捕食者的自上而下的过程,物种内部的社会互动和干扰。这些过程的不同组合以不同方式影响人口增长率。因此,增长率和密度之间的某些关系可能是双曲线的,甚至具有多个节点。我们在有袋,有蹄类和兔子种群中阐明了其中一些种群。食物,捕食者,环境干扰和社会行为之间的复杂相互作用产生了无数关于自然界人口增长的观察结果,我们需要发展归纳法来对人口进行分类。不同的动物群体在影响它们的这四个过程的组合,生长速度和灭绝的脆弱性方面存在差异。由于种群的保护和管理在很大程度上取决于推动人口增长的因素,因此我们需要发展普遍的概括,这将使我们免于研究每个单独的种群的需要,从而可以提出管理建议。 [参考:74]

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