Leirs H, Stenseth N C, Nichols J D, Hines J E, Verhagen R, Verheyen W
Danish Pest Infestation Laboratory, Skovbrynet, Lyngby.
Nature. 1997 Sep 11;389(6647):176-80. doi: 10.1038/38271.
Ecology has long been troubled by the controversy over how populations are regulated. Some ecologists focus on the role of environmental effects, whereas others argue that density-dependent feedback mechanisms are central. The relative importance of both processes is still hotly debated, but clear examples of both processes acting in the same population are rare. Key-factor analysis (regression of population changes on possible causal factors) and time-series analysis are often used to investigate the presence of density dependence, but such approaches may be biased and provide no information on actual demographic rates. Here we report on both density-dependent and density-independent effects in a murid rodent pest species, the multimammate rat Mastomys natalensis (Smith, 1834), using statistical capture-recapture models. Both effects occur simultaneously, but we also demonstrate that they do not affect all demographic rates in the same way. We have incorporated the obtained estimates of demographic rates in a population dynamics model and show that the observed dynamics are affected by stabilizing nonlinear density-dependent components coupled with strong deterministic and stochastic seasonal components.
长期以来,生态学一直因种群如何受到调节的争议而困扰。一些生态学家关注环境影响的作用,而另一些人则认为密度依赖反馈机制是核心。这两个过程的相对重要性仍在激烈辩论中,但在同一种群中这两个过程同时起作用的明确例子很少见。关键因素分析(将种群变化与可能的因果因素进行回归)和时间序列分析经常用于调查密度依赖性的存在,但这些方法可能存在偏差,并且无法提供有关实际种群统计学率的信息。在这里,我们使用统计捕获 - 重捕模型报告了一种鼠科啮齿动物害虫物种——多乳鼠(Mastomys natalensis,史密斯,1834年)中的密度依赖和密度独立效应。这两种效应同时发生,但我们也证明它们不会以相同的方式影响所有种群统计学率。我们将获得的种群统计学率估计值纳入了一个种群动态模型,并表明观察到的动态受到稳定的非线性密度依赖成分以及强烈的确定性和随机性季节成分的影响。