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The effect of increased ground-level habitat complexity on mouse population dynamics

机译:地面栖息地复杂性增加对小鼠种群动态的影响

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We investigated experimentally the influence of habitat structure on the population dynamics of house mice. Three habitat types were used. In one, dense stands of regenerating cypress pine were felled and left in situ to cover at least 40% of experimental plots, providing high complexity at ground level; in another, dense stands of regenerating pine were left intact, providing low complexity at ground level; in the third, open grassland adjacent to dense stands of regenerating pine also provided low complexity at ground level. Mouse populations occurred at higher densities in felled pine plots compared with both the standing pine and grassland plots, consistent with the hypothesis that the presence of increased habitat complexity at ground level reduced the impact of predation. Even though populations responded to the felled pine, they dropped to very low densities over winter, suggesting that the habitat was still marginal for the persistence of mice, probably due to a lack of food. The results are discussed with reference to their implications for the influence that habitat structure may have on the impact of introduced predators on native species. [References: 40]
机译:我们实验研究了栖息地结构对家鼠种群动态的影响。使用了三种栖息地类型。其中之一是,将茂密的再生柏松砍伐,并留在原地,以覆盖至少40%的试验田,从而使地面高度复杂。在另一处,茂密的再生松林原封不动,在地面上的复杂性较低。第三,邻近茂密的再生松林的开阔草地在地面上也降低了复杂性。与站立的松树和草原地块相比,在砍伐的松树地块中小鼠种群的密度更高,这与以下假设相一致:在地面上增加的栖息地复杂性降低了捕食的影响。尽管种群对砍伐的松树做出了反应,但他们在冬季的密度下降到很低的水平,这表明栖息地对于老鼠的持久性仍然处于边缘状态,这可能是由于缺乏食物所致。讨论了这些结果对栖息地结构可能对引进的捕食者对本地物种的影响的影响的含义。 [参考:40]

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