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首页> 外文期刊>Australian Journal of Zoology >Influence of rainfall on population dynamics and survival of a threatened rodent (Pseudomys novaehollandiae) under a drying climate in coastal woodlands of south-eastern Australia
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Influence of rainfall on population dynamics and survival of a threatened rodent (Pseudomys novaehollandiae) under a drying climate in coastal woodlands of south-eastern Australia

机译:降雨对澳大利亚东南部沿海林地的干燥气候下威胁啮齿动物(假象Novaehollandiae)的人口动力学和生存

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摘要

In Mediterranean systems, such as south-east Australia, predictions of climate change including lower rainfall and extended drought, threaten vulnerable mammal species. We investigated the relationship between rainfall and population dynamics for a native rodent at risk of extinction, the New Holland mouse (Pseudomys novaehollandiae). In the eastern Otways, the species was significantly influenced by rainfall, exhibiting a population irruption (15-20 individuals ha(-1)) following six years of above-average rainfall and a precipitous decline to site extinction during subsequent drought. The decline was predominantly related to loss of adults before and during breeding seasons, together with an apparent decrease in juvenile survival. Population abundance was positively correlated with a rainfall lag of 0-9 months. We propose that the response of this omnivore to high rainfall was mediated through increased productivity and that rainfall decline resulted in resource depletion and population decline. Under a drying climate the direct impacts of rainfall decline will continue. However management of other threats may increase the species' resilience. Burning to provide optimal successional vegetation, protection of refugia, and predator control are priorities. However, burning should be avoided during drought, as the likelihood of local extinctions is substantial.
机译:在地中海系统中,如东南澳大利亚,预测气候变化,包括降雨量下降和延长的干旱,威胁弱势症状物种。我们调查了对天然啮齿动物的降雨与人口动态之间的关系,该靶向灭绝风险,新的荷兰小鼠(Pseudomys Novaehlalandiae)。在东部左右,物种受降雨的显着影响,六年后六年的人口灌溉(15-20人HA(-1)),在随后的干旱期间急剧下降到现场灭绝。这种下降主要与繁殖季节之前和期间的成人丧失有关,以及少年存活的表观降低。人口丰富与0-9个月的降雨滞后呈正相关。我们建议通过提高生产率和降雨下降导致资源枯萎和人口下降介导对高降雨的响应。在干燥气候下,降雨量下降的直接影响将继续下降。但是,其他威胁的管理可能会增加物种的弹性。燃烧为提供最佳的继承植被,保护避难所,以及捕食者控制是优先事项。然而,在干旱期间应该避免燃烧,因为当地灭绝的可能性很大。

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