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More endemic birds occur in regions with stable climate, more plant species and high altitudinal range in China

机译:在具有稳定的气候,更多植物物种和中国高海拔范围的地区发生更多的食物鸟类

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BackgroundGeographical distribution of endemic species and its multiple scale drivers are an important topic in biodiversity conservation, because these species are especially vulnerable to climate change and habitat degradation, and therefore have high conservation priority. Here, for the first time, we simultaneously linked glacial-interglacial climate change, contemporary climate, plant species richness and altitudinal range with endemic bird distribution in China.MethodsOrdinary least squares models and simultaneous autoregressive models were used to assess the associations between endemic bird richness, endemic bird ratio and each explanatory variable. Structural Equation Models were also performed to test the direct and indirect effects of these variables on endemic bird richness and endemic bird ratio.ResultsHigher endemic bird richness and endemic bird ratio occurred in regions with stable glacial-interglacial temperature, i.e., southwest China. Plant species richness and altitudinal range were also positively correlated with endemic bird richness and endemic bird ratio. Glacial-interglacial temperature change, contemporary precipitation, plant species richness and altitudinal range were all included in the best combination of variables for endemic bird richness. Importantly, glacial-interglacial temperature change had strong direct effects on both endemic bird richness and endemic bird ratio, while plant species richness only had a direct effect on endemic bird richness.ConclusionsOur results indicate that endemic birds in China concentrate in southwest regions where there are stable glacial-interglacial temperature, more plant species and larger altitudinal range. Notably, while stable climate has strong direct effects on both endemic bird richness and endemic bird ratio, plant species may affect endemic bird richness through its effect on overall bird species richness. Importantly, the recent anthropogenic activities have also significantly intensified in this region, which would pose huge challenge for biodiversity conservation in China.
机译:背景技术流行物种及其多种规模司机的分布是生物多样性保护中的一个重要课题,因为这些物种特别容易受到气候变化和栖息地降解的影响,因此具有高保优先级。在这里,我们首次将冰川间气候变化,当代气候,植物物种丰富和大陆范围与中国的流行鸟分布相连。机制最少的广场模型和同时自回归模型用于评估流行鸟丰富的协会,流动鸟比和每个解释性变量。还进行了结构方程模型,以测试这些变量对流行禽类丰富性和流行鸟类比率的直接和间接效应。冰川间 - 中间夹层温度稳定的地区,即,中国西南部地区发生了特性鸟类丰富性和地方鸟类比。植物物种丰富性和高度范围也与地方性鸟类丰富性和地方性鸟类比率正相关。冰川 - 中间冰温度变化,现代沉淀,植物物种丰富性和高度范围全部包括在流行鸟丰富的变量的最佳组合中。重要的是,冰川层面温度变化对流行禽类丰富性和流动鸟类的比例有着强烈的直接影响,而植物物种丰富性只对地方性鸟类丰富的直接影响.Conclusour结果表明,中国的流行鸟集中在其中的西南地区稳定的冰川层间温度,植物种类更多,较大的高度范围。值得注意的是,虽然稳定的气候对流行禽类丰富性和流动性鸟类比率强烈直接影响,但植物物种可能会通过其对整体鸟类丰富的影响影响流行性丰富性。重要的是,该地区,最近的人类学活动也会显着加剧,这会对中国生物多样性保护构成巨大挑战。

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