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首页> 外文期刊>Global Ecology and Conservation >Alpha and beta diversity of birds along elevational vegetation zones on the southern slope of Altai Mountains: Implication for conservation
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Alpha and beta diversity of birds along elevational vegetation zones on the southern slope of Altai Mountains: Implication for conservation

机译:阿尔泰山南坡海拔植被带鸟类的α和β多样性:对保护的意义

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1 Understanding species diversity patterns is important for conservation planning. We studied birds’ alpha and beta diversity along vegetation gradients in three watersheds in the Altai Mountains, a global biodiversity hotspot; and tested whether environment-based hypotheses could explain these patterns. 2 In Daxiaodonggou (DXDG), Jiadengyu (JDY) and Liangheyuan (LHY) watersheds, alpha diversity varied strongly along elevational vegetation zones. In DXDG, bird species richness displayed a double-hump pattern and increased slightly at the highest elevations. In JDY and LHY, bird species richness increased gradually with elevation but dipped in certain vegetation zones. The Shannon-Wiener index and Simpson's index showed consistent patterns in each watershed, and were higher in forest habitats. Bird species richness was affected by Human Footprint Index, elevation, temperate and precipitation in LHY, but only affected by Compound Topographic Index in JDY, and only affected by elevation in DXDG. 3 High beta diversity and high turnover component were found in all of the three watersheds, revealing distinct bird assemblages between various vegetation types. In contrast to previous studies, beta diversity of the Altai Mountains was not lower than those reported in tropical mountains. Simplified models by Canonical Correspondence Analysis explained 34–41% variation of bird species composition along vegetation zones among three watersheds, and environmental factors in the three models were inconsistent. Mantel test revealed beta diversity of the bird communities were lower in the two vegetation zones with more similar environmental conditions. 4 The variety of bird diversity patterns and various influential environmental factors among longitudinally-separated watersheds in the Altai Mountains indicate the complexity of environmental filtering mechanics. Though some vegetation zones contain higher bird species richness than others, high species composition turnover in the whole area suggests conservation strategies should consider multiple watersheds and multiple vegetation types in the Altai Mountains when aiming to conserve avian diversity.
机译:1了解物种多样性模式对于保护规划很重要。我们研究了全球生物多样性热点阿尔泰山三个流域中沿植被梯度的鸟类α和β多样性。并测试了基于环境的假设是否可以解释这些模式。 2在大晓东沟(DXDG),嘉登yu(JDY)和两河源(LHY)流域,阿尔法多样性沿海拔植被带变化很大。在DXDG中,鸟类物种的丰富度表现出双峰模式,并且在最高海拔时略有增加。在JDY和LHY,鸟类物种丰富度随着海拔的升高而逐渐增加,但在某些植被带中有所下降。香农-维纳(Shannon-Wiener)指数和辛普森(Simpson)指数在每个流域显示出一致的模式,并且在森林栖息地中较高。鸟类物种丰富度受人类足迹指数,LHY中海拔,温度和降水的影响,但仅受JDY中复合地形指数的影响,而仅受DXDG中海拔的影响。 3在这三个流域中都发现了高β多样性和高周转成分,揭示了不同植被类型之间独特的鸟类聚集。与先前的研究相比,阿尔泰山的β多样性不低于热带山区的报告。通过标准对应分析简化的模型解释了三个流域之间沿植被带的鸟类物种组成的变化为34-41%,并且三个模型中的环境因素不一致。壁炉架测试表明,在两个植被区中,环境条件相似的鸟类群落的β多样性较低。 4阿尔泰山区纵向分隔的流域中鸟类多样性格局的变化和各种影响环境的因素表明环境过滤机制的复杂性。尽管某些植被带的鸟类物种丰富度高于其他植被带,但整个地区的物种组成转换率很高,这表明在保护鸟类的多样性时,保护策略应考虑阿尔泰山区的多个流域和多种植被类型。

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