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首页> 外文期刊>PLoS One >Climate change influences on the potential distribution of Dianthus polylepis Bien. ex Boiss. (Caryophyllaceae), an endemic species in the Irano-Turanian region
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Climate change influences on the potential distribution of Dianthus polylepis Bien. ex Boiss. (Caryophyllaceae), an endemic species in the Irano-Turanian region

机译:气候变化对Dianthus Polylepis Bien的潜在分布的影响。 Ex Boiss。 (蛛网苜蓿),伊朗镇南亚地区的地方性物种

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Endemic and restricted-range species are considered to be particularly vulnerable to the effects of environmental change, which makes assessing likely climate change effects on geographic distributions of such species important to the development of integrated conservation strategies. Here, we determined distributional patterns for an endemic species of Dianthus ( Dianthus polylepis ) in the Irano-Turanian region using a maximum-entropy algorithm. In total, 70 occurrence points and 19 climatic variables were used to estimate the potential distributional area under current conditions and two future representative concentration pathway (RCP2.6 and RCP8.5) scenarios under seven general circulation models for 2050. Mean diurnal range, iso-thermality, minimum temperature of coldest quarter, and annual precipitation were major factors that appeared to structure the distribution of the species. Most current potential suitable areas were located in montane regions. Model transfers to future-climate scenarios displayed upward shifts in elevation and northward shifts geographically for the species. Our results can be used to define high-priority areas in the Irano-Turanian region for conservation management plans for this species and can offer a template for analyses of other endangered and threatened species in the region.
机译:流行和限制范围种类被认为特别容易受到环境变化影响的影响,这使得评估对这些物种的地理分布的影响可能对综合保护战略的发展重要的影响。在此,我们使用最大熵算法确定了伊朗 - 翼岛地区的二角石(Dianthus Polylepis)的流行病的分配模式。总共70个发生点和19个气候变量用于估计当前条件下的潜在分布区域,以及2050年的七个一般循环模型下的两个未来代表浓度途径(RCP2.6和RCP8.5)方案。平均昼夜范围,ISO - 嗜热,最低季度的最低温度和年降水是似乎构建物种分布的主要因素。大多数电流潜在的合适区域位于蒙太金属地区。模型转移到未来气候情景的升高显示在地理位置的高度和向北移动。我们的成果可用于在伊朗图兰地区定义高优先级地区,以获得该物种的保护管理计划,并可以提供该地区其他濒危和受威胁物种的模板。

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