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The influence of climatic legacies on the distribution of dryland biocrust communities

机译:气候遗传对旱地戏剧社区分布的影响

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Predicting the distribution of biocrust species, mosses, lichens and liverworts associated with surface soils is difficult, but climatic legacies (changes in climate over the last 20 k years) can improve our prediction of the distribution of biocrust species. To provide empirical support for this hypothesis, we used a combination of network analyses and structural equation modelling to identify the role of climatic legacies in predicting the distribution of ecological clusters formed by species of mosses, lichens and liverworts using data from 282 large sites distributed across 0.6 million km(2) of eastern Australia. Two ecological clusters contained 87% of the 120 moss, lichen and liverwort species. Both clusters contained lichen, moss and liverwort species, but were dominated by different families. Sites where the air temperature increased the most over 20k years (positive temperature legacies) were associated with reductions in the relative abundance of species from the lichen (Peltulaceae and Teloschistaceae) and moss (Bryaceae) families (Cluster A species), greater groundstorey plant cover and lower soil pH. Sites where precipitation has increased over the past 20k years (positive precipitation legacy) were associated with increases in the relative abundance of lichen (Cladoniaceae, Lecideaceae and Thelotremataceae) and moss (Pottiaceae) families (Cluster B species) and lower levels of soil pH. Sites where temperatures have increased the most in the past 20k years suppressed the negative effects of plant cover on Cluster B by reducing plant cover. Increased intensity of grazing suppressed the negative effect of soil pH and the positive effect of soil carbon, on the relative abundance of Cluster B taxa. Finally, increasing temperature and precipitation legacies reduced the negative effect of soil pH on Cluster B. Understanding of the importance of climatic legacies improves our ability to predict how biocrust assemblies might respond to ongoing global environmental change associated with increasing land use intensification, increasing temperature and reduced rainfall.
机译:预测与地面土壤相关的生物化物种,苔藓,地衣和肝脏的分布是困难的,但气候遗址(最近20 k年的气候变化)可以改善我们对生物化物种分布的预测。为了提供对该假设的实证支持,我们使用了网络分析和结构方程模型的组合来确定气候遗传群中的作用,以预测使用来自分布的282个大站点的数据的数据来预测由苔藓,地衣和利物草种类形成的生态簇的分布澳大利亚东部的60万公里(2)公里。两种生态集群含有120元,地衣和肝徽物种的87%。两种簇都包含地衣,苔藓和利物狼种类,但由不同的家庭主导。空气温度增加到20多千年(阳性温度遗传)的遗址与地衣(Peltulaceae和Teloschastaceae)和苔藓(Bryaceae)家族(群体)的相对丰富的物种的减少有关,更大的地下室植物覆盖和降低土壤pH值。在过去的20K年(阳性降水遗留)在过去的20千年(阳性沉淀遗产)增加的遗址与地衣(Cladoniaceae,Lecideaee和Thotremataceae)和苔藓(Pottiacee)家族(群集B种)和较低水平的土壤pH水平的增加有关。在过去的20K年里,温度增加的遗址抑制了通过还原植物覆盖物抑制了植物盖对群体B上的负面影响。增加的放牧强度抑制了土壤pH的负面影响和土壤碳的积极作用,对B簇的相对丰度。最后,增加温度和降水遗传术减少了土壤pH对集群的负面影响B.了解气候遗产的重要性,提高了我们预测生物养殖集中的能力,这些能力如何应对与增加土地利用增强,增加温度和增加的全球环境变化。降雨量减少。

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