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High species diversity and turnover in granite inselberg floras highlight the need for a conservation strategy protecting many outcrops

机译:花岗岩Inselberg植物区系的高物种多样性和周转率突显了一种保护许多露头的保护策略的必要性

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摘要

Determining patterns of plant diversity on granite inselbergs is an important task for conservation biogeography due to mounting threats. However, beyond the tropics there are relatively few quantitative studies of floristic diversity, or consideration of these patterns and their environmental, biogeographic, and historical correlates for conservation. We sought to contribute broader understanding of global patterns of species diversity on granite inselbergs and inform biodiversity conservation in the globally significant Southwest Australian Floristic Region (SWAFR). We surveyed floristics from 16 inselbergs (478 plots) across the climate gradient of the SWAFR stratified into three major habitats on each outcrop. We recorded 1,060 species from 92 families. At the plot level, local soil and topographic variables affecting aridity were correlated with species richness in herbaceous (HO) and woody vegetation (WO) of soil‐filled depressions, but not in woody vegetation on deeper soils at the base of outcrops (WOB). At the outcrop level, bioclimatic variables affecting aridity were correlated with species richness in two habitats (WO and WOB) but, contrary to predictions from island biogeography, were not correlated with inselberg area and isolation in any of the three habitats. Species turnover in each of the three habitats was also influenced by aridity, being correlated with bioclimatic variables and with interplot geographic distance, and for HO and WO habitats with local site variables. At the outcrop level, species replacement was the dominant component of species turnover in each of the three habitats, consistent with expectations for long‐term stable landscapes. Our results therefore highlight high species diversity and turnover associated with granite outcrop flora. Hence, effective conservation strategies will need to focus on protecting multiple inselbergs across the entire climate gradient of the region.
机译:由于威胁不断增加,确定花岗岩inselberg上植物多样性的模式是保护生物地理学的一项重要任务。但是,除了热带地区以外,对植物多样性的定量研究相对较少,也很少考虑这些模式及其与环境,生物地理和历史相关的保护因素。我们力求对花岗岩Inselbergs上的全球物种多样性模式有更广泛的了解,并为全球重要的西南澳大利亚植物区(SWAFR)保护生物多样性提供信息。我们调查了SWAFR的气候梯度中16个inselberg(共478个样地)的植物区系,并将其分为每个露头上的三个主要生境。我们记录了92个科的1,060种。在样地水平上,影响干旱的局部土壤和地形变量与土壤充填洼地的草本(HO)和木本植被(WO)的物种丰富度相关,但与露头(WOB)较深土壤的木本植被无关。在露头水平上,影响干旱的生物气候变量与两个生境(WO和WOB)的物种丰富度相关,但与岛屿生物地理学的预测相反,与这三个生境中的任何一个的Inselberg面积和隔离无关。在三个生境中,每个生境的物种更新也受到干旱的影响,与生物气候变量和地块间的地理距离相关,而对于HO和WO生境具有局部地点变量。在露头水平上,物种替代是三个生境中每一个栖息地物种更新的主要组成部分,与对长期稳定景观的期望相一致。因此,我们的结果强调了与花岗岩露头菌群相关的物种多样性和周转率很高。因此,有效的保护策略将需要集中在整个区域的整个气候梯度上保护多个inselberg。

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