Fine-scale phylogenetic diversity gradients support the Antarctic geothermal refugia hypothesis

IF 1.8 4区 地球科学 Q3 ENVIRONMENTAL SCIENCES
William S. Pearman, Clare I.M. Adams, Maria Monteiro, Antonio Quesada, Ceridwen I. Fraser
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引用次数: 0

Abstract

The possible role of geothermal areas, such as volcanoes, in fostering biodiversity in Antarctica has received considerable recent attention. Under a geothermal refugia hypothesis, diverse life could be supported near or at geothermal sites, and we should see decreasing diversity and/or patterns of nestedness moving away from ‘hotspots’. Although there is evidence that geothermal areas have played a role in the persistence of some terrestrial species through glacial periods in Antarctica, the spatial scales at which such refugia operate is not clear. We sampled sediment from a range of locations across volcanic Deception Island in the Maritime Antarctic and used eDNA metabarcoding approaches (targeting a region of the 28S marker) to assess patterns of diversity in relation to thermal gradients. We found that although colder sites harboured significantly greater taxonomic richness than warmer sites, phylogenetic diversity was lower at colder sites (i.e. taxa at colder sites tend to be more evolutionary close to each other). We infer that increased selective processes in low-temperature environments have reduced phylogenetic diversity, supporting a hypothesis of geothermal locations acting as refugia for diverse taxa, even on fine spatial scales, in cold-climate regions such as Antarctica.

精细尺度的系统发育多样性梯度支持南极地热避难所假说
最近,火山等地热区在促进南极洲生物多样性方面可能发挥的作用受到了广泛关注。根据地热庇护所假说,地热区附近或地热区可以支持多种多样的生命,我们应该看到远离 "热点 "的生物多样性和/或嵌套模式不断减少。虽然有证据表明地热区在南极洲冰川期某些陆地物种的生存中发挥了作用,但这种避难所的空间尺度尚不清楚。我们从南极洲海上的欺骗岛火山区的一系列地点采集了沉积物样本,并使用 eDNA 代谢编码方法(针对 28S 标记的一个区域)评估了与热梯度相关的多样性模式。我们发现,虽然较冷地点的分类群丰富度明显高于较暖地点,但较冷地点的系统发育多样性较低(即较冷地点的分类群在进化上更接近)。我们推断,低温环境中选择过程的增加降低了系统发育的多样性,从而支持了在南极洲等寒冷气候地区,地热地点甚至在微小的空间尺度上充当多样化类群的避难所的假说。
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来源期刊
Antarctic Science
Antarctic Science 地学-地球科学综合
CiteScore
3.60
自引率
6.20%
发文量
42
审稿时长
3 months
期刊介绍: Antarctic Science provides a truly international forum for the broad spread of studies that increasingly characterise scientific research in the Antarctic. Whilst emphasising interdisciplinary work, the journal publishes papers from environmental management to biodiversity, from volcanoes to icebergs, and from oceanography to the upper atmosphere. No other journal covers such a wide range of Antarctic scientific studies. The journal attracts papers from all countries currently undertaking Antarctic research. It publishes both review and data papers with no limits on length, two-page short notes on technical developments and recent discoveries, and book reviews. These, together with an editorial discussing broader aspects of science, provide a rich and varied mixture of items to interest researchers in all areas of science. There are no page charges, or charges for colour, to authors publishing in the Journal. One issue each year is normally devoted to a specific theme or papers from a major meeting.
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