Persistence of arctic-alpine flora during 24,000 years of environmental change in the Polar Urals
Data files
Dec 17, 2019 version files 6.77 GB
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160129_SND405_A_L007_GZO-23_R1.fastq.gz
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160129_SND405_A_L007_GZO-23_R2.fastq.gz
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160129_SND405_A_L007_GZO-24_R1.fastq.gz
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160129_SND405_A_L007_GZO-24_R2.fastq.gz
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160129_SND405_A_L007_GZO-25_R1.fastq.gz
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160129_SND405_A_L007_GZO-25_R2.fastq.gz
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160129_SND405_A_L007_GZO-26_R1.fastq.gz
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160129_SND405_A_L007_GZO-26_R2.fastq.gz
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160212_SND393_A_L007_GZO-23_R1.fastq.gz
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160212_SND393_A_L007_GZO-23_R2.fastq.gz
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160212_SND393_A_L007_GZO-24_R1.fastq.gz
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160212_SND393_A_L007_GZO-24_R2.fastq.gz
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160212_SND393_A_L007_GZO-25_R1.fastq.gz
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160212_SND393_A_L007_GZO-25_R2.fastq.gz
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160212_SND393_A_L007_GZO-26_R1.fastq.gz
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160212_SND393_A_L007_GZO-26_R2.fastq.gz
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GZO23.tsv
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GZO24.tsv
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GZO25.tsv
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GZO26.tsv
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ReadMe.txt
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Abstract
Plants adapted to extreme conditions can be at high risk from climate change; arctic-alpine plants, in particular, could “run out of space” as they are out-competed by expansion of woody vegetation. Mountain regions could potentially provide safe sites for arctic-alpine plants in a warmer climate, but empirical evidence is fragmentary. Here we present a 24,000-year record of species persistence based on sedimentary ancient DNA (sedaDNA) from Lake Bolshoye Shchuchye (Polar Urals). We provide robust evidence of long-term persistence of arctic-alpine plants through large-magnitude climate changes but document a decline in their diversity during a past expansion of woody vegetation. Nevertheless, most of the plants that were present during the last glacial interval, including all of the arctic-alpines, are still found in the region today. This underlines the conservation significance of mountain landscapes via their provision of a range of habitats that confer resilience to climate change, particularly for arctic-alpine taxa.