4.5 Article

Evolution in response to climate in the native and introduced ranges of a globally distributed plant

期刊

EVOLUTION
卷 76, 期 7, 页码 1495-1511

出版社

OXFORD UNIV PRESS
DOI: 10.1111/evo.14514

关键词

Adaptation; climate change; cline; cyanogenesis; plant defense; Trifolium repens; white clover

资金

  1. NSERC PGS-D
  2. OGS
  3. National Science Foundation [OIA-1920858]
  4. NSERC
  5. Canada Research Chair (CRC)

向作者/读者索取更多资源

This study found that there were no clear changes in cyanogenesis clines in response to climate change, but introduced populations continue to adapt to their contemporary environments.
The extent to which species can adapt to spatiotemporal climatic variation in their native and introduced ranges remains unresolved. To address this, we examined how clines in cyanogenesis (hydrogen cyanide [HCN] production-an antiherbivore defense associated with decreased tolerance to freezing) have shifted in response to climatic variation in space and time over a 60-year period in both the native and introduced ranges of Trifolium repens. HCN production is a polymorphic trait controlled by variation at two Mendelian loci (Ac and Li). Using phenotypic assays, we estimated within-population frequencies of HCN production and dominant alleles at both loci (i.e., Ac and Li) from 10,575 plants sampled from 131 populations on five continents, and then compared these frequencies to those from historical data collected in the 1950s. There were no clear relationships between changes in the frequency of HCN production, Ac, or Li and changes in temperature between contemporary and historical samples. We did detect evidence of continued evolution to temperature gradients in the introduced range, whereby the slope of contemporary clines for HCN and Ac in relation to winter temperature became steeper than historical clines and more similar to native clines. These results suggest that cyanogenesis clines show no clear changes through time in response to global warming, but introduced populations continue to adapt to their contemporary environments.

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