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A cryptic syngameon within Betula shrubs revealed: Implications for conservation in changing subarctic environments.
Touchette, Lyne; Godbout, Julie; Lamothe, Manuel; Porth, Ilga; Isabel, Nathalie.
Afiliação
  • Touchette L; Department of Wood and Forest Sciences Université Laval Quebec Quebec Canada.
  • Godbout J; Natural Resources Canada, Canadian Forest Service Laurentian Forestry Centre Quebec Quebec Canada.
  • Lamothe M; Centre for Forest Research Université Laval Quebec Quebec Canada.
  • Porth I; Ministère des Ressources naturelles et des Forêts, Direction de la recherche forestière Québec Québec Canada.
  • Isabel N; Natural Resources Canada, Canadian Forest Service Laurentian Forestry Centre Quebec Quebec Canada.
Evol Appl ; 17(4): e13689, 2024 Apr.
Article em En | MEDLINE | ID: mdl-38633131
ABSTRACT
Arctic and subarctic ecosystems are rapidly transforming due to global warming, emphasizing the need to understand the genetic diversity and adaptive strategies of northern plant species for effective conservation. This study focuses on Betula glandulosa, a native North American tundra shrub known as dwarf birch, which demonstrates an apparent capacity to adapt to changing climate conditions. To address the taxonomic challenges associated with shrub birches and logistical complexities of sampling in the northernmost areas where species' ranges overlap, we adopted a multicriteria approach. Incorporating molecular data, ploidy level assessment and leaf morphology, we aimed to distinguish B. glandulosa individuals from other shrub birch species sampled. Our results revealed three distinct species and their hybrids within the 537 collected samples, suggesting the existence of a shrub birch syngameon, a reproductive network of interconnected species. Additionally, we identified two discrete genetic clusters within the core species, B. glandulosa, that likely correspond to two different glacial lineages. A comparison between the nuclear and chloroplast SNP data emphasizes a long history of gene exchange between different birch species and genetic clusters. Furthermore, our results highlight the significance of incorporating interfertile congeneric species in conservation strategies and underscores the need for a holistic approach to conservation in the context of climate change, considering the complex dynamics of species interactions. While further research will be needed to describe this shrub birches syngameon and its constituents, this study is a first step in recognizing its existence and disseminating awareness among ecologists and conservation practitioners. This biological phenomenon, which offers evolutionary flexibility and resilience beyond what its constituent species can achieve individually, may have significant ecological implications.
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Texto completo: 1 Base de dados: MEDLINE Idioma: En Ano de publicação: 2024 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Idioma: En Ano de publicação: 2024 Tipo de documento: Article