Sammanfattning
Global climate change is leading to rapid and drastic shifts in environmental conditions, posing threats to biodiversity and nearly all life forms worldwide. Forest trees serve as foundational components of terrestrial ecosystems and play a crucial and leading role in combating and mitigating the adverse effects of extreme climate events, despite their own vulnerability to these threats. Therefore, understanding and monitoring how natural forests respond to rapid climate change is a key priority for biodiversity conservation. Recent progress in evolutionary genomics, driven primarily by cutting-edge multi-omics technologies, offers powerful new tools to address several key issues. These include precise delineation of species and evolutionary units, inference of past evolutionary histories and demographic fluctuations, identification of environmentally adaptive variants, and measurement of genetic load levels. As the urgency to deal with more extreme environmental stresses grows, understanding the genomics of evolutionary history, local adaptation, future responses to climate change, and conservation and restoration of natural forest trees will be critical for research at the nexus of global change, population genomics, and conservation biology. In this review, we explore the application of evolutionary genomics to assess the effects of global climate change using multi-omics approaches and discuss the outlook for breeding of climate-adapted trees.
| Originalspråk | Engelska |
|---|---|
| Artikelnummer | 101044 |
| Antal sidor | 23 |
| Tidskrift | Plant Communications |
| Volym | 5 |
| Nummer | 10 |
| DOI | |
| Status | Publicerad - 2024 |
Bibliografisk information
Publisher Copyright:© 2024 The Author(s)
FN:s SDG:er
Detta resultat bidrar till följande hållbara utvecklingsmål:
-
SDG 13 – Bekämpa klimatförändringarna
-
SDG 15 – Ekosystem och biologisk mångfald
Nyckelord
- breeding
- climate change
- evolutionary genomics
- forest trees
- multi-omics
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