[HTML][HTML] Past climate-driven range shifts structuring intraspecific biodiversity levels of the giant kelp (Macrocystis pyrifera) at global scales
The paradigm of past climate-driven range shifts structuring the distribution of marine
intraspecific biodiversity lacks replication in biological models exposed to comparable …
intraspecific biodiversity lacks replication in biological models exposed to comparable …
Past climate changes and strong oceanographic barriers structured low‐latitude genetic relics for the golden kelp Laminaria ochroleuca
Aim Drivers of intraspecific biodiversity include past climate‐driven range shifts and
contemporary ecological conditions mediating connectivity, but these are rarely integrated in …
contemporary ecological conditions mediating connectivity, but these are rarely integrated in …
Deep reefs are climatic refugia for genetic diversity of marine forests
Aim Past climate‐driven range shifts shaped intraspecific diversities of species world‐wide.
Earlier studies, focused on glacial refugia, might have overlooked genetic erosion at lower …
Earlier studies, focused on glacial refugia, might have overlooked genetic erosion at lower …
Genetic structure of the giant kelp Macrocystis pyrifera along the southeastern Pacific
EC Macaya, GC Zuccarello - Marine Ecology Progress Series, 2010 - int-res.com
We assessed the genetic structure of the giant kelp Macrocystis pyrifera across a broad
latitudinal range along the southeastern Pacific coast (SEP). Specifically we analyzed the …
latitudinal range along the southeastern Pacific coast (SEP). Specifically we analyzed the …
Climate‐driven range shifts explain the distribution of extant gene pools and predict future loss of unique lineages in a marine brown alga
The climate‐driven dynamics of species ranges is a critical research question in
evolutionary ecology. We ask whether present intraspecific diversity is determined by the …
evolutionary ecology. We ask whether present intraspecific diversity is determined by the …
Future climate change is predicted to shift long-term persistence zones in the cold-temperate kelp Laminaria hyperborea
Global climate change is shifting species distributions worldwide. At rear edges (warmer,
low latitude range margins), the consequences of small variations in environmental …
low latitude range margins), the consequences of small variations in environmental …
[HTML][HTML] Southward decrease in the protection of persistent giant kelp forests in the northeast Pacific
N Arafeh-Dalmau, KC Cavanaugh… - … Earth & Environment, 2021 - nature.com
Kelp forests are globally important and highly productive ecosystems, yet their persistence
and protection in the face of climate change and human activity are poorly known. Here, we …
and protection in the face of climate change and human activity are poorly known. Here, we …
Post-glacial redistribution and shifts in productivity of giant kelp forests
MH Graham, BP Kinlan… - Proceedings of the …, 2010 - royalsocietypublishing.org
Quaternary glacial–interglacial cycles create lasting biogeographic, demographic and
genetic effects on ecosystems, yet the ecological effects of ice ages on benthic marine …
genetic effects on ecosystems, yet the ecological effects of ice ages on benthic marine …
The effects of intraspecific variation on forecasts of species range shifts under climate change
WH Song, JJ Li - Science of the Total Environment, 2023 - Elsevier
As global climate change is altering the distribution range of macroalgae across the globe, it
is critical to assess its impact on species range shifts to inform the biodiversity conservation …
is critical to assess its impact on species range shifts to inform the biodiversity conservation …
Projected climate changes threaten ancient refugia of kelp forests in the North Atlantic
Intraspecific genetic variability is critical for species adaptation and evolution and yet it is
generally overlooked in projections of the biological consequences of climate change. We …
generally overlooked in projections of the biological consequences of climate change. We …
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