Transcriptomic methods are now widely used in functional genomic research. The vast amount of information received from these studies comes along with the challenge of developing a precise picture of the functional consequences and the characteristic regulatory mechanisms. Here we assess recent studies in marine species and their adaptation to polar (and seasonal) cold and explore how they have been able to draw reliable conclusions from transcriptomic patterns on functional consequences in the organisms. Our analysis indicates that the interpretation of transcriptomic data suffers from insufficient understanding of the consequences for whole organism performance and fitness and comes with the risk of supporting only preliminary and superfi...
Ciliates provide optimal model systems to study environmental adaptation. Comparative transcriptomi...
This study uses molecular approaches to investigate evidence of climate adaptation of a marine zoopl...
Considerations for the use of transcriptomics in identifying the ‘genes that matter ’ for environmen...
Transcriptomic methods are now widely used in functional genomic research. The vast amount of inform...
Geographical distribution patterns of Atlantic cod, Gadus morhua, and Arctic cod, Boreogadus saida, ...
Forecasting species' responses to climate change requires understanding the underlying mechanisms go...
Cold adaptation encompasses all those aspects of an organism's physiology that allow it to live in p...
Resilience to climate change depends on a species\u27 adaptive potential and phenotypic plasticity. ...
A cause and effect understanding of thermal limitation and adaptation at various levels of biologica...
Within consortium 4 of BIOACID II, we examine effects of ocean warming and acidification (OWA) on di...
Research on the thermal biology of Antarctic marine organisms has increased awareness of their vulne...
Through functional analyses, integrative physiology is able to link molecular biology with ecology a...
Temperature has profound effects on ectotherm physiology, impacting metabolic and developmental rate...
Understanding thermal ranges and limits of organisms becomes important in light of climate change an...
<p>Permafrost subzero environments harbor diverse, active communities of microorganisms. However, ou...
Ciliates provide optimal model systems to study environmental adaptation. Comparative transcriptomi...
This study uses molecular approaches to investigate evidence of climate adaptation of a marine zoopl...
Considerations for the use of transcriptomics in identifying the ‘genes that matter ’ for environmen...
Transcriptomic methods are now widely used in functional genomic research. The vast amount of inform...
Geographical distribution patterns of Atlantic cod, Gadus morhua, and Arctic cod, Boreogadus saida, ...
Forecasting species' responses to climate change requires understanding the underlying mechanisms go...
Cold adaptation encompasses all those aspects of an organism's physiology that allow it to live in p...
Resilience to climate change depends on a species\u27 adaptive potential and phenotypic plasticity. ...
A cause and effect understanding of thermal limitation and adaptation at various levels of biologica...
Within consortium 4 of BIOACID II, we examine effects of ocean warming and acidification (OWA) on di...
Research on the thermal biology of Antarctic marine organisms has increased awareness of their vulne...
Through functional analyses, integrative physiology is able to link molecular biology with ecology a...
Temperature has profound effects on ectotherm physiology, impacting metabolic and developmental rate...
Understanding thermal ranges and limits of organisms becomes important in light of climate change an...
<p>Permafrost subzero environments harbor diverse, active communities of microorganisms. However, ou...
Ciliates provide optimal model systems to study environmental adaptation. Comparative transcriptomi...
This study uses molecular approaches to investigate evidence of climate adaptation of a marine zoopl...
Considerations for the use of transcriptomics in identifying the ‘genes that matter ’ for environmen...