Increasing climate variability may pose an even greater risk to species than climate warming because temperature fluctuations can amplify adverse impacts of directional warming on fitness-related traits. Here, the influence of directional warming and increasing climate variability on marine stickleback fish (Gasterosteus aculeatus) offspring size variation was investigated by simulating changes to the mean and variance of ocean temperatures predicted under climate change. Reproductive traits of mothers and offspring size reaction norms across four climate scenarios were examined to assess the roles of standing genetic variation, transgenerational and within-generation plasticity in adaptive potential. Mothers acclimated to directional warmi...
Abstract The parental environment can alter offspring phenotypes via the transfer of non‐genetic inf...
© 2016 John Wiley & Sons Ltd Predicting the impacts of climate change requires knowledge of the pote...
Predicting the impacts of climate change to biological systems requires an understanding of the abil...
Increasing climate variability is predicted to pose an even greater risk to species than climate war...
Increasing climate variability is predicted to pose an even greater risk to species than climate war...
Bet hedging at reproduction is expected to evolve when mothers are exposed to unpredictable cues for...
Bet hedging at reproduction is expected to evolve when mothers are exposed to unpredictable cues for...
Ocean climates are changing rapidly and marine organisms must either acclimate or adapt to survive. ...
1) Our study addresses the role of non-genetic and genetic inheritance in shaping the adaptive poten...
1) Our study addresses the role of non-genetic and genetic inheritance in shaping the adaptive poten...
Changing environments associated with rapid climate change can shape direct measures of fitness such...
Plasticity, both within and across generations, can shape sexual traits involved in mate choice and ...
Nongenetic inheritance mechanisms such as transgenerational plasticity (TGP) can buffer populations...
Transgenerational plasticity (TGP) can buffer populations against rapid environmental change, yet li...
Transgenerational plasticity is a potentially powerful mechanism for species to cope with rapid envi...
Abstract The parental environment can alter offspring phenotypes via the transfer of non‐genetic inf...
© 2016 John Wiley & Sons Ltd Predicting the impacts of climate change requires knowledge of the pote...
Predicting the impacts of climate change to biological systems requires an understanding of the abil...
Increasing climate variability is predicted to pose an even greater risk to species than climate war...
Increasing climate variability is predicted to pose an even greater risk to species than climate war...
Bet hedging at reproduction is expected to evolve when mothers are exposed to unpredictable cues for...
Bet hedging at reproduction is expected to evolve when mothers are exposed to unpredictable cues for...
Ocean climates are changing rapidly and marine organisms must either acclimate or adapt to survive. ...
1) Our study addresses the role of non-genetic and genetic inheritance in shaping the adaptive poten...
1) Our study addresses the role of non-genetic and genetic inheritance in shaping the adaptive poten...
Changing environments associated with rapid climate change can shape direct measures of fitness such...
Plasticity, both within and across generations, can shape sexual traits involved in mate choice and ...
Nongenetic inheritance mechanisms such as transgenerational plasticity (TGP) can buffer populations...
Transgenerational plasticity (TGP) can buffer populations against rapid environmental change, yet li...
Transgenerational plasticity is a potentially powerful mechanism for species to cope with rapid envi...
Abstract The parental environment can alter offspring phenotypes via the transfer of non‐genetic inf...
© 2016 John Wiley & Sons Ltd Predicting the impacts of climate change requires knowledge of the pote...
Predicting the impacts of climate change to biological systems requires an understanding of the abil...