Terblanche and his co-authors mention that in order to enhance the predictive power of typical contemporary climate change models, it will be important for biologists to understand how animals transform their living space locally in response to climate variability.
"Improving such models will be key to forecasting the effects of climate change on species, and to predict future effects, including how species ranges may shift and what the relative risks of extinction are for different animal species with high levels of precision."
They add that knowing which species will proliferate with climate change is central to understanding pest outbreaks on crops, or disease vectors changing risks for humans.
"Climate change will impact the spread of disease vectors, the health of marine and terrestrial biomes around the world and will influence whether agriculture and fishing will be able to continue supporting human populations, as they have in the past."
In their study, the researchers point out how some animals have found unique ways to protect themselves against extreme climate conditions.
"Many animals dig burrows, construct nests for themselves or their offspring, build homes for entire colonies (ants and termites), induce plants to produce galls, build leaf mines, or simply modify the structure or texture of their local environments.
"For example, birds build nests to keep eggs and chicks warm during cool weather, but also make adjustments in nest insulation to keep the little ones cool in very hot conditions. Mammals, such as rabbits or mice, sleep or hibernate in underground burrows that provide stable, moderate temperatures and avoid above-ground conditions that often are far more extreme outside the burrow.
"We've also seen how termites and ants build mounds that capture wind and solar energy to drive airflow through the colony, which stabilizes temperature, relative humidity, and oxygen level experienced by the colony."
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