Guest post: How data is key to conserving wildlife in a changing climate
A guest article by Dr Mark C. Urban, Director of the Institute of Biological Risk and associate professor in the department of ecology and evolutionary biology at the University of Connecticut.We need to do everything we can to shepherd the world’s wildlife through the modern era of rising global temperatures. After all, biodiversity provides the foundation for human economy, health, and culture. But we are currently failing in this mission because we rely on outdated approaches and lack the information to use better ones.The biggest current obstacle to protecting wildlife from climate change is pinpointing exactly how we should spend the limited money available for conservation. We need to identify the winners and the losers of climate change, and focus on helping the losers.Usually, biologists accomplish this goal using statistical correlations. If the suitable climate for a species’ habitat is projected to expand or contract, then the distribution of that species is expected to follow suit. But a lot can happen along the way. Maybe the species can’t move to where its habitat is shifting, maybe it will encounter a new predator or new competitors for food and shelter, or maybe it will just stay where it is and adapt.By not focusing on biology, we ignore the diversity of nature. We treat a mouse the same as an elephant, a fish and a tree. Yet, we know that these organisms experience the environment and respond to it in very different ways. To model how biology will be affected by climate change, we need to focus on biology – not statistics.§ Biological ‘mechanisms’
To get a more accurate view of how a species responds to environmental changes, scientists need to incorporate biological mechanisms into their modelling.A “mechanism” is just a fancy word for a natural process, such as birth, death, migration and adaptation. Think of it this way: if you want to predict how much money you will have in the bank in the future, you would want to know not just your current balance, but also your rate of interest and how that rate will change in the future. In a similar way, we need to collect information on rates of increase for natural populations and how those rates might change in a warmer climate.In our new paper, published last week in Science, I along with 21 other biologists from around the world identify six mechanisms that determine the response of a species to climate change:- Physiology – how an organism responds to changes in its environment
- Demography, life history, phenology – birth and death rates and the schedule and timing of life events
- Evolution – adaptation to existing and future environmental changes
- Species interactions – effects of other species
- Dispersal, colonization, and range dynamics – movement of offspring away from parents, their establishment in new habitats, and effects on species ranges
- Environmental responses – how changes in the environment at varying scales translate into effects on species traits
§ Back into the field
It would appear that technology has sprinted past biology. If we are going to make realistic predictions about how climate change will affect wildlife, we need to pull on our boots, grab our binoculars and go back into the field to gather the information we need. Doing this for millions of species on Earth is one of the greatest challenges in science today. Moreover, we don’t have much time – we are already seeing the first climate change casualties, as witnessed by the extinction of the Bramble Cay Melomys earlier this year.Article information
This guest article is based on the following paper: Urban, M. C. et al. (2016) Improving the forecast for biodiversity under climate change, Science, doi:10.1126/science.aad8466