![]() ![]() In the same year, a horizon scan of emerging issues of interest to the conservation community ( Sutherland et al., 2014) flagged the use of gene-editing to control invasive species or disease vectors. For example, after identifying that very few conservation practitioners had even heard of synthetic biology in 2012, scientists from both disciplines convened in 2013 to explore how synthetic biology and conservation would shape the future of nature ( Redford et al., 2013). Horizon scanning can also highlight a range of developments in their early stages, thus helping researchers, businesses and policy-makers to plan for the future.įorward-looking exercises of this type bring together people from different fields to explore the possible implications of one field of study on another. Horizon scanning offers one way of filtering diverse sources of information to seek weak signals that, when contextualised, indicate an issue is emerging ( Amanatidou et al., 2012 Saritas and Smith, 2011). Keeping track of the challenges and opportunities created by such advances requires a systematic approach to gathering, assessing and prioritising them. Recent advances in synthetic biology, notably in gene-editing techniques, have substantially increased our capabilities for biological engineering, as have advances in areas such as information technology and robotics. University of Edinburgh, United Kingdom īiological engineering is the application of ideas and techniques from engineering to biological systems, often with the goal of addressing 'real-world' problems.Georgia Institute of Technology, United States.The Earlham Institute, United Kingdom.North Carolina State University, United States.Cambridge Consultants Limited, United Kingdom.University of Massachusetts, United States.Imperial College London, United Kingdom. ![]()
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