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Conservation Genetics Jobs: Opportunities and Challenges in a Rapidly Changing World



The Center for Conservation Genomics works to understand and conserve biodiversity through the application of genomics and genetics approaches. CCG scientists creatively apply genetic theory and methods to gain knowledge about the evolutionary and life histories of animals, to understand the importance of genetic variation to their survival, and to identify the methods needed to sustain them in human care and in the wild.




conservation genetics jobs



We use innovative genetic and cellular approaches to assess, monitor, and manage endangered species, contribute to their sustainability, and prevent species extinction via genetic rescue. We conduct genome-wide sequencing studies and collaborate with efforts to develop genomic tools for species of conservation concern. We propagate and reprogram tissue culture cells to produce induced pluripotent stem cells and direct their development for genetic rescue efforts for critically endangered species.


The Ecology Department at Montana State University invites applications for a tenure-track Assistant Professor of Conservation Genetics. The department seeks candidates using genomics to assist the conservation of biological diversity in plants or animals at any level of biological organization from genes to ecosystems. The Department of Ecology is highly committed to undergraduate and graduate education, and the successful candidate is expected to participate actively in the department curriculum. The Department seeks faculty who can teach students and collaborate with professionals of diverse backgrounds, so women and underrepresented minorities in science are encouraged to apply.The successful candidate will be expected to maintain an innovative research program in conservation genomics funded by extramural and competitive grant programs and to publish in peer-reviewed journals. The Ecology Department is especially interested in candidates with a strong interest in collaborative research with faculty at Montana State University and state and federal agencies.


We provide U.S. Fish and Wildlife Service staff the support they need to integrate genetics into their management and conservation efforts. We work with internal and external partners to design and conduct genetic research and to provide expertise to address conservation and management issues in Alaska, including those on its 16 National Wildlife Refuges, and in other U.S. Fish and Wildlife Service Regions across the country. We also collaborate on a variety of issues with other conservation genetics programs within the U.S. Fish and Wildlife Service's Fish Technology Center network and the Genetics Section of the U.S. Fish and Wildlife Service's National Fish and Wildlife Forensic Laboratory.


Based in Anchorage, geneticists at the Conservation Genetics Laboratory use sophisticated laboratory techniques to design and conduct research, and provide expertise to address conservation and management issues in Alaska. The lab provides services in Alaska and throughout the U.S. Fish and Wildlife Service across the country, including Fish Technology Centers and the National Fish and Wildlife Forensic Laboratory.


Welcome! Our lab works at the intersection of population genetics, landscape ecology, and spatial statistical modeling to investigate how environmental and anthropogenic factors are influencing the distribution of species and genetic variation across the landscape.


Our primary goal is to support conservation genetic management of wild populations facing rapid global change, while also addressing fundamental questions in ecology and evolution. We focus on applied solutions for native foundation and keystone species. Identifying spatial conservation priorities for species of large effect serves as an umbrella conservation model, with the co-benefit of maximizing limited conservation resources to also protect the wealth of associated biodiversity and ecosystem services these species support.


Our research also aims to contribute theoretical advances to the fields of landscape genetics, community genetics, and macrosystems ecology by applying a "genes-to-ecosystems" approach to elucidate the role of fine-scale, micro-evolutionary processes in driving the emergence of landscape to continental-scale patterns (e.g., emergent properties of communities and ecosystems).


Effective conservation requires maintenance of the processes that support species evolutionary potential and capacity to respond to change. Species exist within a landscape matrix that can either support or constrain movement and mating. Our work developing genetic connectivity models for threatened riparian forests (Bothwell et al. 2017) and landscape resistance models for African lion (Cushman et al. 2018) illustrates how genetic, geospatial, and movement data can be combined to identify environmental factors influencing gene flow and the nature of barriers to dispersal (e.g., natural, invasive competitors, land use change). Spatially explicit models can then be applied to identify locations of key dispersal corridors, conflict hotspots, and isolated populations that may be candidates for translocations and assisted gene flow. Genetically informed ecological niche models (gENMs, Bothwell et al. 2021) are another tool our lab has developed to identify evolutionarily significant management units (ESUs), for predicting vulnerabilities to global change, and locating core climate change refugia for spatial prioritization of conservation reserves.


Government, conservation, and landcare partnerships are essential to our work. Our research aims to support the conservation needs and priorities of wildlife and land managers through collaboration at each stage of the research process to provide practical solutions to those best poised to translate them into action. If your organization is working to manage a species of concern and could benefit from such modeling work, please reach out to Dr. Bothwell to discuss potential opportunities for collaboration.


P x E: Experimental manipulations (e.g., growing trees in controlled climate chambers and provenance trials) are employed to test the effects of predicted climate change on traits of interest (e.g., growth, phenology, water use efficiency). Research uniting these approaches is a key goal for advancing the field of landscape genetics (Sork et al. 2013).


López-Márquez, V, SA Cushman, J Templado, HY Wan, HM Bothwell, A Machordom (2021) Genetic connectivity of two marine gastropods in the Mediterranean Sea: Seascape genetics reveals species-specific oceanographic drivers of gene flow. Molecular Ecology, 30, 4608-4629.


Ecosystems around the world face unparalleled biodiversity loss but solutions are available. Genomic technologies have evolved and are increasingly affordable and effective. By developing a new Genetic Rescue Toolkit, Revive & Restore is helping to address conservation challenges in ways never before possible.


Revive & Restore is the leading wildlife conservation organization promoting the incorporation of biotechnologies into standard conservation practice. Our goal is to revive ecosystems and restore biodiversity for millenia to come.


Receive a unique insight into different careers in the field of genomics with these downloadable career profiles. The career profiles demonstrate diverse scientists in a range of jobs and disciplines. The profiles highlight different routes into a variety of science related careers and show relatable skills that demonstrate that anyone can work towards a career in science.


The PPD/Cert/Dip/MSc in Applied Conservation Genetics with Wildlife Forensics aims to provide a blend of theoretical and practical education in the application of genetic data to wildlife management and conservation law enforcement. The programme will cover all essential aspects, from population genetic theory, through data analysis, to the considerations involved in the interpretation and transfer of scientific findings to management, policy and criminal investigation.


Students will have the choice to specialise in either applied conservation genetics or wildlife forensics, with both options providing transferable scientific skills relating to knowledge acquisition and application, problem solving, science communication and decision making. The overall aim of the programme is to equip current and future wildlife professionals with the knowledge, skills and global networks to address modern challenges in conservation management and law enforcement.


Want to find out more about this course? Join our Conservation Careers Academy to view the full details of this course, along with over 12,000 conservation jobs, courses, internships and volunteer placements each year globally, along with many other career-boosting benefits


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