For several decades, food policy councils (FPCs) have led the effort to place food on local government policy agendas. While FPCs are making progress in supporting local food systems, they also face institutional and organizational challenges. In recent years, a handful of cities and counties have endeavored to further food system reform with the establishment of full-time government staff positions focused on food policy. As of spring 2020, there were 19 confirmed food policy positions housed in local governments across the United States. While there is considerable literature on FPCs, little research has been published regarding food policy staffing in local governments. Accordingly, this study uses original in-depth interviews with 11 individuals in municipal or county food policy positions to understand the purpose and function of governmental food policy staff positions and their impact on local food systems. Our findings suggest that these positions help to coordinate and nurture local food programs and policies and have the potential to facilitate meaningful participation of individuals and groups in the community in food system reform. We discuss the potential benefits and challenges for governmental food policy positions to support food democracy, and provide the following recommendations for communities interested in establishing or strengthening similar positions: (1) identify and coordinate existing opportunities and assets, (2) foster and maintain leadership support, (3) root the work in community, (4) connect with other food policy professionals, and (5) develop a food system vision.
Deforestation and intensive land use on a global scale has resulted in watershed deterioration and threatened municipal and irrigation reservoirs. Watershed rehabilitation programs must allocate funds to priority projects. A tool for decisionmakers is presented which provides a four-step overview economic analysis by the integration of physical and biological considerations. The overview tool is applied to a current proposed watershed project in Morocco. (KEY TERMS: watershed rehabilitation; economics; project analysis; erosion; sedimentation; Morrocco.)
Climate change-driven Dendroctonus ponderosae outbreaks in semi-naïve Pinus albicaulis may result in rapid natural selection for trees with genotypes and phenotypes associated with survival. In this study, we investigated whether survivors were genetically and chemically different from a living cohort of trees that escaped predation due to smaller size and estimated genetic diversity. We also examined how growth rate and climate sensitivity varied between beetle-killed and surviving trees. Dendroctonus ponderosae predominantly kills large diameter trees; therefore, we predicted that large surviving trees would have distinctive genetic profiles and, due to bottlenecking and drift, survivors would have lower genetic diversity than the abundant smaller mature trees that escaped predation. We found survivors were indeed genetically divergent from the smaller trees but, contrary to expectations, the smaller trees had lower diversity. This suggests that while beetles may select for trees with particular genotypes, other factors are also driving population genetic sub-structuring. Individual tree terpene profiles were diverse and varied by population but showed no clear relationship to survivorship. Two groups of trees with divergent sensitivities to climate were observed in each population, but neither was a clear indicator of survivorship or susceptibility to beetle attack. Growth rate was the best predictor of survivorship with survivors growing significantly slower than beetle-killed trees over their lifetimes although growth rates converged in years just prior to increased beetle activity. Overall, our results suggest that P. albicaulis forests show considerable divergence among populations and within-population genetic sub-structuring, and that they may contain complex mosaics of adaptive potentials to a variety of stressors including D. ponderosae. To protect the ability of this tree to adapt to increasing pressure from beetles, blister rust, and climate change, a top priority should be the maintenance of standing genetic diversity and adaptive shifts in allele frequencies.
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