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Whole genome resequencing data provide high-resolution conservation insights into population structure and life historyNARA Subscribed
Whole genome resequencing can be a powerful tool for uncovering biological insights and quantifying population genomic metrics relevant to conservation. These insights have the potential to be most profound in secretive or elusive species that are understudied but whose populations may be waning. The western chicken turtle ( Deirochelys reticularia miaria ) is one such example where conservationists are concerned about reporte...
Infiltration is one of the major hydrologic processes affecting the generation of overland flow. Accordingly, different infiltration equations have been developed, applied for water loss calculations, and compared mostly at the watershed scale or the point scale. However, their inter-comparison has not been made in the context of runoff simulation at the hillslope scale that includes microtopographic features such as rills and...
Dispersal is one of the most important aspects of animal behavior and can have far‐reaching consequences for organismal ecology and evolution. Despite recent theoretical advances in understanding why individuals within the same population vary in dispersal behavior, relatively few studies have empirically evaluated the long‐term causes and consequences of variable dispersal within natural populations. In this study, we used li...
Population genomics has great potential to inform applied conservation management and associated policy. However, the bioinformatic analyses and interpretation of population genomic datasets can be daunting and difficult to convey to nonspecialists, including on‐the‐ground conservationists that work with many state, federal and international agencies. We think that individual population genomic metrics of interest can be inter...
Temperature, water travel time, and dissolved organic matter structure river microbial communities in a large temperate watershedNARA Subscribed
There is growing evidence that the composition of river microbial communities gradually transitions from terrestrial taxa in headwaters to unique planktonic and biofilm taxa downstream. Yet, little is known about fundamental controls on this community transition across scales in river networks. We hypothesized that community composition is controlled by flow‐weighted travel time of water, in combination with temperature and di...