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Biology subjects

Cothran, E. G.

Publications and source records attributed to Cothran, E. G..

2 recordsLinked to original sources

Extreme male reproductive skew limits effective population size in American Standardbred horses

Standardbred horses are widely used for harness racing in North America, Europe, Australia, and New Zealand. In the U.S., two gaits (Pacers and Trotters) are genetically differentiated at a level typical for different horse breeds. We used the complete pedigree for all registered American Standardbred foals born 1970-2014 (>200K Trotters and >500K Pacers) to calculate annual and lifetime reproductive skew and its consequences for the effective number of breeders per year (Nb) and effective size per generation (Ne). With rare exceptions, females can only produce 0 or 1 foal per year, which limits annual and lifetime variance in offspring number. These constraints do not apply to males: with humans (rather than horses) deciding who breeds with whom, and how often, the most prolific stud regularly sires well over 100 foals each year and often over 1000 across its lifetime. Male reproductive skew increased over time in both gaits, with the most prolific studs producing 20% or more of all foals sired by members of their birth cohort. Although each gait in the U.S. is represented by tens of thousands of adult horses at any given time, male Ne is typically in the low hundreds, which drives the overall Ne/N ratio to or below 0.01--a value often considered to be "tiny." Ne/N ratios this low have rarely been reported for large mammals and generally are thought to apply primarily to some marine species with very high fecundity. When Ne/N is this low, even large populations can experience substantial erosion of genetic diversity.

evolutionary biology↗

Genetic Dynamics of Mustang and Feral Horse Populations in the Western United States

The history and population dynamics of feral horse and wild mustang population in the Western United States has led to diverse populations of disparate ancestry. These iconic populations are currently managed by the Bureau of Land Management (BLM) and their genetic history is of great interest for both management and conservation purposes. We examined population genetic parameters using 12 well established microsatellite loci in nearly 8,500 horses representing 235 populations sampled across more than 20 years. Samples were collected by BLM or by members of other management agencies from 10 states. Genetic variability and genetic resemblance to domestic horse breeds using multiple methods were estimated. A wide range of variation levels were observed across the populations. In general, within-population variability was slightly lower than what has been found in domestic horse breeds, but still retains diversity. As expected, levels of population variation correlated to census size. Several populations were sampled longitudinally with intervals between sampling of about 5 years. For these longitudinal samples, there was no trend towards an increase or decline in diversity, indicating consistent management practices. Relationships between populations and domestic breeds ranged from close association to one or two specific breeds to extreme divergence of the feral horses to all breeds examined. Reasons for divergence are mainly related to the founding of the population and subsequent demographic history. Overall, there was a slight tendency for geographically close feral populations to be more similar to each other than to more distant populations. The results of this study show the feral horse populations in the western US have a considerable variation, though management practices can strongly influence variability levels.

genetics↗