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The process for developing inferences of the most likely population structure, and consequently recommendations for the most appropriate management units, involves a comprehensive multidisciplinary review of available information and interdisciplinary analysis for synthetic conclusions.
The circular design of the hybridization experiments (Figure 1A) allowed us to determine the most likely population that carries the variant (increase or decrease in copy number) with respect to the other populations, assuming the most parsimonious scenario.
At equilibrium, the set of most likely population histories (represented as trees) is obtained by sampling from the posterior probability distribution of all possible trees, given the observed data and the assumed underlying genetic and demographic model.
The design of the hybridizations allowed us to establish a priori combinations of hybridization intensity patterns to assign the most likely population to carry the variation, assuming the most parsimonious scenario (Figure 1B).
However, it should be noted that the model implemented in IMa may not represent the most likely population scenario – i.e., a founder event with a severe bottleneck, perhaps colonization by a single brooding female as such, divergence time estimates using IMa could very well be inflated.
These were plotted and the value of K at the plateau (maximum) of the Gaussian graph plotted indicated the most likely population structure.
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As a result, for each individual the five most likely populations of origin and their relative assignment scores are given in decreasing order.
We then used the 1,000 most-likely populations to estimate the mean parameter values for each species (Table 3).
AFLPOP infers for a given genotype and a set of sampled populations, the most likely source population.
We also collected data on the populations from the large lakes, the most likely source population of the newly formed and much younger volcanic calderas, including data from surrounding rivers.
However, little is known about direct PEMF-induced effects on osteoprogenitor cells as the most likely cell population contributing to the osteogenic response [ 10- 12].
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most likely aging
most likely communities
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most likely change
most likely perpetrator
most personable population
most isolated population
most stigmatized population
most vexing population
most vulnerable population
most representative population
most diverse population
most demonized population
most likely employer
most common population
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