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We sampled densely from one clade to test phylogenetic utility at shallow scales.
This model was successful for primary craters and those craters where the dimensions are predominantly controlled by a single explosion (i.e. a relatively larger or shallower scaled depth explosion).
Identification of informative markers for specific phylogenetic questions finds one of its major challenges at shallow-scale phylogenetics, mostly along the gradient between species and population level.
The present study benefits from these transcriptome resources for identifying novel rapidly-evolving nuclear loci for shallow-scale phylogenetics in H. sect.
These results do not support predictions that lower percent identity would provide better shallow-scale phylogenetic resolution, which suggests mutation rates between exon and intron regions are independent.
Non-coding regions of nuclear low- or single-copy markers are a vast and promising source of data providing information for shallow-scale phylogenetics.
As for other facets of the interpretive process (including parsing), use of deep domain knowledge for metonym processing can be quite effective in sufficiently narrow domains, while corpus-based, shallow methods scale better to broader domains, but are apt to reach a performance plateau falling well short of human standards.
A wide but shallow gliding scale of one fifth caries promoting or protecting, and four fifths non-influential, variables occurred.
The entire set of plaque, diet and saliva variables (n = 88) displayed a wide but shallow gliding scale of one fifth caries promoting or protecting markers and four fifths non-influential variables (Fig 3).
It also shows the potential of PLS modelling to screen and rank a multiplicity of variables for associations with caries in small clinical samples (n = 30): revealing a wide but shallow gliding scale of 1/5th influential caries protecting or promoting and 4/5 non-influential variables.
Quaternary climatic fluctuations were likely strong enough to influence population sizes and, consequently, affect genetic diversification at shallow time scales and community dynamics at smaller scales [ 52].
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