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The phenotypic coefficient of variance (PCV) was higher than the genotypic coefficient of variance (GCV) in all the studies traits.
Quantitative estimates of evolutionary rates facilitate comparisons across studies, traits, taxa, and time frames [ 40].
Mixed-model analyses showed that in the modelling studies traits associated with reproductive investment and growth evolved slower than rates related to maturation.
In modelling studies, traits related to maturation (PMN, SZM and AGM) changed faster than growth and reproductive traits, whereas in empirical studies age-at-maturation (AGM) changed faster than the other traits.
Of the live animal studies, traits measured included the following: reproductive timing (six studies), emergence from hibernation (three studies), body mass (five studies) and litter size (one study) and involved 11 herbivores (three small, four mid-size (all hibernators), and four large (all ungulates) species) and one carnivore.
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Because of this, they assert, it makes little sense to study traits that vary from group to group, or society to society.
Twenty-three QTLs controlling different studied traits were identified.
Where X is the grand mean for each of the studied traits.
Taken together our data illustrate that natural variation exists within Arabidopsis for the studied traits.
Analysis of variance showed that most of the studied traits were significantly affected by experimental factors.
Direct genetic correlations among studied traits ranged from −0.05 (MW FD) to 0.90 (SWT–8WK).
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CEO of Professional Science Editing for Scientists @ prosciediting.com