Barely Significant

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highly significantp < 0.0010.0× alphaqualifiedgold
The following highly significant equations ( p < 0.001) were obtained: DE = 15.989 (±0.157) − 0.00452 (±0.00121) × S; n = 24; r2 = 64.9; s.e. = 0.45 ME = 15.421 (±0.154) − 0.00452 (±0.00117) × S; n = 24; r2 = 67.4; s.e. = 0.42 where DE, ME, and S are digestible energy (kJ/g DM), metabolizable energy (kJ/g DM), and inclusion level of dried-milled avocado seeds in the diet (g/kg), respectively.
highly significantp < 0.0010.0× alphaqualifiedgold
In all twelve (species × methodology) cases from cattle MS through to chicken SNP, differences in F st between spatial relationships were highly significant ( p < 0.001; Kruskal-Wallis statistic, d.f. in brackets, respectively, 201.59 (5), 1165.5 (5), 186.71 (6), 1117.9 (6), 914.75 (6), 19.39 (5), 249.67 (5), 1605.03 (6), 207.23 (6), 120.45 (6), 196.11 (6), 107.11 (6)).
highly significantp < 0.0010.0× alphaqualifiedgold
The interactions between tannin type and concentration (T × C) and tannin type and water level (T × W) were both highly significant ( p < 0.001) for all the analyzed variables except for dCP_BP ( p = 0.157), while the interaction between tannin concentrations and water level (C × W) was insignificant in all variables.
highly significantp < 0.0010.0× alphaqualifiedgold
However, these values are not fully consistent with those shown in Table 4 for Pearson correlation coefficients, as despite they hold a highly significant correlation ( p < 0.001) for breeding values for milk yield and dry matter, it is not high (around 0.061–0.151, respectively), what accounts for the fact that more than linear, this correlation may present a nonlinear nature.