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The roles of selection intensity, gene interaction, fitness costs, and dominance (expression of resistance) are presented.
We noted that the parental dominance expression genes showed low degrees of conservation.
A major pattern of altered gene expression in the nascent allohexaploid wheat lines is parental dominance expression.
Our results show that two patterns of global alteration in gene expression are conditioned by allohexaploidization in wheat, that is, parental dominance expression and non-additive expression.
More limited conservation of dominance expression genes was observed between the two allohexaploid lines at a given generation, which applied particularly so for those of the diploid parent.
Conversely, a gene could have shown parental dominance expression, but statistically did not deviate from the MPVs, and hence, was categorized as additive expression.
Similar(41)
Among them, 11 TabZIP genes were predominantly expressed in anther and most of them showed over-dominance expression mode in the cross combination TY806 × BS366.
TabZIP26, TabZIP37, TabZIP134 and TabZIP153 exhibited significant over-dominance expression modes (Fig. 9).
Results showed that TabZIP153 exhibited over-dominance expression in the cross combinations of 4 high-restorer lines and 07Yhua91-27, 7P395 and C06-67, whereas it exhibited under-dominance expression in the 30482 × BS366.
While the "parental dominance gene expression" refers to the statistically expression similarity in an allopolyploid to one of the parents but different from the other, the "non-additivity" refers to those genes the expression levels of which deviated from the empirically measured mid-parent values (MPVs).
This phenomenon has been systematically investigated in allotetraploid cotton, and was termed "parental dominance gene expression" [ 31, 36].
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