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All the sequences and positions for the putative transposase binding sites were well conserved in consistency with the sequence conservation of the putative transposase A gene (see below).
Some well-conserved miRNA* species were reported as functional guide miRNAs with abundant expression, which were well conserved particularly in seed and anchor sequences (Figure 5C).
Further, mutational variability analysis pointed that most of the amino acids were well conserved.
Seconder structures of SlGolS proteins were well conserved than that of BdGolS.
As affirmed by multiple sequence alignments, most of the functionally important residues were well conserved in RfCat.
Multiple sequence alignment revealed that Cfi proteins were well conserved with the typical modular architecture and identical active sites throughout the vertebrates, which suggested the conserved function of Cfi.
Other CO family genes were well conserved between Brachypodium, barley and rice.
Interestingly, both GHFs were well conserved among the lower termite lineage.
In fact, amino acid residues coordinating the Ca2+ were well conserved between the LNS5 and 6 domains.
Brachypodium had no Gdh7 homologue although genes flanking Ghd7 in rice were well conserved and in collinear order (Figure 11C).
All genes (cheR, cheW, cheA, cheY and cheB) were well conserved among B. hyodysenteriae, T. pallidum and B. burgdorferi.
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