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Repeat sequences played a vital role in phylogenetic analysis and genome rearrangement (Nie et al. 2012).
These facts suggest that the flanking sequences played a key role in determining the Mg2+ concentration for maximal DNAzyme activity possibly via the formation of higher order structure in the DNAzyme substrate duplex.
Our finding of unusual free-standing genes in the genomes newly described here reinforces the notion that horizontal transfer of foreign sequences played a role in shaping the mitochondrial genome during the evolution of charophyceans.
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In this context, flexibility of distillation sequences plays a very important role.
Approximate fixed point sequences play a major role in metric fixed point theory for both single- and set-valued nonexpansive mappings.
These studies suggested that repeat sequences play a role in genome size evolution and found the physical evidence of changes in genomic composition and structure between the different genomes of Oryza species [17].
As atTOC132, atTOC120 and atTOC90 have similar gene structures and include intron in 5′ UTR, we want to examine whether the leader intron sequences play a role in regulating the atTOC132, atTOC120 and atTOC90 expression in stable transgenic plants.
In addition, under limited resources, recovery sequences play a crucial role in resilience improvement, while under sufficient availability of resources, deploying redundancy, hardening critical components and ensuring rapid recovery are all effective responses regardless of their ordering.
Taken together, we speculate that A-to-I editing of Alu sequences plays a role in the regulation of hESC early differentiation decisions.
Previous work suggests that repeat sequences play a role in sequence rearranging and variation production in cp genomes through illegitimate recombination and slipped-strand mispairing [ 56- 58].
It was proposed that REP sequences play a role as transcriptional attenuators [ 2] although it was later stated that REP sequences are not specific terminators [ 3].
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