Sentence examples for diversification of numerous from inspiring English sources

Exact(2)

Thus, the phylogenetic position of ferns makes them pivotal in the evolutionary history of land plants (Embryophyta), and essential for a comprehensive understanding of the origin and diversification of numerous traits found in seed plant crops and model species, such as rice and Arabidopsis[ 13, 14].

This character evolved independently many times during the diversification of numerous Myxobolus spp. and gave rise to the current Henneguya spp. Caudal appendages similar to those found in Henneguya spp. are also present in species of the genera Unicauda, Dicauda, Hennegoides, Tetrauronema, and Laterocaudata.

Similar(58)

Yeovil's reputation as a centre of the aircraft and defence industries lived on into the 21st century despite attempts at diversification, and the creation of numerous industrial estates, the principal employer is the aviation group AgustaWestland.

It is probably this capacity for rapid genetic diversification that has enabled the recent emergence of numerous economically and socially important pathogenic viruses of humans and their domesticated plants and animals.

The radiation of CA Heroine cichlids likely involved a much more allopatric mode of diversification in the numerous river basins that dissect Central America.

This would be expected if R7 was present among the ancestral AA speakers prior to the diversification of the language family into numerous branches.

The presence of shared motifs in nearly all HD-Zip I proteins of the moss Physcomitrella patens, a much simple organism than higher plants, points to an ancestral low functional diversification of these proteins, beyond the numerous genes present in its genome.

Evidence for frequent gene duplication is also seen in the evolutionary history of numerous gene families that have expanded during the diversification of the angiosperms [ 19- 22].

Our results indicate evolutionarily stable associations of numerous intronic snoRNAs and miRNAs and their host genes, with probable continued diversification of snoRNA function from an ancestral role in ribosome biogenesis.

The power of the transient transfection assays has allowed thorough dissection of numerous cis-regulatory modules, which provided insights into the functional constraints that shape enhancer architecture and diversification.

In their microarray analysis of cortical interneurons, Batista-Brito et al. (2008) observed the expression of numerous genes, including Cux2, Zfhx1b and Carhsp1, which are likely candidates for regulating the maturation and diversification of these cells.

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