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An energetics model is developed to explain the retention of a dispersed phase fluid within a multiphase fluidised bed, in terms of the behaviour of mixed phase particles, or composite particles of the solid and dispersed fluid phases.
We therefore suggest that the shear viscosity of the digestive fluid is unlikely to explain the retention of insects, although further investigation using standardized simple (non elastic) fluids would be helpful to precisely quantify a possible role of shear viscosity in trapping.
A role in photo-entrainment could also explain the retention of the functional gene in the African bathergid mole-rats as well as the Middle East blind mole-rat and the Hottentot golden mole, both of which possess subcutaneous eyes, and have independently evolved to occupy a subterranean niche.
The BrdU dilution for Aund suggests the existence of two types of template DNA strand segregation, one random type, possibly reflecting the rapid loss of the label up to the 18th day of chase, and one non-random type (asymmetrical division), which could explain the retention of BrdU after 18 and 25 days of chase.
Other models have been proposed to explain the retention of duplication GR genes.
This may explain the retention of short oligo(A) tails on mt-mRNAs in the homozygous patient cell lines.
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In particular, natural transformation is increased by DNA damage in H. pylori, and a connection exists between the DNA damage response and DNA uptake in H. pylori, suggesting natural competence contributes to persistence of H. pylori in its human host and explains the retention of competence in most clinical isolates.
The dosage balance hypothesis is useful for explaining the retention of genes following the type of duplication event: the duplicate maintaining the stoichiometric balance of protein complexes, favoring high retention rates for genes and proteins with many interactions [ 39, 40].
The absence of radical differences between expression patterns is intriguing, apparently challenging the idea that elaboration of developmental roles explains the retention of the three Cdx genes over 500 million years of vertebrate evolution.
We propose that minor introns are control switches that are regulated by U6atac abundance, providing a novel gene expression regulation mechanism and explaining the retention of the minor splicing pathway during evolution.
The theory behind the dosage balance model explains the retention of entire gene networks post large-scale dupost large-scaleo stoichiometric balance constraints pre- anduplicationsation (Veitia et al. 2008).
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