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The timing of this WGT makes Brassica an important model genus for evolutionary study because genomic collinearity among the species is maintained with their ancestral genome, a decisive factor in estimating ancestral genomes.
Similar to Suaeda fruticosa, the majority of halophytes do not have glands or external bladders to modulate their tissue ion concentration therefore it has been seen to be a good model genus for the study of salt tolerance [ 12].
Here we have provided a set of genetically tractable laboratory strains and vastly improved genome sequences that make Saccharomyces sensu stricto a model genus for evolutionary and comparative analyses and experiments.
Populus is recognized as a model genus for genetic and genomic studies in angiosperm trees with many resources available, such as the genome sequence of Populus trichocarpa (Tuskan et al. 2006).
Especially, they grow in different habitats, from salty soil to mesophytic environment, and are therefore used as a model genus for elucidating physiological and molecular mechanisms of stress tolerance in woody plants.
Even though Metapolybia may be considered a model genus for studies related to colony population structure in epiponines, just a few studies (taxonomy – [ 26], ovary development – [ 27], colony composition, including caste differences [ 28] and nest construction – [ 29]) have been performed on this taxon since [ 6], despite the increase in knowledge of this tribe.
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Despite the economic and ecological importance of Chinese bayberry, there is no genomic resource for this non-model genus, with only 76 nucleotide sequences deposited in GenBank (as at the 30th of November 2011).
Both species have been adopted as model organisms of the genus for almost five decades, and as a consequence, several derived strains from both organisms have been obtained.
To the best of our knowledge, this study is the first report indicating the contribution of certain altered gut genus for the increased UACR in an animal model.
The most common native species, F. vesca L., has 14 chromosomes and it is considered to be a diploid and proposed as model for the genus [ 3].
The model organism for the genus, S. coelicolor, an obligate aerobe, encodes two Hmp homologues (HmpA1 and HmpA2), which presumably detoxify NO by oxidising it to NO3− or reducing it to N2O.
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