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Exact(6)
The introduction of a term that includes the phylogenetic distance of the organism allows assigning more weight to the conserved chromosomal cassette found in more distant organisms.
They show that the phenotypic adaptations and dynamical behavior of a given pathway is more similar to that of S. cerevisiae in organisms that are found to be closer to S. cerevisiae according to our analysis than in more distant organisms.
Moreover, chimerization may be problematic between closely related species, but less severe for more distant organisms.
Further investigations are required to determine the extent to which the adding of more distant organisms help or hinder analyses.
This phenomenon does not depend on the substitution of the set of TFs and structural genes that takes place between more distant organisms, as observed by Babu et al. [ 7] and Lozada-Chavez et al. [ 19].
To test this possibility for the Escherichia coli proteins, we generated the length distribution for the Salmonella Set, a subset of E. coli proteins that match proteins from Salmonella but do not match proteins from more distant organisms.
Similar(54)
This unicellular organism thus appears to be an exception to the hypothesis that PDZ domains co-evolved with multicellularity [9], [21] and it differs from the evolutionary more distant unicellular organisms such as Dictyostelium and Tetrahymena that do not bear coding regions for PDZ domains [22].
Recalling that the organisms exist in a morphospace rather than a physical space, it should be immediately apparent that the simplest realistic mating scheme is one in which phenotypically similar organisms mate with each other rather than with more phenotypically distant organisms.
To this end, we used phylogenetically derived secondary-structure maps and high-resolution crystal structures of SSUs from Tetrahymena thermophila (Eucarya) and E. coli (Eubacteria), both organisms more distant phylogenetically than eubacteria and mitochondria.
Above this band is a sea of green and blue corresponding to proteins from bacteria with more distant relationships to the seed organism.
Work on the genomes of humans and disease organisms in the more distant future may also prove valuable in identifying patients who are susceptible to certain diseases, or are more likely by virtue of their genes to be susceptible to certain drug treatments.
Related(20)
more distant organizations
more distant cells
more ancient organisms
more distant biological
more distant relatives
more familiar organisms
more advanced organisms
more diverse organisms
more grown organisms
more distant friends
more distant quarters
more 'designer organisms
more mysterious organisms
more distant horizons
more distant synthesizers
more other organisms
more flexible organisms
more useful organisms
more distant links
more biological organisms
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Justyna Jupowicz-Kozak
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