Figure 3—figure supplement 2. Maximum likelihood tree under the empirical LG+G substitution model and accession numbers of 447 eukaryotic intermediate filament proteins and the placement of the IF protein genes of the tardigrade Hypsibius dujardini (highlighted in red).

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Online Access:http://dx.doi.org/10.7554/elife.11117.010
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spelling crelifesciences:10.7554/elife.11117.010 2023-07-23T04:22:14+02:00 Figure 3—figure supplement 2. Maximum likelihood tree under the empirical LG+G substitution model and accession numbers of 447 eukaryotic intermediate filament proteins and the placement of the IF protein genes of the tardigrade Hypsibius dujardini (highlighted in red). Lamins of onychophorans are highlighted in orange, copepods in purple, collembolans in green, nematodes in light brown and cytoplasmic IF proteins of nematodes in dark brown. Note the position of isomin of the collembolan Isotomurus maculatus, which has been interpreted as a putative cytoplasmic IF protein (Mencarelli et al., 2011), within a group of collembolan lamins (asterisk). The domain structure of each protein is depicted on the right. Note the absence of a nuclear localization signal (NLS) in cytotardin of H. dujardini as well as in the coloured sequences of copepods (purple) and collembolans (green). Bootstrap values from 1000 pseudoreplicates ≥50% are given at the nodes. Scale bar indicates the number of substitutions per site. Abbreviations: CaaX, isoprenylation motif at the carboxyl terminus; LTD, lamin tail domain; NLS, nuclear localization signal. 2016-03-01T15:36:56Z http://dx.doi.org/10.7554/elife.11117.010 unknown eLife Sciences Publications, Ltd component 2016 crelifesciences https://doi.org/10.7554/elife.11117.010 2023-07-05T08:40:15Z Other/Unknown Material Copepods Tardigrade eLife (E-Journal - via Crossref)
institution Open Polar
collection eLife (E-Journal - via Crossref)
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language unknown
format Other/Unknown Material
title Figure 3—figure supplement 2. Maximum likelihood tree under the empirical LG+G substitution model and accession numbers of 447 eukaryotic intermediate filament proteins and the placement of the IF protein genes of the tardigrade Hypsibius dujardini (highlighted in red).
spellingShingle Figure 3—figure supplement 2. Maximum likelihood tree under the empirical LG+G substitution model and accession numbers of 447 eukaryotic intermediate filament proteins and the placement of the IF protein genes of the tardigrade Hypsibius dujardini (highlighted in red).
title_short Figure 3—figure supplement 2. Maximum likelihood tree under the empirical LG+G substitution model and accession numbers of 447 eukaryotic intermediate filament proteins and the placement of the IF protein genes of the tardigrade Hypsibius dujardini (highlighted in red).
title_full Figure 3—figure supplement 2. Maximum likelihood tree under the empirical LG+G substitution model and accession numbers of 447 eukaryotic intermediate filament proteins and the placement of the IF protein genes of the tardigrade Hypsibius dujardini (highlighted in red).
title_fullStr Figure 3—figure supplement 2. Maximum likelihood tree under the empirical LG+G substitution model and accession numbers of 447 eukaryotic intermediate filament proteins and the placement of the IF protein genes of the tardigrade Hypsibius dujardini (highlighted in red).
title_full_unstemmed Figure 3—figure supplement 2. Maximum likelihood tree under the empirical LG+G substitution model and accession numbers of 447 eukaryotic intermediate filament proteins and the placement of the IF protein genes of the tardigrade Hypsibius dujardini (highlighted in red).
title_sort figure 3—figure supplement 2. maximum likelihood tree under the empirical lg+g substitution model and accession numbers of 447 eukaryotic intermediate filament proteins and the placement of the if protein genes of the tardigrade hypsibius dujardini (highlighted in red).
publisher eLife Sciences Publications, Ltd
publishDate 2016
url http://dx.doi.org/10.7554/elife.11117.010
genre Copepods
Tardigrade
genre_facet Copepods
Tardigrade
op_doi https://doi.org/10.7554/elife.11117.010
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