Figure S12. S-gene family 9304. A. Component architecture and phylogenetic tree of S-gene family 9304. Family 9304 is composed of two components (ATP-citrate lyase subunits A and B (ACLA and ACLB)) of prokaryotic origin according to our BLASTp taxonomic assignment (for the phylogenetic tree, blue: SAR, orange: Amoebozoa, purple: Opisthokonta) (15 sequences, 1171 sites, model LG + I + G4, 1000 ultrafast bootstraps). B. Maximum-likelihood phylogenetic tree of the ACLA component (green: Eukarya, blue: Archaea, red: Bacteria, black circle: bootstraps > 80%) (115 sequences, 364 sites, model LG + I + G4, 1000 ultrafast bootstraps). C. Maximum-likelihood phylogenetic tree of the ACLB component (green: Eukarya, blue: Archaea, red: Bacteria, black c...
Supporting data for this study, consisting of fasta sequences of S-genes, intron position alignments...
Phylogenetic tree of the amino-acid DDE transposase domain of 1631 autonomous Mutator-like elements....
Figure S5. One example of intron position conservation between one Opimoda (M. brevicollis, gi: 1675...
Figure S10. S-gene family 18,563. A. Component architecture and phylogenetic tree of S-gene family 1...
Detailed origin of prokaryotic S-gene components. Fam: S-gene family, Cpt: component, Cluster: clust...
Figure S6. Distribution of 573 S-gene families across eukaryotic species. The heatmap represents the...
Figure S15. Hierarchical clustering of S-gene families according to their component origins using th...
Figure S4. Putative phylogeny of eukaryotes, based on He et al. [85], that shows the distribution of...
Figure S7. KEGG map of the spliceosome showing the 15 S-genes in green (4504: Prp19, 3721; U1A/U2Bâ...
Figure S9. Protocol used for the taxonomic assignment of S-gene families. A. For each component of S...
Figure S14. Functional annotation of the S-genes involved in information storage and processing acco...
Figure S8. KEGG map of the glycerophospholipid pathway showing the 6 S-genes (26,775: 1.1.1.8; 19,54...
Figure S1. Pie chart of bacterial affinities of the bacterial components of ChiC-gene families. For ...
Results of phylogenetic analysis of S-gene families and of components of S-genes. (XLSX 78 kb
Annotation of the 573 S-gene families detected in our study. Columns B, C, and D correspond to the E...
Supporting data for this study, consisting of fasta sequences of S-genes, intron position alignments...
Phylogenetic tree of the amino-acid DDE transposase domain of 1631 autonomous Mutator-like elements....
Figure S5. One example of intron position conservation between one Opimoda (M. brevicollis, gi: 1675...
Figure S10. S-gene family 18,563. A. Component architecture and phylogenetic tree of S-gene family 1...
Detailed origin of prokaryotic S-gene components. Fam: S-gene family, Cpt: component, Cluster: clust...
Figure S6. Distribution of 573 S-gene families across eukaryotic species. The heatmap represents the...
Figure S15. Hierarchical clustering of S-gene families according to their component origins using th...
Figure S4. Putative phylogeny of eukaryotes, based on He et al. [85], that shows the distribution of...
Figure S7. KEGG map of the spliceosome showing the 15 S-genes in green (4504: Prp19, 3721; U1A/U2Bâ...
Figure S9. Protocol used for the taxonomic assignment of S-gene families. A. For each component of S...
Figure S14. Functional annotation of the S-genes involved in information storage and processing acco...
Figure S8. KEGG map of the glycerophospholipid pathway showing the 6 S-genes (26,775: 1.1.1.8; 19,54...
Figure S1. Pie chart of bacterial affinities of the bacterial components of ChiC-gene families. For ...
Results of phylogenetic analysis of S-gene families and of components of S-genes. (XLSX 78 kb
Annotation of the 573 S-gene families detected in our study. Columns B, C, and D correspond to the E...
Supporting data for this study, consisting of fasta sequences of S-genes, intron position alignments...
Phylogenetic tree of the amino-acid DDE transposase domain of 1631 autonomous Mutator-like elements....
Figure S5. One example of intron position conservation between one Opimoda (M. brevicollis, gi: 1675...