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Privman, E.

Publications and source records attributed to Privman, E..

2 recordsLinked to original sources

Molecular evolution of juvenile hormone esterase-like proteins in a socially exchanged fluid

Socially exchanged fluids are a direct means for organisms to influence conspecifics. When orally feeding larval offspring via trophallaxis, Camponotus floridanus ant workers were shown to transfer Juvenile Hormone (JH), a key developmental regulator, as well as paralogs of JH esterase (JHE), an enzyme that hydrolyzes JH. We combine proteomic, phylogenetic and selection analyses to investigate the evolution of this esterase subfamily. We show that Camponotus JHE-like proteins have sustained multiple duplications, positive selection, and changed localization to become abundantly and selectively present in trophallactic fluid. To assess their potential role in larval development, we fed workers a JHE-specific inhibitor to introduce it into the trophallactic network. This increased the proportion larvae reared to metamorphosis by these workers, similar to supplementation with JH. Together these findings suggest that JHE-like proteins have evolved new roles in inter-individual regulation of larval development in Camponotus.

evolutionary biology

Taxon sampling unequally affects individual nodes in a phylogenetic tree: consequences for model gene tree construction in SwissTree

Medium to large phylogenetic gene trees constructed from datasets of different species density and taxonomic range are rarely topologically consistent because of missing phylogenetic signal, non-phylogenetic signal and error. In this study, we first use simulations to show that taxon sampling unequally affects nodes in a gene tree, which likely contributes to controversial conclusions from taxon sampling experiments and contradicting species phylogenies such as for the boreoeutherians. Hence, because it is unlikely that a large gene tree can be reconstructed correctly based on a single optimized dataset, we take a two-step approach for the construction of model gene trees. First, stable and unstable clades are identified by comparing phylogenetic trees inferred from multiple datasets and data types (nucleotide, amino acid, codon) from the same gene family. Subsequently, data subsets are optimized for the analysis of individual uncertain clades. Results are summarized in form of a model tree that illustrates the evolutionary relationship of gene loci. A case study shows how a seemingly complex gene phylogeny becomes increasingly consistent with the reference species tree by attentive taxon sampling and subtree analysis. The procedure is progressively introduced to SwissTree (http://swisstree.vital-it.ch), a resource of high confidence model gene (locus) trees. Finally we demonstrate the usefulness of SwissTree for orthology benchmarking.

bioinformatics