Search bioRxiv⌕ Search

Biology subjects

Swenty, T.

Publications and source records attributed to Swenty, T..

2 recordsLinked to original sources

Survey of transcription initiation in the streamlined genomes of Paramecium

In the genus Paramecium, the macronuclear genome is remarkably compact and optimized for gene expression. As a means to explore eukaryotic transcription in the context of a streamlined genome and shed light on the role of sequence architecture on gene expression and loss, we analyzed the distribution and diversity of candidate transcription initiation sites (TISs) in Paramecium sexaurelia, Paramecium tetraurelia and their outgroup, Paramecium caudatum. Our analysis suggests that for Paramecium, most genes have very short 5 prime UTRs (40 bp or less) and their transcription initiation regions (TIRs) have a median dispersion (akin to width) of 8-10 bp. The TIRs for the three species have high AT content. TIR dispersion is not to gene expression. However, mean TIS position relative to the translation start site per gene does in gene expression for the three species, and is often conserved between them. While mean TIS position and gene expression are linked, gene expression itself is the main driver of paralog retention in the aurelias. As compared to other eukaryotes, Paramecium has a uniquely well-defined and short main TIS region, and sequence motifs that likely diverge from the consensus in multicellular eukaryotes.

genomics↗

Evolutionary Analysis of Gene-expression Localization in the Model Crustacean, Daphnia pulex

Whole-genome sequencing provides lists of genes of putative relevance to organismal biology. However, in all metazoans, a large fraction of inferred genes has no known functions, in some cases with no orthologs in related species, and even orthology at the DNA-sequence level often not providing indisputable evidence of gene function. A first step towards resolving the functional features of gene encyclopedias in multicellular species is to evaluate the tissues in which individual genes are expressed. Here, we report on assays of expression for the full sets of protein-coding and long-noncoding RNA (lncRNA) genes across eight tissues of the microcrustacean Daphnia pulex. We also take advantage of a large database on levels of polymorphism and divergence for each gene to infer various features of selection operating on genes expressed in different tissues, including novel genes restricted to particular Daphnia lineages. In addition to generating a resource for future work on the molecular, cellular, and developmental biology of the model species D. pulex, this study highlights a number of novel findings. These include the identification of sets of genes experiencing unusual forms of positive selection, the discovery of unusual patterns of evolution in the pool of testes-specific genes, rapid turnover and sequence evolution of lncRNA genes, and the pervasive operation of selection on genes thought to be D. pulex-specific.

evolutionary biology↗