Search bioRxiv⌕ Search

Biology subjects

Palitzsch, K.

Publications and source records attributed to Palitzsch, K..

2 recordsLinked to original sources

Decay of the CTCF paralog BORIS in neognathous birds

BORIS (brother of the regulator of imprinted sites), the paralog of the genome organizer CTCF, originated at least 318 million years ago (Mya), in the ancestor of amniotes (mammals, reptiles, and birds). Based on results from chicken (Gallus gallus), the gene was thought to be absent from birds. Using comparative genomics of 59 bird species, we show that birds possess BORIS, but frequently experience severe degradation of the gene, as observed in Gallus gallus. The degradation events are restricted to neognathous birds, specific for the BORIS coding sequence, and occur multiple times independently on different branches. They comprise a wide range of molecular decay, from individual point mutations to the inactivation and/or loss of particular zinc fingers, to the almost complete disintegration of the gene. The decay is accompanied by relaxed evolutionary constraints on BORIS codons across neognathous birds and coincides with the accumulation of species-specific repetitive elements in degenerate loci. BORIS represents a case of a presently ongoing, convergent, and specific gene loss within a lineage. As possible explanation, we propose a link between the loss of BORIS and a shift in sperm and/or genital morphology during the evolution of Neognathae. Significance StatementThe gene BORIS was believed to be absent from birds. However, genome analysis of 59 bird species reveals its presence, though it often underwent severe degradation in neognathous birds. These independent degradation events affect the BORIS coding sequence and range from point mutations to near complete gene disintegration. This decay correlates with relaxed evolutionary constraints and species-specific accumulation of repetitive elements. A potential link between BORIS loss and changes in sperm or genital morphology during neognathous bird evolution is suggested.

evolutionary biology↗

Copy number variation and population-specific immune genes in the model vertebrate zebrafish

Many species have hundreds of immune genes from the NLR family (Nucleotide-binding domain Leucine-rich Repeat containing). In plants they have a considerable amount of within-species variation, but not much is known about their variability in fishes. Here we captured and analysed the diversity of NLRs in zebrafish (Danio rerio) by sequencing 93 individuals from four wild and two laboratory strains. We found 1,560 unique NLR genes, and theoretical modelling revealed each wild population to have around 2,000. Only 100-550 were detected in each individual fish, and the observed variance of copy numbers differed among populations. Laboratory strains were found to have three times less NLRs than wild populations, and their genetic diversity was lower in general. Many NLRs showed no single nucleotide variation, but those that did showed evidence of purifying selection. Our study lays the groundwork for unraveling mechanisms driving the evolution of this large gene family in vertebrates. Significance statementWe show here that the gene repertoires of vertebrates can be extremely variable, with different individuals having different genes. By sequencing one large family of immune receptors from 93 wild and laboratory zebrafish we found hundreds of novel gene copies, each only present in specific strains or specific individuals. Our observations can be explained by a combination of complex patterns of inheritance and a high rate of gene birth and death.

genetics↗