Lack of paternal silencing and ecotype-specific expression in head and body lice hybrids

Author:

Marshall Hollie12ORCID,de la Filia Andrés G1,Cavalieri Ross3,Mallon Eamonn B2,Clark John M3,Ross Laura1ORCID

Affiliation:

1. School of Biological Sciences, Institute of Evolutionary Biology, The University of Edinburgh , Edinburgh , United Kingdom

2. The Department of Genetics and Genome Biology, University of Leicester , Leicester , United Kingdom

3. Massachusetts Pesticide Analysis Lab, Veterinary and Animal Sciences, University of Massachusetts Amherst , Massachusetts , United States

Abstract

Abstract Paternal genome elimination (PGE) is a non-Mendelian inheritance system, described in numerous arthropod species, in which males develop from fertilized eggs, but their paternally inherited chromosomes are eliminated before or during spermatogenesis. Therefore, PGE males only transmit their maternally inherited set of chromosomes to their offspring. In addition to the elimination of paternal chromosomes, diverse PGE species have also repeatedly evolved the transcriptional silencing of the paternal genome, making males effectively haploid. However, it is unclear if this paternal chromosome silencing is mechanistically linked to the chromosome elimination or has evolved at a later stage, and if so, what drives the haploidization of males under PGE. In order to understand these questions, here we study the human louse, Pediculus humanus, which represents an ideal model system, as it appears to be the only instance of PGE where males eliminate, but not silence their paternal chromosomes, although the latter remains to be shown conclusively. In this study, we analyzed parent-of-origin allele-specific expression patterns in male offspring of crosses between head and body lice ecotypes. We show that hybrid adult males of P. humanus display biparental gene expression, which constitutes the first case of a species with PGE in which genetic activity of paternal chromosomes in the soma is not affected by embryonic silencing or (partial or complete) elimination. We did however also identify a small number of maternally biased genes (potentially imprinted genes), which may be involved in the elimination of paternal chromosomes during spermatogenesis. Finally, we have identified genes that show ecotype-specific expression bias. Given the low genetic diversity between ecotypes, this is suggestive for a role of epigenetic processes in ecotype differences.

Funder

European Research Council

Publisher

Oxford University Press (OUP)

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