De Novo Transcriptome Assembly and Sex-Biased Gene Expression in the Cyclical Parthenogenetic Daphnia galeata

Daphnia species have become models for ecological genomics and exhibit interesting features, such as high phenotypic plasticity and a densely packed genome with many lineage-specific genes. They are also cyclic parthenogenetic, with alternating asexual and sexual cycles and environmental sex determi...

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Veröffentlicht in:Genome biology and evolution 2016-10, Vol.8 (10), p.3120-3139
Hauptverfasser: Huylmans, Ann Kathrin, López Ezquerra, Alberto, Parsch, John, Cordellier, Mathilde
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container_end_page 3139
container_issue 10
container_start_page 3120
container_title Genome biology and evolution
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creator Huylmans, Ann Kathrin
López Ezquerra, Alberto
Parsch, John
Cordellier, Mathilde
description Daphnia species have become models for ecological genomics and exhibit interesting features, such as high phenotypic plasticity and a densely packed genome with many lineage-specific genes. They are also cyclic parthenogenetic, with alternating asexual and sexual cycles and environmental sex determination. Here, we present a de novo transcriptome assembly of over 32,000 D. galeata genes and use it to investigate gene expression in females and spontaneously produced males of two clonal lines derived from lakes in Germany and the Czech Republic. We find that only a low percentage (18%) of genes shows sex-biased expression and that there are many more female-biased gene (FBG) than male-biased gene (MBG). Furthermore, FBGs tend to be more conserved between species than MBGs in both sequence and expression. These patterns may be a consequence of cyclic parthenogenesis leading to a relaxation of purifying selection on MBGs. The two clonal lines show considerable differences in both number and identity of sex-biased genes, suggesting that they may have reproductive strategies differing in their investment in sexual reproduction. Orthologs of key genes in the sex determination and juvenile hormone pathways, which are thought to be important for the transition from asexual to sexual reproduction, are present in D. galeata and highly conserved among Daphnia species.
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subjects Animals
Daphnia - genetics
Daphnia - growth & development
Daphnia - physiology
Female
Gene Expression Regulation, Developmental
Male
Parthenogenesis - genetics
Selection, Genetic
Sex Determination Processes - genetics
Transcriptome
title De Novo Transcriptome Assembly and Sex-Biased Gene Expression in the Cyclical Parthenogenetic Daphnia galeata
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