Abstract
AbstractCyclical parthenogenesis, where females can engage in sexual or asexual reproduction depending on environmental conditions, represents a novel reproductive phenotype that emerged during eukaryotic evolution. The fact that environmental conditions can trigger cyclically parthenogens to engage in distinct reproductive modes strongly suggests that gene expression plays a key role in the origin of cyclical parthenogenesis. However, the genetic basis underlying cyclical parthenogenesis remains understudied. In this study we characterize the female transcriptomic signature of sexual vs. asexual reproduction in the cyclically parthenogenetic microcrustacean Daphnia pulex and D. pulicaria. Our analyses of differentially expressed genes, pathway enrichment, and GO term enrichment clearly show that compared to sexual reproduction the asexual reproductive stage is characterized by both the under-regulation of meiosis and cell-cycle genes and the up-regulation of metabolic genes. We suggest that the under-regulation of meiosis and cell-cycle genes is responsible for the origin of parthenogenesis from meiosis, whereas differentially expressed metabolic genes may mediate choice of asexual vs. sexual reproductive pathway. Furthermore, our analyses identify some cases of divergent expression among gene family members (e.g., doublesex, NOTCH2) associated with asexual or sexual reproductive stage, suggesting potential functional divergence among gene family members.
Publisher
Cold Spring Harbor Laboratory
Reference41 articles.
1. Bell G. 1982. The masterpiece of nature: the evolution and genetics of sexuality: Kluwer Academic Publishers.
2. Benzie JAH . 2005. Cladocera : the genus Daphnia (including Daphniopsis) (Anomopoda: Daphniidae). Leiden: Backhuys.
3. The Cladocera of Ontario with remarks on some species and distribution
4. Asexual reproduction in nonmarine ostracods
5. Origins of the machinery of recombination and sex
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