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Comparative transcriptome analysis of obligately asexual and cyclically sexual rotifers reveals genes with putative functions in sexual reproduction, dormancy, and asexual egg production

机译:对专性无性和周期性有性轮虫进行的转录组比较分析揭示了在性繁殖,休眠和无性卵产生中具有推定功能的基因

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Background Sexual reproduction is a widely studied biological process because it is critically important to the genetics, evolution, and ecology of eukaryotes. Despite decades of study on this topic, no comprehensive explanation has been accepted that explains the evolutionary forces underlying its prevalence and persistence in nature. Monogonont rotifers offer a useful system for experimental studies relating to the evolution of sexual reproduction due to their rapid reproductive rate and close relationship to the putatively ancient asexual bdelloid rotifers. However, little is known about the molecular underpinnings of sex in any rotifer species. Results We generated mRNA-seq libraries for obligate parthenogenetic (OP) and cyclical parthenogenetic (CP) strains of the monogonont rotifer, Brachionus calyciflorus, to identify genes specific to both modes of reproduction. Our differential expression analysis identified receptors with putative roles in signaling pathways responsible for the transition from asexual to sexual reproduction. Differential expression of a specific copy of the duplicated cell cycle regulatory gene CDC20 and specific copies of histone H2A suggest that such duplications may underlie the phenotypic plasticity required for reproductive mode switch in monogononts. We further identified differential expression of genes involved in the formation of resting eggs, a process linked exclusively to sex in this species. Finally, we identified transcripts from the bdelloid rotifer Adineta ricciae that have significant sequence similarity to genes with higher expression in CP strains of B. calyciflorus. Conclusions Our analysis of global gene expression differences between facultatively sexual and exclusively asexual populations of B. calyciflorus provides insights into the molecular nature of sexual reproduction in rotifers. Furthermore, our results offer insight into the evolution of obligate asexuality in bdelloid rotifers and provide indicators important for the use of monogononts as a model system for investigating the evolution of sexual reproduction.
机译:背景技术有性生殖是被广泛研究的生物学过程,因为它对真核生物的遗传,进化和生态至关重要。尽管对该主题进行了数十年的研究,但尚未接受任何全面的解释来解释其普遍性和持久性背后的进化力。 Monogonont轮虫由于其快速的繁殖速度以及与公认的古代无性b实轮虫的密切关系,为与有性生殖进化有关的实验研究提供了有用的系统。但是,对于任何轮虫种类中性的分子基础了解甚少。结果我们生成了用于单性轮虫轮枝Brachionus calyciflorus的专性单性生殖(OP)和周期性单性生殖(CP)菌株的mRNA-seq文库,以鉴定对两种繁殖方式均特异的基因。我们的差异表达分析确定了在推定从无性生殖向有性生殖过渡的信号通路中具有假定作用的受体。复制的细胞周期调控基因CDC20的特定副本和组蛋白H2A的特定副本的差异表达表明,此类复制可能构成了单体生殖模式转换所需的表型可塑性。我们进一步确定了与静息卵形成有关的基因的差异表达,该过程仅与该物种的性别有关。最后,我们从B.loid rotifer Adineta ricciae中鉴定出了转录物,这些转录物与花椰菜CP菌株中具有较高表达的基因具有显着的序列相似性。结论我们对花椰菜的兼性和完全无性种群之间的全球基因表达差异的分析提供了对轮虫有性生殖的分子本质的见解。此外,我们的研究结果提供了洞见在轮虫中专性无性生殖的进化,并提供了重要的指标,这些指标对于使用单性腺作为研究性生殖进化的模型系统非常重要。

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