Department of Biology, University of Iowa, Iowa City, IA 52242, USA.
J Hered. 2013 May-Jun;104(3):357-70. doi: 10.1093/jhered/est011. Epub 2013 Mar 13.
A long-standing question in evolutionary biology is how sexual reproduction has persisted in eukaryotic lineages. As cyclical parthenogens, monogonont rotifers are a powerful model for examining this question, yet the molecular nature of sexual reproduction in this lineage is currently understudied. To examine genes involved in meiosis, we generated partial genome assemblies for 2 distantly related monogonont species, Brachionus calyciflorus and B. manjavacas. Here we present an inventory of 89 meiotic genes, of which 80 homologs were identified and annotated from these assemblies. Using phylogenetic analysis, we show that several meiotic genes have undergone relatively recent duplication events that appear to be specific to the monogonont lineage. Further, we compare the expression of "meiosis-specific" genes involved in recombination and all annotated copies of the cell cycle regulatory gene CDC20 between obligate parthenogenetic (OP) and cyclical parthenogenetic (CP) strains of B. calyciflorus. We show that "meiosis-specific" genes are expressed in both CP and OP strains, whereas the expression of one of the CDC20 genes is specific to cyclical parthenogenesis. The data presented here provide insights into mechanisms of cyclical parthenogenesis and establish expectations for studies of obligate asexual relatives of monogononts, the bdelloid rotifer lineage.
在进化生物学中,一个长期存在的问题是有性繁殖是如何在真核生物谱系中持续存在的。作为周期性的单性生殖轮虫,单性生殖轮虫是研究这个问题的有力模型,但该谱系中有性繁殖的分子本质目前研究得还不够充分。为了研究参与减数分裂的基因,我们为两种亲缘关系较远的单性生殖轮虫,Brachionus calyciflorus 和 B. manjavacas,生成了部分基因组组装。在这里,我们提出了 89 个减数分裂基因的清单,其中 80 个同源物是从这些组装中鉴定和注释的。通过系统发育分析,我们表明,几个减数分裂基因经历了相对较近的重复事件,这些重复事件似乎是单性生殖谱系所特有的。此外,我们比较了 B. calyciflorus 中强制性单性生殖(OP)和周期性单性生殖(CP)菌株中参与重组的“减数分裂特异性”基因和所有注释的细胞周期调控基因 CDC20 的表达。我们表明,“减数分裂特异性”基因在 CP 和 OP 菌株中都有表达,而 CDC20 基因的一个拷贝的表达则是周期性单性生殖所特有的。这里呈现的数据为周期性单性生殖的机制提供了一些见解,并为研究单性生殖轮虫的专性无性亲属,即蛭形轮虫谱系,提供了预期。