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Differential Expression in Testis and Liver Transcriptomes from Four Species of Peromyscus (Rodentia: Cricetidae)

机译:四种Peromyscus(Rodentia:Cricetidae)在睾丸和肝脏转录组中的差异表达

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摘要

The genus represents a rapidly diverged clade of Cricetid rodents that contains multiple cryptic species and has a propensity for morphologic conservation across its members. The unresolved relationships in previously proposed phylogenies reflect a suspected rapid adaptive radiation. To identify functional groups of genes that may be important in reproductive isolation in a reoccurring fashion across the phylogeny, liver and testis transcriptomes from four species ( . , . , . , and . ) were generated and differential expression (DE) tests were conducted. Taxa were selected to represent members diverged from a common ancestor: . + . (clade A), and . + . (clade B). Comparison of clades (A vs. B) suggested that 252 transcripts had significant DE in the liver data set, whereas significant DE was identified for 657 transcripts in the testis data set. Further, 45 genes had DE isoforms in the 657 testis transcripts and most of these functioned in major reproductive roles such as acrosome assembly, spermatogenesis, and cell cycle processes (meiosis). DE transcripts in the liver mapped to more broad gene ontology terms (metabolic processes, catabolic processes, response to chemical, and regulatory processes), and DE transcripts in the testis mapped to gene ontology terms associated with reproductive processes, such as meiosis, sperm motility, acrosome assembly, and sperm–egg fusion. These results suggest that a suite of genes that conduct similar functions in the testes may be responsible for the adaptive radiation events and potential reoccurring speciation of in terms of reproduction through varying expression levels.
机译:该属代表仓鼠啮齿类动物迅速分化的进化枝,其中包含多个隐性物种,并且在其成员之间具有形态学保守性。先前提出的系统发育中未解决的关系反映了可疑的快速适应性辐射。为了鉴定在系统发育上反复发生的生殖分离中可能重要的基因功能组,生成了四种,。,。,。和..的肝脏和睾丸转录组,并进行了差异表达(DE)测试。选择了分类单元来代表与共同祖先不同的成员。 +。 (类别A),和。 +。 (类别B)。进化枝的比较(A vs. B)表明,肝数据集中有252个转录本具有显着的DE,而睾丸数据集中657个转录本中具有显着的DE。此外,在657个睾丸转录物中有45个基因具有DE亚型,其中大多数在主要的生殖作用中起作用,例如顶体组装,精子发生和细胞周期过程(减数分裂)。肝脏中的DE转录物映射到更广泛的基因本体术语(代谢过程,分解代谢过程,对化学和调节过程的响应),而睾丸中的DE转录物映射到与生殖过程相关的基因本体术语,例如减数分裂,精子运动,顶体组装和精卵融合。这些结果表明,在睾丸中具有类似功能的一组基因可能是通过改变表达水平而导致的适应性放射事件和潜在的重复发生的繁殖。

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