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The Holozoan Capsaspora owczarzaki Possesses a Diverse Complement of Active Transposable Element Families

机译:霍洛佐人Capsaspora owczarzaki拥有主动转座因子家族的多种互补

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摘要

Capsaspora owczarzaki, a protistan symbiont of the pulmonate snail Biomphalaria glabrata, is the centre of much interest in evolutionary biology due to its close relationship to Metazoa. The whole genome sequence of this protist has revealed new insights into the ancestral genome composition of Metazoa, in particular with regard to gene families involved in the evolution of multicellularity. The draft genome revealed the presence of 23 families of transposable element, made up from DNA transposon as well as long terminal repeat (LTR) and non-LTR retrotransposon families. The phylogenetic analyses presented here show that all of the transposable elements identified in the C. owczarzaki genome have orthologous families in Metazoa, indicating that the ancestral metazoan also had a rich diversity of elements. Molecular evolutionary analyses also show that the majority of families has recently been active within the Capsaspora genome. One family now appears to be inactive and a further five families show no evidence of current transposition. Most individual element copies are evolutionarily young; however, a small proportion of inserts appear to have persisted for longer in the genome. The families present in the genome show contrasting population histories and appear to be in different stages of their life cycles. Transcriptome data have been analyzed from multiple stages in the C. owczarzaki life cycle. Expression levels vary greatly both between families and between different stages of the life cycle, suggesting an unexpectedly complex level of transposable element regulation in a single celled organism.
机译:Capsaspora owczarzaki是肺蜗牛Biomphalaria glabrata的原生生物共生体,由于它与后生动物密切相关,因此在进化生物学中引起了广泛关注。该原生生物的全基因组序列揭示了对后生动物祖先基因组组成的新见解,特别是涉及多细胞进化的基因家族。基因组草案显示存在23个转座因子家族,这些家族由DNA转座子以及长末端重复序列(LTR)和非LTR逆转座子家族组成。此处进行的系统发育分析表明,在owczarzaki C. owczarzaki基因组中鉴定出的所有转座因子均在后生动物中具有直系同源科,表明祖先后生动物也具有丰富的元素多样性。分子进化分析还显示,最近的大多数家族在Capsaspora基因组中一直活跃。现在,一个家庭似乎没有任何活动,另外五个家庭没有任何证据表明目前有换位。大多数个体元素拷贝在进化上都是年轻的。然而,一小部分插入物似乎在基因组中持续了更长的时间。基因组中存在的家族显示出相反的种群历史,似乎处于其生命周期的不同阶段。转录组数据已从owczarzaki生命周期的多个阶段进行了分析。家族之间以及生命周期的不同阶段之间的表达水平差异很大,这表明单个细胞生物中转座因子调控的水平出乎意料的复杂。

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