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Mating system shifts and transposable element evolution in the plant genus Capsella

机译:s菜属中的交配系统转移和转座因子进化

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摘要

BackgroundDespite having predominately deleterious fitness effects, transposable elements (TEs) are major constituents of eukaryote genomes in general and of plant genomes in particular. Although the proportion of the genome made up of TEs varies at least four-fold across plants, the relative importance of the evolutionary forces shaping variation in TE abundance and distributions across taxa remains unclear. Under several theoretical models, mating system plays an important role in governing the evolutionary dynamics of TEs. Here, we use the recently sequenced Capsella rubella reference genome and short-read whole genome sequencing of multiple individuals to quantify abundance, genome distributions, and population frequencies of TEs in three recently diverged species of differing mating system, two self-compatible species (C. rubella and C. orientalis) and their self-incompatible outcrossing relative, C. grandiflora.
机译:背景尽管转座因子(TEs)具有主要有害的适应性作用,但它们通常是真核生物基因组尤其是植物基因组的主要成分。尽管整个植物中由TEs构成的基因组的比例至少变化了四倍,但尚不清楚形成TE丰度变化和整个类群分布的进化力的相对重要性。在几种理论模型下,交配系统在控制TEs的进化动力学中起着重要作用。在这里,我们使用最近测序的风疹无花果参比基因组和多个个体的短读全基因组测序来量化不同交配系统的三个最近分化物种,两个自相容物种(C)中TE的丰度,基因组分布和种群频率风疹和东方C.)及其自交不亲和的近缘亲缘种C. grandiflora。

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