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Dynamics of a Novel Highly Repetitive CACTA Family in Common Bean (Phaseolus vulgaris)

机译:菜豆中新的高度重复的CACTA家族的动力学

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摘要

Transposons are ubiquitous genomic components that play pivotal roles in plant gene and genome evolution. We analyzed two genome sequences of common bean (Phaseolus vulgaris) and identified a new CACTA transposon family named pvCACTA1. The family is extremely abundant, as more than 12,000 pvCACTA1 elements were found. To our knowledge, this is the most abundant CACTA family reported thus far. The computational and fluorescence in situ hybridization (FISH) analyses indicated that the pvCACTA1 elements were concentrated in terminal regions of chromosomes and frequently generated AT-rich 3 bp target site duplications (TSD, WWW, W is A or T). Comparative analysis of the common bean genomes from two domesticated genetic pools revealed that new insertions or excisions of pvCACTA1 elements occurred after the divergence of the two common beans, and some of the polymorphic elements likely resulted in variation in gene sequences. pvCACTA1 elements were detected in related species but not outside the Phaseolus genus. We calculated the molecular evolutionary rate of pvCACTA1 transposons using orthologous elements that indicated that most transposition events likely occurred before the divergence of the two gene pools. These results reveal unique features and evolution of this new transposon family in the common bean genome.
机译:转座子是普遍存在的基因组成分,在植物基因和基因组进化中起关键作用。我们分析了普通豆(菜豆)的两个基因组序列,并确定了一个新的CACTA转座子家族,称为pvCACTA1。该家族非常丰富,发现了超过12,000个pvCACTA1元素。据我们所知,这是迄今为止报道的最丰富的CACTA家族。计算和荧光原位杂交(FISH)分析表明pvCACTA1元素集中在染色体的末端区域,并经常产生富含AT的3 bp目标位点重复(TSD,WWW,W为A或T)。对来自两个驯化的遗传库的普通豆基因组的比较分析显示,在两个普通豆分化之后,出现了新的pvCACTA1元件插入或切除,某些多态性元件可能导致基因序列变异。在相关物种中检测到了pvCACTA1元素,但在菜豆属之外未检测到。我们使用直系同源元件计算了pvCACTA1转座子的分子进化速率,这表明大多数转座事件可能发生在两个基因库发生分歧之前。这些结果揭示了普通豆基因组中这种新的转座子家族的独特特征和进化。

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