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PiRNA dynamics in divergent zebrafish strains reveal long-lasting maternal influence on zygotic piRNA profiles

机译:斑马鱼不同菌株中的PiRNA动态揭示了母体对合子piRNA谱的长期影响

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摘要

Transposable elements (TEs) are mobile genetic elements that can have many deleterious effects on the fitness of their host. The germline-specific PIWI pathway guards the genome against TEs, deriving its specificity from sequence complementarity between PIWI-bound small RNAs (piRNAs) and the TEs. The piRNAs are derived from so-called piRNA clusters. Recent studies have demonstrated that the piRNA repertoire can be adjusted to accommodate recent TE invasions by capturing invading TEs in piRNA loci. Thus far, no information concerning piRNA divergence is available from vertebrates. We present piRNA analyses of two relatively divergent zebrafish strains. We find that significant differences in the piRNA populations have accumulated, most notably among active class I TEs. This divergence can be split into differences in piRNA abundance per element and differences in sense/antisense polarity ratios. In crosses between animals of the different strains, many of these differences are resolved in the progeny. However, some differences remain, often leaning to the maternally contributed piRNA population. These differences can be detected at least two generations later. Our data illustrate, for the first time, the fluidity of piRNA populations in vertebrates and how the established diversity is transmitted to future generations.
机译:转座因子(TEs)是可移动的遗传元素,可能对其寄主的健康造成许多有害影响。种系特有的PIWI途径可保护基因组免受TEs侵害,其特异性来自PIWI结合的小RNA(piRNA)与TEs之间的序列互补性。 piRNA源自所谓的piRNA簇。最近的研究表明,可以通过捕获piRNA基因座中入侵的TEs来调整piRNA组成,以适应最近的TE入侵。迄今为止,脊椎动物没有关于piRNA差异的信息。我们目前对两种相对不同的斑马鱼菌株进行piRNA分析。我们发现,在piRNA群体中积累了显着差异,最显着的是活跃的I类TE。这种差异可以分为每个元素的piRNA丰度差异和有义/反义极性比差异。在不同品系的动物之间的杂交中,许多差异在子代中得以解决。但是,仍然存在一些差异,通常倾向于母体贡献的piRNA群体。这些差异可以至少在两代后被检测到。我们的数据首次说明了脊椎动物中piRNA种群的流动性以及已建立的多样​​性如何传播给后代。

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