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Sequence-Based Mapping and Genome Editing Reveal Mutations in Stickleback Hps5 Cause Oculocutaneous Albinism and the casper Phenotype

机译:基于序列的定位和基因组编辑揭示了棘背型Hps5基因突变导致眼皮肤白化病和卡斯珀表型

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Here, we present and characterize the spontaneous X-linked recessive mutation casper , which causes oculocutaneous albinism in threespine sticklebacks ( Gasterosteus aculeatus ). In humans, Hermansky-Pudlak syndrome results in pigmentation defects due to disrupted formation of the melanin-containing lysosomal-related organelle (LRO), the melanosome. casper mutants display not only reduced pigmentation of melanosomes in melanophores, but also reductions in the iridescent silver color from iridophores, while the yellow pigmentation from xanthophores appears unaffected. We mapped casper using high-throughput sequencing of genomic DNA from bulked casper mutants to a region of the stickleback X chromosome (chromosome 19) near the stickleback ortholog of Hermansky-Pudlak syndrome 5 ( Hps5 ). casper mutants have an insertion of a single nucleotide in the sixth exon of Hps5 , predicted to generate an early frameshift. Genome editing using CRISPR/Cas9 induced lesions in Hps5 and phenocopied the casper mutation. Injecting single or paired Hps5 guide RNAs revealed higher incidences of genomic deletions from paired guide RNAs compared to single gRNAs. Stickleback Hps5 provides a genetic system where a hemizygous locus in XY males and a diploid locus in XX females can be used to generate an easily scored visible phenotype, facilitating quantitative studies of different genome editing approaches. Lastly, we show the ability to better visualize patterns of fluorescent transgenic reporters in Hps5 mutant fish. Thus, Hps5 mutations present an opportunity to study pigmented LROs in the emerging stickleback model system, as well as a tool to aid in assaying genome editing and visualizing enhancer activity in transgenic fish.
机译:在这里,我们介绍并描述了自发的X连锁隐性突变卡斯珀,它引起了三脊刺回(Gasterosteus aculeatus)的眼皮肤白化病。在人类中,Hermansky-Pudlak综合征会导致色素沉着缺陷,这是由于含黑色素的溶酶体相关细胞器(LRO)黑色素体的形成受到破坏。 casper突变体不仅显示出黑色素体中黑素体的色素沉着减少,而且还显示了虹彩体中的虹彩银颜色的减少,而来自黄体素的黄色色素似乎不受影响。我们使用基因组DNA的高通量测序技术,从大量的卡斯珀突变体到卡斯珀X染色体(19号染色体)区域附近的卡斯珀作图,该区域靠近赫曼斯基-普德拉克综合征5(Hps5)的卡塔普直系同源物。 casper突变体在Hps5的第六个外显子中插入了一个核苷酸,预计会产生早期移码。使用CRISPR / Cas9进行基因组编辑可诱导Hps5中的病变并表型化Casper突变。与单个gRNA相比,注射单个或成对的Hps5指导RNA揭示了成对的指导RNA缺失基因组的可能性更高。 Stickleback Hps5提供了一个遗传系统,其中XY雄性的半合子基因座和XX雌性的二倍体基因座可用于生成易于评分的可见表型,从而促进了不同基因组编辑方法的定量研究。最后,我们展示了更好地可视化Hps5突变鱼中荧光转基因报告基因模式的能力。因此,Hps5突变提供了在新兴的棘背模型系统中研究有色LROs的机会,以及帮助分析基因组编辑和可视化转基因鱼中增强子活性的工具。

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