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首页> 外文期刊>Developmental biology >Shedding genomic light on Aristotle's lantern. [Review] [21 refs]
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Shedding genomic light on Aristotle's lantern. [Review] [21 refs]

机译:在亚里士多德的灯笼上散发出基因组光。 [评论] [21个裁判]

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摘要

Sea urchins have proved fascinating to biologists since the time of Aristotle who compared the appearance of their bony mouth structure to a lantern in The History of Animals. Throughout modern times it has been a model system for research in developmental biology. Now, the genome of the sea urchin Strongylocentrotus purpuratus is the first echinoderm genome to be sequenced. A high quality draft sequence assembly was produced using the Atlas assembler to combine whole genome shotgun sequences with sequences from a collection of BACs selected to form a minimal tiling path along the genome. A formidable challenge was presented by the high degree of heterozygosity between the two haplotypes of the selected male representative of this marine organism. This was overcome by use of the BAC tiling path backbone, in which each BAC represents a single haplotype, as well as by improvements in the Atlas software. Another innovation introduced in this project was the sequencing of pools of tiling path BACs rather than individual BAC sequencing. The Clone-Array Pooled Shotgun Strategy greatly reduced the cost and time devoted to preparing shotgun libraries from BAC clones. The genome sequence was analyzed with several gene prediction methods to produce a comprehensive gene list that was then manually refined and annotated by a volunteer team of sea urchin experts. This latter annotation community edited over 9000 gene models and uncovered many unexpected aspects of the sea urchin genetic content impacting transcriptional regulation, immunology, sensory perception, and an organism's development. Analysis of the basic deuterostome genetic complement supports the sea urchin's role as a model system for deuterostome and, by extension, chordate development. [References: 21]
机译:自亚里斯多德时代以来,生物学家就已经对海胆着迷了。亚里斯多德曾将其嘴形结构的外观与《动物史》中的灯笼进行了比较。在整个现代,它一直是用于发育生物学研究的模型系统。现在,海胆Strongylocentrotus purpuratusus的基因组是第一个被测序的棘皮动物基因组。使用Atlas汇编器将整个基因组shot弹枪序列与BAC集合中的序列结合在一起,产生了高质量的草图序列,该序列被选为沿着基因组的最小平铺路径。所选择的该海洋生物雄性代表的两个单倍型之间的高度杂合度提出了一个严峻的挑战。通过使用BAC切片路径主干(其中每个BAC代表单个单元型)以及Atlas软件的改进,可以克服此问题。该项目引入的另一项创新是对平铺路径BAC池的排序,而不是单个BAC排序。克隆阵列合并Shot弹枪策略大大降低了从BAC克隆制备preparing弹枪库的成本和时间。用几种基因预测方法对基因组序列进行了分析,以产生一个综合的基因表,然后由海胆专家的志愿者小组手动对其进行完善和注释。后一个注释社区编辑了9000多个基因模型,并发现了海胆遗传成分的许多意外方面,这些方面会影响转录调控,免疫学,感官知觉和生物的发育。基本氘代动物基因补充基因的分析支持了海胆作为氘代动物模型系统的作用,并由此扩展了脊索动物的发育。 [参考:21]

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