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The cytochrome P450 genesis locus: the origin and evolution of animal cytochrome P450s

机译:细胞色素P450的起源所在地:动物细胞色素P450的起源和进化

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摘要

The neighbourhoods of cytochrome P450 (CYP) genes in deuterostome genomes, as well as those of the cnidarians Nematostella vectensis and Acropora digitifera and the placozoan Trichoplax adhaerens were examined to find clues concerning the evolution of CYP genes in animals. CYP genes created by the 2R whole genome duplications in chordates have been identified. Both microsynteny and macrosynteny were used to identify genes that coexisted near CYP genes in the animal ancestor. We show that all 11 CYP clans began in a common gene environment. The evidence implies the existence of a single locus, which we term the ‘cytochrome P450 genesis locus’, where one progenitor CYP gene duplicated to create a tandem set of genes that were precursors of the 11 animal CYP clans: CYP Clans 2, 3, 4, 7, 19, 20, 26, 46, 51, 74 and mitochondrial. These early CYP genes existed side by side before the origin of cnidarians, possibly with a few additional genes interspersed. The Hox gene cluster, WNT genes, an NK gene cluster and at least one ARF gene were close neighbours to this original CYP locus. According to this evolutionary scenario, the CYP74 clan originated from animals and not from land plants nor from a common ancestor of plants and animals. The CYP7 and CYP19 families that are chordate-specific belong to CYP clans that seem to have originated in the CYP genesis locus as well, even though this requires many gene losses to explain their current distribution. The approach to uncovering the CYP genesis locus overcomes confounding effects because of gene conversion, sequence divergence, gene birth and death, and opens the way to understanding the biodiversity of CYP genes, families and subfamilies, which in animals has been obscured by more than 600 Myr of evolution.
机译:研究了氘化口琴基因组中细胞色素P450(CYP)基因的邻域,以及刺胞Nematostella vectensis和Acropora digitifera以及placozoan Trichoplax adhaerens的邻域,以寻找有关动物中CYP基因进化的线索。 CYP基因是由2R全基因组重复在脊索动物中创建的。微同位和大同位都用于鉴定在动物祖先中与CYP基因共存的基因。我们显示所有11个CYP氏族都始于共同的基因环境。有证据表明存在单个基因座,我们称其为“细胞色素P450起源基因座”,其中一个祖先CYP基因重复产生一系列串联基因,这些基因是11种动物CYP氏族的前体:CYP氏族2、3, 4、7、19、20、26、46、51、74和线粒体。这些早期的CYP基因在刺胞动物起源之前并存,可能还散布了一些其他基因。 Hox基因簇,WNT基因,NK基因簇和至少一个ARF基因与该原始CYP基因座紧密相邻。根据这种进化情况, CYP74 家族起源于动物,而不是陆地植物,也不是动植物的共同祖先。特定于柠檬酸盐的 CYP7 CYP19 家族属于 CYP 家族,这些家族似乎起源于 CYP 尽管这需要很多基因损失来解释其当前分布,但也可以考虑创世基因座。揭示 CYP 基因位点的方法克服了由于基因转换,序列差异,基因出生和死亡而造成的混杂影响,为了解 CYP 基因的生物多样性开辟了道路,家族和亚科,它们在动物中被超过600 Myr的进化所掩盖。

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