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Morphological Stasis and Proteome Innovation in Cephalochordates

机译:头部成功的形态瘀滞与蛋白质组创新

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Lancelets, extant representatives of basal chordates, are prototypic examples of evolutionary stasis; they preserved a morphology and body-plan most similar to the fossil chordates from the early Cambrian. Such a low level of morphological evolution is in harmony with a low rate of amino acid substitution; cephalochordate proteins were shown to evolve slower than those of the slowest evolving vertebrate, the elephant shark. Surprisingly, a study comparing the predicted proteomes of Chinese amphioxus, Branchiostoma belcheri and the Florida amphioxus, Branchiostoma floridae has led to the conclusion that the rate of creation of novel domain combinations is orders of magnitude greater in lancelets than in any other Metazoa, a finding that contradicts the notion that high rates of protein innovation are usually associated with major evolutionary innovations. Our earlier studies on a representative sample of proteins have provided evidence suggesting that the differences in the domain architectures of predicted proteins of these two lancelet species reflect annotation errors, rather than true innovations. In the present work, we have extended these studies to include a larger sample of genes and two additional lancelet species, Asymmetron lucayanum and Branchiostoma lanceolatum. These analyses have confirmed that the domain architecture differences of orthologous proteins of the four lancelet species are because of errors of gene prediction, the error rate in the given species being inversely related to the quality of the transcriptome dataset that was used to aid gene prediction.
机译:Lancelets,基础弦的现存代表,是进化瘀滞的原型例子;它们保留了与早期寒武纪的化石弦相似的形态和体态。这种低水平的形态演化与低氨基酸取代率和谐;显示头孢菌蛋白比大象鲨鱼的最慢的演化脊椎动物的慢速发展慢。令人惊讶的是,一项研究比较中国Amphioxus的预测蛋白质,Branchiostoma Belcheri和佛罗里达疗法,Brankiostoma佛罗里达州的研究已经得出结论,新型域组合的创建率是Lancelets的数量级比在任何其他美容中,一个发现与蛋白质创新的高率相矛盾,通常与主要的进化创新有关。我们对代表性的蛋白质样本的研究提供了证据,提示这两个兰塞特物种预测蛋白的域架构的差异反映了注释误差,而不是真正的创新。在目前的工作中,我们已经扩展了这些研究,包括更大的基因样本和两种额外的植物,无论狼蛛和科氏体龟头抑制。这些分析证实,四种植物物种的正交蛋白质的域架构差异是由于基因预测的误差,给定物种中的误差率与用于帮助基因预测的转录组数据集的质量反向。

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