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From the Cover: Origin of the Eumetazoa: Testing ecological predictions of molecular clocks against the Proterozoic fossil record

机译:从封面开始:杜鹃花的起源:针对元古代化石记录测试分子钟的生态预测

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摘要

Molecular clocks have the potential to shed light on the timing of early metazoan divergences, but differing algorithms and calibration points yield conspicuously discordant results. We argue here that competing molecular clock hypotheses should be testable in the fossil record, on the principle that fundamentally new grades of animal organization will have ecosystem-wide impacts. Using a set of seven nuclear-encoded protein sequences, we demonstrate the paraphyly of Porifera and calculate sponge/eumetazoan and cnidarian/bilaterian divergence times by using both distance [minimum evolution (ME)] and maximum likelihood (ML) molecular clocks; ME brackets the appearance of Eumetazoa between 634 and 604 Ma, whereas ML suggests it was between 867 and 748 Ma. Significantly, the ME, but not the ML, estimate is coincident with a major regime change in the Proterozoic acritarch record, including: (i) disappearance of low-diversity, evolutionarily static, pre-Ediacaran acanthomorphs; (ii) radiation of the high-diversity, short-lived Doushantuo-Pertatataka microbiota; and (iii) an order-of-magnitude increase in evolutionary turnover rate. We interpret this turnover as a consequence of the novel ecological challenges accompanying the evolution of the eumetazoan nervous system and gut. Thus, the more readily preserved microfossil record provides positive evidence for the absence of pre-Ediacaran eumetazoans and strongly supports the veracity, and therefore more general application, of the ME molecular clock.
机译:分子钟有可能揭示早期后生动物发散的时间,但是不同的算法和校准点会产生明显不一致的结果。在此,我们认为,分子时钟假设的竞争性应该在化石记录中得到检验,其原则是,新的动物组织等级将对整个生态系统产生影响。使用一组七个核编码的蛋白质序列,我们证明了卟啉属的副生物,并通过使用距离[最小进化(ME)]和最大似然(ML)分子钟来计算海绵/大麦草胺和刺胞/胆母的发散时间。 ME将Eumetazoa的外观括在634至604 Ma之间,而ML则表明其介于867至748 Ma之间。值得注意的是,ME(而不是ML)的估计与元古代的先知记录中的主要政权变化同时发生,包括:(i)低多样性,进化上静态的埃迪卡拉car前棘突消失。 (ii)辐射度高,寿命短的杜沙图托-贝塔塔卡塔生物群的辐射; (iii)进化周转率增加了一个数量级。我们将这种营业额解释为由于伴随着杜鹃花神经系统和肠道进化而引起的新型生态挑战。因此,更容易保存的微化石记录提供了缺乏前埃迪卡拉安大生动物的积极证据,并强烈支持了ME分子钟的准确性,因此更广泛地应用。

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