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The Emergence of Earliest Angiosperms May be Earlier than Fossil Evidence Indicates

机译:最早的Anviaperms的出现可能比化石证据提前表明

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摘要

Abstract—Gaps between molecular ages and fossils undermine the validity of time-calibrated molecular phylogenies. An example of the time gap surrounds the age of angiosperms’ origin. We calculate molecular ages of the earliest flowering plant lineages using 22fossil calibrations (101 genera, 40 families). Our results reveal the origin of angiosperms at the late Permian, ∼275 million years ago. Different prior probability curves of molecular age calculations on dense calibration point distributions had little effect on overall age estimatescompared to the effects of altered calibration points. The same is true for reasonable root age constraints. We conclude that our age estimates based on multiple datasets, priors, and calibration points are robust and the true ages are likely between our extremes. Our results, when integratedwith the ecophysiological evolution of early angiosperms, imply that the ecology of the earliest angiosperms is critical to understand the pre-Cretaceous evolution of flowering plants.
机译:摘要—分子年龄和化石之间的间隙破坏了时间校准的分子系统的有效性。时间差距的一个例子围绕着angiosperms&amp的年龄;#8217;起源。我们使用22fossil校准(101属,40个家庭)计算最早的开花植物谱系的分子年龄。我们的结果揭示了已故二叠纪,∼ 2.75亿年前的Angiospers的起源。致密校准点分布对分子年龄计算的不同现有概率曲线对整体年龄的影响几乎没有影响到改变校准点的影响。合理的根龄约束也是如此。我们得出结论,我们的年龄估计是基于多个数据集,前锋和校准点的估计是强大的,真正的年龄可能在我们的极端之间。我们的结果,当与早期高昂的生态学演变集成时,暗示最早的Anvioperms的生态学对于了解开花植物的前白垩纪演化至关重要。

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