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首页> 外文期刊>Communications Biology >Variation in appendages in early Cambrian bradoriids reveals a wide range of body plans in stem-euarthropods
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Variation in appendages in early Cambrian bradoriids reveals a wide range of body plans in stem-euarthropods

机译:早期寒武系的附属物变异揭示了茎 - 休息室的各种身体计划

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Traditionally, the origin and evolution of modern arthropod body plans has been revealed through increasing levels of appendage specialisation exhibited by Cambrian euarthropods. Here we show significant variation in limb morphologies and patterns of limb-tagmosis among three early Cambrian arthropod species conventionally assigned to the Bradoriida. These arthropods are recovered as a monophyletic stem-euarthropod group (and sister taxon to crown-group euarthropods, i.e. Chelicerata, Mandibulata and their extinct relatives), thus implying a radiation of stem-euarthropods where trends towards increasing appendage specialisation were explored convergently with other euarthropod groups. The alternative solution, where bradoriids are polyphyletic, representing several independent origins of a small, bivalved body plan in lineages from diverse regions of the euarthropod and mandibulate stems, is only marginally less parsimonious. The new data reveal a previously unknown disparity of body plans in stem-euarthropods and both solutions support remarkable evolutionary convergence, either of fundamental body plans or appendage specialization patterns. Dayou Zhai et al. show marked variation in limb morphology and patterns in limb-tagmosis in three early Cambrian bradoriid arthropods. This suggests remarkable evolutionary convergence, either of fundamental body plans or appendage specialization patterns.
机译:传统上,现代节肢动物前置计划的起源和演变已经通过寒武纪欧洲群体展示的封面专业水平越来越多地揭示了。在这里,我们展示了常规分配给Bradoriida的三种早期寒武纪节肢动物种类的肢体形态和肢体曲线模式的显着变化。这些节肢动物作为单晶干 - euarthropod组(和姐妹分类为冠组休息室,即Chelicerata,Mandibulata及其灭绝亲属),因此暗示了茎欧育的辐射,其中涉及伴随其他伴随的阑尾专业化的趋势休息室。替代解决方案,其中布拉索氏菌是多骨,代表来自休息区的不同区域的小型,双向体平面的几个独立的起源,仅略微不那样减少。新数据揭示了Stew-euarthropods中的前身差异,以及两种解决方案支持卓越的进化趋同,基本的身体计划或附属专业模式。 Dayou zhai等。显示三种早期寒武纪布拉多利节肢动物中肢体形态和模式的显着变化。这表明了卓越的进化融合,基本的身体计划或附属专业模式。

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