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Inference of facultative mobility in the enigmatic Ediacaran organism Parvancorina

机译:神秘的Ediacaran生物Parvancorina的兼性迁移性推断

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摘要

Establishing how Ediacaran organisms moved and fed is critical to deciphering their ecological and evolutionary significance, but has long been confounded by their non-analogue body plans. Here, we use computational fluid dynamics to quantitatively analyse water flow around the Ediacaran taxon Parvancorina, thereby testing between competing models for feeding mode and mobility. The results show that flow was not distributed evenly across the organism, but was directed towards localized areas; this allows us to reject osmotrophy, and instead supports either suspension feeding or detritivory. Moreover, the patterns of recirculating flow differ substantially with orientation to the current, suggesting that if Parvancorina was a suspension feeder, it would have been most efficient if it was able to re-orient itself with respect to current direction, and thus ensure flow was directed towards feeding structures. Our simulations also demonstrate that the amount of drag varied with orientation, indicating that Parvancorina would have greatly benefited from adjusting its position to minimize drag. Inference of facultative mobility in Parvancorina suggests that Ediacaran benthic ecosystems might have possessed a higher proportion of mobile taxa than currently appreciated from trace fossil studies. Furthermore, this inference of movement suggests the presence of musculature or appendages that are not preserved in fossils, but which would noneltheless support a bilaterian affinity for Parvancorina.
机译:建立埃迪卡拉动物如何移动和觅食对破译它们的生态和进化意义至关重要,但长期以来一直被它们的非拟生物体计划所困扰。在这里,我们使用计算流体动力学定量分析了Ediacaran分类单元Parvancorina周围的水流,从而测试了进水模式和流动性之间的竞争模型。结果表明,流量在整个生物体中分布不均,而是流向局部区域。这使我们可以拒绝渗透压,而支持悬浮饲料或有害物质。此外,再循环流的模式在与流向的方向上也大不相同,这表明如果Parvancorina是悬浮式供料器,那么如果它能够相对于流向重新定向,那将是最有效的,因此可以确保流向针对饲料结构。我们的模拟还表明,阻力的大小会随方向而变化,这表明Parvancorina将从调整其位置以最大程度地减小阻力中受益匪浅。在Parvancorina的兼性迁移的推论表明,Ediacaran底栖生态系统可能拥有比目前从痕迹化石研究中所了解的更高的移动类群比例。此外,对运动的这种推断表明存在化石中未保留的肌肉组织或附属物,但仍支持对Parvancorina的双边亲和力。

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