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Cambrian bivalved arthropod reveals origin of arthrodization

机译:寒武纪双壳节肢动物揭示了节育的起源

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摘要

Extant arthropods are diverse and ubiquitous, forming a major constituent of most modern ecosystems. Evidence from early Palaeozoic Konservat Lagerstätten indicates that this has been the case since the Cambrian. Despite this, the details of arthropod origins remain obscure, although most hypotheses regard the first arthropods as benthic predators or scavengers such as the fuxianhuiids or megacheirans (‘great-appendage’ arthropods). Here, we describe a new arthropod from the Tulip Beds locality of the Burgess Shale Formation (Cambrian, series 3, stage 5) that possesses a weakly sclerotized thorax with filamentous appendages, encased in a bivalved carapace, and a strongly sclerotized, elongate abdomen and telson. A cladistic analysis resolved this taxon as the basal-most member of a paraphyletic grade of nekto-benthic forms with bivalved carapaces. This grade occurs at the base of Arthropoda (panarthropods with arthropodized trunk limbs) and suggests that arthrodization (sclerotization and jointing of the exoskeleton) evolved to facilitate swimming. Predatory and fully benthic habits evolved later in the euarthropod stem-lineage and are plesiomorphically retained in pycnogonids (sea spiders) and euchelicerates (horseshoe crabs and arachnids).
机译:现存的节肢动物种类繁多,无处不在,是大多数现代生态系统的主要组成部分。早期古生代KonservatLagerstätten的证据表明,自寒武纪以来就是这种情况。尽管如此,节肢动物起源的细节仍然不清楚,尽管大多数假说都认为第一种节肢动物是底栖捕食者或清除剂,如副鞭毛虫或巨型节肢动物(“大附肢”节肢动物)。在这里,我们从Burgess页岩组(寒武系,系列3,第5期)的Tulip Beds地方描述了一种新节肢动物,该节肢动物的胸廓呈软化状,附有丝状附肢,被包裹在双壳甲壳中,而坚硬的细长形的腹部和telson。一项分类分析将这个分类单元确定为双壳甲壳动物的软体动物等级的最基本的成员。该等级发生在节肢动物(节肢动物的肢体节肢动物的脚)的底部,表明节肢动物化(硬化和外骨骼的接合)的发展有利于游泳。掠食性和完全底栖习性在后来的真人节肢动物谱系中演化,并以古怪的形态保留在pycnogonids(海蜘蛛)和euchelicerate(马蹄蟹和蜘蛛纲)中。

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