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Evolution of larval form in the sea star genus Patiriella: Conservation and change in the larval nervous system

机译:海星属Patiriella的幼虫形式的演变:幼虫神经系统的保护与变化

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摘要

The organization of the peptidergic system in the larvae of Patiriella species with divergent ontogenies was compared to determine which aspects of neurogenesis are conserved and which are altered in the evolution of development in these sea stars. F regularis has ancestral-type feeding bipinnaria and brachiolaria larvae and the organization of the nervous system, in association with feeding structures, paralleled the bilateral larval body plan. P calcar and P exigua have non-feeding planktonic and benthic brachiolariae, respectively, and there was no trace of the neuronal architecture involved with feeding. The nervous system in the attachment stage brachiolaria was similar in all three species and neuronal organization reflected larval symmetry. Delayed expression of peptidergic lineages to the brachiolaria stage in the lecithotrophs indicates heterochronic change in the timing of neurogenesis or deletion of the ancestral early neurogenic program. The bipinnarial program is suggested to be a developmental module autonomous from the brachiolar one. With a divergence time of less than 10 Ma, the evolution of development in Patiriella has resulted in extensive reduction in the complexity of the larval nervous system in parallel with simplification in larval form. There is, however, strong conservation in the morphology and neuronal architecture of structures involved with settlement.
机译:比较了帕特里拉幼虫在帕特里利亚幼虫中的组织,以确定神经发生的神经发生的哪些方面,并且在这些海星的发展演变中被改变。 F志患有祖先喂养的Bipinnaria和Brachiolaria幼虫和神经系统的组织,与喂养结构相关联,平行于双边幼虫体程。 P Calcar和P exigua分别具有非喂养的浮游和底栖乳香菌,并且没有饲料的神经元架构没有痕迹。在所有三种物种和神经元组织的附着阶段的神经系统在所有三种物种和神经元组织中都反映了幼虫对称性。脑卒中血型谱系在卵皮枝上的血型术中的延迟表达表明神经发生时或血管早期神经源性计划的缺失时的异形变化。建议Bipinnarial计划是从Brachiolar自主的发展模块。散落时间不到10 mA,在幼虫形式的简化中,Patireiella的发育的演化导致幼虫神经系统的复杂性大规模降低。然而,在沉降中涉及结构的形态和神经元结构的强烈守恒。

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