Transcriptomic analysis of sea star development through metamorphosis to the highly derived pentameral body plan with a focus on neural transcription factors.

Maria Byrne, Demian Koop, Dario Strbenac, Paula Cisternas, Regina Balogh, Jean Yee Hwa Yang, Phillip L Davidson, Gregory Wray
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引用次数: 8

Abstract

The Echinodermata is characterized by a secondarily evolved pentameral body plan. While the evolutionary origin of this body plan has been the subject of debate, the molecular mechanisms underlying its development are poorly understood. We assembled a de novo developmental transcriptome from the embryo through metamorphosis in the sea star Parvulastra exigua. We use the asteroid model as it represents the basal-type echinoderm body architecture. Global variation in gene expression distinguished the gastrula profile and showed that metamorphic and juvenile stages were more similar to each other than to the pre-metamorphic stages, pointing to the marked changes that occur during metamorphosis. Differential expression and gene ontology (GO) analyses revealed dynamic changes in gene expression throughout development and the transition to pentamery. Many GO terms enriched during late metamorphosis were related to neurogenesis and signalling. Neural transcription factor genes exhibited clusters with distinct expression patterns. A suite of these genes was up-regulated during metamorphosis (e.g. Pax6, Eya, Hey, NeuroD, FoxD, Mbx, and Otp). In situ hybridization showed expression of neural genes in the CNS and sensory structures. Our results provide a foundation to understand the metamorphic transition in echinoderms and the genes involved in development and evolution of pentamery.

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海星从变态发育到高度衍生的五体形体的转录组学分析,重点是神经转录因子。
棘皮动物的特征是二级进化的五体结构。虽然这种身体计划的进化起源一直是争论的主题,但其发展背后的分子机制却知之甚少。我们在海星Parvulastra exigua的胚胎中通过变态组装了一个从头发育的转录组。我们使用小行星模型,因为它代表了基底型棘皮动物的身体结构。基因表达的全球变化区分了原胚谱,表明变质期和幼期比前变质期更相似,表明在变质过程中发生了明显的变化。差异表达和基因本体论(GO)分析揭示了基因表达在发育和向五聚体过渡过程中的动态变化。许多氧化石墨烯在变态后期富集,与神经发生和信号传导有关。神经转录因子基因呈现出不同表达模式的集群。这些基因中的一组在变态过程中被上调(如Pax6、Eya、Hey、NeuroD、FoxD、Mbx和Otp)。原位杂交显示神经基因在中枢神经系统和感觉结构中表达。本研究结果为进一步了解棘皮动物的变质过程及参与五聚体发育演化的基因提供了基础。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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