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海胆高度特化的辐射状身体结构的转录组分析。

Transcriptomic analysis of the highly derived radial body plan of a sea urchin.

作者信息

Wygoda Jennifer A, Yang Yee, Byrne Maria, Wray Gregory A

机构信息

Department of Biology, Duke University.

出版信息

Genome Biol Evol. 2014 Apr;6(4):964-73. doi: 10.1093/gbe/evu070.

Abstract

With their complex life cycle and highly derived body plan, echinoderms are unique among bilaterians. Although early development has been intensively studied, the molecular mechanisms underlying development of the adult echinoderm and its unusual radial body plan are largely unknown. To investigate the evolution of developmental changes in gene expression underlying radial body plan development and metamorphosis, we assembled a reference transcriptome de novo and used RNA-seq to measure gene expression profiles across larval, metamorphic, and postmetamorphic life cycle phases in the sea urchin Heliocidaris erythrogramma. Our results present a high-resolution view of gene expression dynamics during the complex transition from pre- to postmetamorphic development and suggest that distinct sets of regulatory and effector proteins are used during different life history phases. These analyses provide an important foundation for more detailed analyses of the evolution of the radial adult body of echinoderms.

摘要

棘皮动物因其复杂的生命周期和高度特化的身体结构,在两侧对称动物中独树一帜。尽管早期发育已得到深入研究,但成年棘皮动物发育及其独特的辐射对称身体结构背后的分子机制仍 largely 未知。为了研究辐射对称身体结构发育和变态过程中基因表达发育变化的进化,我们从头组装了一个参考转录组,并使用 RNA 测序来测量海胆红斑海胆(Heliocidaris erythrogramma)幼虫、变态和变态后生命周期阶段的基因表达谱。我们的结果呈现了从变态前到变态后发育这一复杂转变过程中基因表达动态的高分辨率视图,并表明在不同的生命史阶段使用了不同组别的调节蛋白和效应蛋白。这些分析为更详细地分析棘皮动物辐射对称成体身体的进化提供了重要基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0c86/4007537/26032cb80c8e/evu070f1p.jpg

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