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寻常海绵纲动物解离、再聚集和分化过程中的微小RNA表达以及一种进化上保守的寻常海绵纲动物微小RNA表达谱。

MicroRNA expression during demosponge dissociation, reaggregation, and differentiation and a evolutionarily conserved demosponge miRNA expression profile.

作者信息

Robinson Jeffrey M

机构信息

Department of Biological Sciences, Molecular and Cellular Biology Program, Dartmouth College, Hanover, USA.

Anatomy Department, College of Medicine, Howard University, 520 W Street NW, Washington, DC, 20059, USA.

出版信息

Dev Genes Evol. 2015 Nov;225(6):341-51. doi: 10.1007/s00427-015-0520-5. Epub 2015 Nov 9.

Abstract

Demosponges share eight orthologous microRNAs (miRNAs), with none in common with Bilateria. Biological functions of these demosponge miRNAs are unknown. Bilaterian miRNAs are key regulators of cellular processes including cell cycle, differentiation, and metabolism. Resolving if demosponge miRNAs participate in such biological functions will provide clues whether these functions are convergent, evidence on the mode of evolution of cellular developmental processes. Here, a quantitative PCR (qPCR) assay was developed and used to test for differential miRNA expression during dissociation and reaggregation in Spongosorites, compare expression profiles between choanosome and cortex in Spongosorites, and compare undifferentiated gemmules to differentiated juveniles in Ephydatia. During Spongosorites dissociation and reaggregation, miRNA expression showed a global decrease in expression across a range of reaggregating cell densities. miRNA differential response could be related to various general cellular responses, potentially related to nutrient-poor conditions of the minimal artificial seawater media, stress response from tissue dissociation, or loss of cell-cell or cell-matrix contact. In Ephydatia, overall increase in miRNA expression in gemmule-hatched stage 4/5 juveniles relative to gemmules is observed, indicating that increased miRNA expression may be related to increased cellular activity such as migration, cell cycle, and/or differentiation. Observed differential miRNA expression of miRNA during dissociation in Spongosorites (lowered global expression), and during activation, and differentiation of Ephydatia gemmules (increased global expression) could indicate that miRNA expression is associated with cell cycle, differentiation, or metabolism pathways. Interspecies comparison was performed, results indicating that orthologous miRNAs share similar relative expression pattern between the four species tested (Spongosorites, Cinachyrella, Haliclona, and Ephydatia), demonstrating and evolutionarily conserved miRNA expression profile across Demospongia. While these results do not elucidate specific molecular and cellular pathways, together they provide a broad survey of miRNA expression in demosponge systems.

摘要

寻常海绵纲动物共有8个直系同源微小RNA(miRNA),与两侧对称动物没有共同的miRNA。这些寻常海绵纲动物miRNA的生物学功能尚不清楚。两侧对称动物的miRNA是细胞过程的关键调节因子,包括细胞周期、分化和代谢。确定寻常海绵纲动物的miRNA是否参与这些生物学功能,将为这些功能是否趋同提供线索,为细胞发育过程的进化模式提供证据。在此,开发了一种定量PCR(qPCR)检测方法,用于测试海绵属动物在解离和重新聚集过程中miRNA的差异表达,比较海绵属动物中领细胞层和皮层之间的表达谱,并比较艾氏海绵中未分化的芽球与分化的幼体。在海绵属动物的解离和重新聚集过程中,miRNA表达在一系列重新聚集的细胞密度范围内呈现出整体下降。miRNA的差异反应可能与各种一般细胞反应有关,可能与最低限度人工海水培养基中营养物质匮乏的条件、组织解离引起的应激反应或细胞间或细胞与基质接触的丧失有关。在艾氏海绵中,观察到相对于芽球,在芽球孵化的4/5期幼体中miRNA表达总体增加,这表明miRNA表达增加可能与细胞活性增加有关,如迁移、细胞周期和/或分化。在海绵属动物解离过程中(整体表达降低)以及艾氏海绵芽球激活和分化过程中(整体表达增加)观察到的miRNA差异表达,可能表明miRNA表达与细胞周期、分化或代谢途径有关。进行了种间比较,结果表明直系同源miRNA在所测试的四个物种(海绵属、Cinachyrella、Haliclona和艾氏海绵)之间共享相似的相对表达模式,证明了寻常海绵纲动物中miRNA表达谱的进化保守性。虽然这些结果没有阐明具体的分子和细胞途径,但它们共同提供了对寻常海绵纲动物系统中miRNA表达的广泛调查。

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