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Proteomics insights: proteins related to larval attachment and metamorphosis of marine invertebrates

机译:蛋白质组学的见解:与海洋无脊椎动物的幼虫附着和变态有关的蛋白质

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The transition in an animal from a pelagic larval stage to a sessile benthic juvenile typically requires major morphological and behavioral changes. Larval competency, attachment and initiation of metamorphosis are thought to be regulated by intrinsic chemical signals and specific sets of proteins. However, the molecular mechanisms that regulate larval attachment and metamorphosis in marine invertebrates have yet to be fully elucidated. Despite the many challenges associated with analysis of the larvae proteome, recent proteomic technologies have been used to address specific questions in larval developmental biology. These and other molecular studies have generated substantial amount of information of the proteins and molecular pathways involved in larval attachment and metamorphosis. Furthermore, the results of these studies have shown that systematic changes in protein expression patterns and post-translational modifications (PTM) are crucial for the transition from larva to juvenile. The degeneration of larval tissues is mediated by protein degradation, while the development of juvenile organs may require PTM. In terms of application, the identified proteins may serve as targets for antifouling compounds, and biomarkers for environmental stressors. In this review we highlight the strengths and limitations of proteomic tools in the context of the study of marine invertebrate larval biology.
机译:动物从上层幼虫阶段过渡到无柄底栖幼体的过程通常需要重大的形态和行为变化。幼虫的能力,附着力和变态的开始被认为受内在化学信号和特定蛋白质组的调控。然而,调控海洋无脊椎动物幼虫附着和变态的分子机制尚未完全阐明。尽管与幼虫蛋白质组分析相关的挑战很多,但最近的蛋白质组学技术已用于解决幼虫发育生物学中的特定问题。这些和其他分子研究已经获得了有关幼虫附着和变态的蛋白质和分子途径的大量信息。此外,这些研究的结果表明,蛋白质表达模式的系统变化和翻译后修饰(PTM)对于从幼虫到幼虫的过渡至关重要。幼虫组织的退化是由蛋白质降解介导的,而幼稚器官的发育可能需要PTM。在应用方面,鉴定出的蛋白质可以用作防污化合物的靶标,并可以作为环境应激源的生物标记。在这篇综述中,我们重点介绍了蛋白质组学工具在海洋无脊椎动物幼体生物学研究中的优势和局限性。

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