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叶状海核桃的远洋栉水母多代实验室培养及CRISPR-Cas9基因组编辑

Multigenerational laboratory culture of pelagic ctenophores and CRISPR-Cas9 genome editing in the lobate Mnemiopsis leidyi.

作者信息

Presnell J S, Bubel M, Knowles T, Patry W, Browne W E

机构信息

Department of Biology, University of Miami, Miami, FL, USA.

Department of Human Genetics, University of Utah, Salt Lake City, UT, USA.

出版信息

Nat Protoc. 2022 Aug;17(8):1868-1900. doi: 10.1038/s41596-022-00702-w. Epub 2022 Jun 13.

Abstract

Despite long-standing experimental interest in ctenophores due to their unique biology, ecological influence and evolutionary status, previous work has largely been constrained by the periodic seasonal availability of wild-caught animals and difficulty in reliably closing the life cycle. To address this problem, we have developed straightforward protocols that can be easily implemented to establish long-term multigenerational cultures for biological experimentation in the laboratory. In this protocol, we describe the continuous culture of the Atlantic lobate ctenophore Mnemiopsis leidyi. A rapid 3-week egg-to-egg generation time makes Mnemiopsis suitable for a wide range of experimental genetic, cellular, embryological, physiological, developmental, ecological and evolutionary studies. We provide recommendations for general husbandry to close the life cycle of Mnemiopsis in the laboratory, including feeding requirements, light-induced spawning, collection of embryos and rearing of juveniles to adults. These protocols have been successfully applied to maintain long-term multigenerational cultures of several species of pelagic ctenophores, and can be utilized by laboratories lacking easy access to the ocean. We also provide protocols for targeted genome editing via microinjection with CRISPR-Cas9 that can be completed within ~2 weeks, including single-guide RNA synthesis, early embryo microinjection, phenotype assessment and sequence validation of genome edits. These protocols provide a foundation for using Mnemiopsis as a model organism for functional genomic analyses in ctenophores.

摘要

尽管栉水母因其独特的生物学特性、生态影响和进化地位长期以来一直是实验研究的热点,但以往的工作在很大程度上受到野生捕获动物季节性供应的限制,以及难以可靠地完成其生命周期的困扰。为了解决这个问题,我们开发了简单易行的方案,可轻松用于在实验室中建立长期多代培养体系以进行生物学实验。在本方案中,我们描述了大西洋叶状栉水母(Mnemiopsis leidyi)的连续培养方法。Mnemiopsis的卵到卵的快速3周世代时间使其适用于广泛的实验性遗传、细胞、胚胎学、生理学、发育学、生态学和进化研究。我们提供了在实验室中完成Mnemiopsis生命周期的一般饲养建议,包括摄食需求、光诱导产卵、胚胎收集以及幼体到成体的饲养。这些方案已成功应用于维持几种浮游栉水母物种的长期多代培养,可供难以直接获取海洋资源的实验室使用。我们还提供了通过CRISPR-Cas9显微注射进行靶向基因组编辑的方案,该过程可在约2周内完成,包括单向导RNA合成、早期胚胎显微注射、表型评估以及基因组编辑的序列验证。这些方案为将Mnemiopsis用作栉水母功能基因组分析的模式生物奠定了基础。

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