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利用扇贝血细胞培养平台进行简单的转基因过表达可实现软体动物的功能基因研究。

Simple Transgene Overexpression using Scallop Hemocyte Culture Platform Enables Functional Genetic Research in Molluscs.

作者信息

Yoon Jeongwoong, Tsuda Taro, Bortoletto Enrico, Sakaguchi Akari, Kobayashi Mutsuko, Rosani Umberto, Yokoi Hayato, Osada Makoto, Venier Paola, Nagasawa Kazue

机构信息

Laboratory of Aquaculture Biology, Graduate School of Agricultural Science, Tohoku University, Sendai, Miyagi, 980-8572, Japan.

Department of Bioengineering, Stanford University, Stanford, CA, 94305, USA.

出版信息

Mar Biotechnol (NY). 2025 Jun 11;27(3):94. doi: 10.1007/s10126-025-10472-7.

Abstract

Despite being evolutionarily and commercially important, molluscs have been a traditionally challenging group to study, due to their difficulty in maintenance under lab conditions and the lack of a genetic toolkit. Previously, we showed that transgene expression can be attained in molluscan cells with reporter genes under a molluscan virus promoter sequence. Following up, we developed a simple, efficient and rapid transgene expression platform using primary hemocyte culture of Farrer's scallop Chlamys farreri, a marine bivalve mollusc. The protocol consists of two steps: collection and seeding of hemocytes and incubation for 1 to 4 days with DNA-reagent mixture. We evaluated seven transfection reagents for three bivalve species and found that X-tremeGENE 360 was highly efficient for DNA transfection, particularly for C. farreri. Subsequently, C. farreri hemocyte culture and transfection conditions were examined, such as culture medium, size and form of DNA, and the mixing ratio of DNA and transfection reagent. Using this protocol, we visualized the subcellular localization of four bivalve oncogenes, Cf-Mdm2-like, Cf-c-Myc-like, Cf-Mortalin-like, and Cf-Ras-like, tagged with EGFP. Our hemocyte platform provides an easy entry to study cellular and molecular biology of molluscs and can be readily adapted for advanced methods such as live imaging and DNA-protein interaction assays, making the study of molluscs more accessible to the scientific community.

摘要

尽管软体动物在进化和商业上都很重要,但由于它们在实验室条件下难以饲养且缺乏遗传工具,传统上一直是一个具有挑战性的研究对象。此前,我们表明在软体动物病毒启动子序列下,利用报告基因可在软体动物细胞中实现转基因表达。接下来,我们利用海洋双壳贝类软体动物栉孔扇贝的原代血细胞培养,开发了一个简单、高效且快速的转基因表达平台。该方案包括两个步骤:血细胞的收集与接种以及与DNA - 试剂混合物孵育1至4天。我们评估了七种针对三种双壳贝类物种的转染试剂,发现X-tremeGENE 360对DNA转染效率很高,尤其是对栉孔扇贝。随后,对栉孔扇贝血细胞培养和转染条件进行了研究,如培养基、DNA的大小和形式以及DNA与转染试剂的混合比例。利用该方案,我们可视化了四种双壳贝类癌基因(Cf-Mdm2-like、Cf-c-Myc-like、Cf-Mortalin-like和Cf-Ras-like)与EGFP标记后的亚细胞定位。我们的血细胞平台为研究软体动物的细胞和分子生物学提供了一个便捷途径,并且可以很容易地适用于诸如活体成像和DNA - 蛋白质相互作用分析等先进方法,使科学界对软体动物的研究更加容易。

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