通过电穿孔稳定转化单细胞地衣绿藻 Coccomyxa solorinae-saccatae

IF 2.1 3区 生物学 Q3 MICROBIOLOGY Symbiosis Pub Date : 2024-03-11 DOI:10.1007/s13199-024-00985-5
Grzegorz Wałpuski, Łukasz Kozioł, Francisco Gasulla, Przemysław Zaborski, Maksymilian Zienkiewicz
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引用次数: 0

摘要

在这项研究中,我们证明了电穿孔技术可用于 Coccomyxa solorinae-saccatae 的稳定核转化。抗生素图谱显示,在所测试的八种不同抗生素中,Hygromycin B 和 G418 是最有效的选择性药物。我们已经证明,一种含有 hptII 基因的质粒载体,其编码为百菌清 B 磷酸转移酶,并由花椰菜花叶病毒 CaMV35S 强启动子驱动表达,可确保转化的藻类细胞免受高浓度百菌清 B 的伤害。由于 C. solorinae-saccatae 是 Coccomyxa simplex 组的共生菌株之一,因此在藻类 C. solorinae-saccatae 中驱动转基因表达的能力为研究地衣藻类的生理学提供了独特的机会。此外,我们的研究结果表明,电穿孔是一种方便、有效的藻类转化技术。
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Stable transformation of the unicellular lichenic green alga Coccomyxa solorinae-saccatae via electroporation

In this study, we have demonstrated the applicability of electroporation for the stable nuclear transformation of Coccomyxa solorinae-saccatae. An antibiogram revealed that Hygromycin B and G418 are the most effective selective agents among eight different antibiotics tested. We have shown that a plasmid vector containing the hptII gene, coding for hygromycin B phosphotransferase, with expression driven by the strong cauliflower mosaic virus CaMV35S promoter ensures sufficient protection of transformed algal cells against high concentrations of Hygromycin B. The ability to drive transgene expression in the alga C. solorinae-saccatae offers unique opportunities to study the physiology of lichenic algae, as it is one of the symbiotic strains of the Coccomyxa simplex group. Furthermore, our findings demonstrate that electroporation is a convenient and effective technique for the transformation of algae in the Coccomyxa genus.

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来源期刊
Symbiosis
Symbiosis 生物-微生物学
CiteScore
4.80
自引率
8.00%
发文量
56
审稿时长
>12 weeks
期刊介绍: Since 1985, Symbiosis publishes original research that contributes to the understanding of symbiotic interactions in a wide range of associations at the molecular, cellular and organismic level. Reviews and short communications on well-known or new symbioses are welcomed as are book reviews and obituaries. This spectrum of papers aims to encourage and enhance interactions among researchers in this rapidly expanding field. Topics of interest include nutritional interactions; mutual regulatory and morphogenetic effects; structural co-adaptations; interspecific recognition; specificity; ecological adaptations; evolutionary consequences of symbiosis; and methods used for symbiotic research.
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