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GFP 的掺入是否仅能决定绿色荧光蛋白(GFP)对弧菌毒力的不良影响?

Can only one physiological trait determinate the adverse effect of green fluorescent protein (GFP) incorporation on Vibrio virulence?

机构信息

Laboratory of Aquaculture & Artemia Reference Center, Department of Animal Sciences and Aquatic Ecology, Faculty of Bioscience Engineering, Ghent University, 9000, Ghent, Belgium.

出版信息

Appl Microbiol Biotechnol. 2021 Oct;105(20):7899-7912. doi: 10.1007/s00253-021-11556-9. Epub 2021 Sep 24.

Abstract

Green fluorescent protein (GFP) has been used extensively for in situ animal studies that follow up bacterial infection under epifluorescence microscopy. It is assumed that GFP is acting as a "neutral" protein with no influence on the bacterial physiology. To verify this hypothesis, the virulence of Vibrio splendidus ME9, Vibrio anguillarum NB10, and their respective GFP-tagged strains ME9-GFP and NB10-GFP (transconjugants) was compared in vitro and tested in vivo towards blue mussel (Mytilus edulis) larvae. Results showed that the incorporation of GFP negatively impacted the growth and swimming motility of NB10 in vitro. Correspondingly, the mRNA levels of genes involved in bacterial swimming motility (flaA, flaE, and cheR) were significantly down-regulated in NB10-GFP. As for the strain ME9 on the other hand, GFP incorporation only had a negative effect on swimming motility. However, both the strains NB10-GFP and ME9-GFP showed almost the same virulence as their respective parental strain towards mussel larvae in vivo. Overall, the data presented here demonstrated that incorporation of GFP may cause modifications in cell physiology and highlight the importance of preliminary physiological tests to minimize the negative influence of GFP tagging when it is used to monitor the target localization. The study also supports the idea that the virulence of Vibrio species is determined by complex regulatory networks. Notwithstanding the change of a single physiological trait, especially growth or swimming motility, the GFP-tagged Vibrio strain can thus still be considered usable in studies mainly focusing on the virulence of the strain. KEY POINTS: • The effect of GFP incorporation on physiological trait of Vibrio strains. • The virulence in vibrios could be multifactorial. • The stable virulence of Vibrio strains after GFP incorporation.

摘要

绿色荧光蛋白(GFP)已被广泛用于通过荧光显微镜对细菌感染进行后续的动物原位研究。人们假设 GFP 是一种“中性”蛋白,对细菌生理没有影响。为了验证这一假设,比较了灿烂弧菌 ME9、鳗弧菌 NB10 及其各自 GFP 标记菌株 ME9-GFP 和 NB10-GFP(转导体)在体外的毒力,并在贻贝幼虫体内进行了测试。结果表明,GFP 的掺入对 NB10 在体外的生长和游动能力产生负面影响。相应地,NB10-GFP 中与细菌游动能力相关的基因(flaA、flaE 和 cheR)的 mRNA 水平显著下调。另一方面,对于菌株 ME9,GFP 掺入仅对游动能力产生负面影响。然而,NB10-GFP 和 ME9-GFP 这两个菌株在体内对贻贝幼虫的毒力几乎与各自的亲本菌株相同。总体而言,这里呈现的数据表明 GFP 的掺入可能会导致细胞生理发生变化,并强调在使用 GFP 标记物来监测目标定位时进行初步生理测试以最小化 GFP 标记的负面影响的重要性。该研究还支持了这样一种观点,即弧菌的毒力是由复杂的调控网络决定的。尽管单个生理特征(特别是生长或游动能力)发生变化,但 GFP 标记的弧菌菌株仍可被认为可用于主要关注菌株毒力的研究。

关键点

  • GFP 掺入对弧菌菌株生理特征的影响。

  • 弧菌的毒力可能是多因素的。

  • GFP 掺入后弧菌菌株的稳定毒力。

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