IcmF2 of the type VI secretion system 2 plays a role in biofilm formation of Vibrio parahaemolyticus

IF 2.3 3区 生物学 Q3 MICROBIOLOGY
Qinglian Huang, Miaomiao Zhang, Yiquan Zhang, Xue Li, Xi Luo, Shenjie Ji, Renfei Lu
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引用次数: 0

Abstract

Vibrio parahaemolyticus possesses two distinct type VI secretion systems (T6SS), namely T6SS1 and T6SS2. T6SS1 is predominantly responsible for adhesion to Caco-2 and HeLa cells and for the antibacterial activity of V. parahaemolyticus, while T6SS2 mainly contributes to HeLa cell adhesion. However, it remains unclear whether the T6SS systems have other physiological roles in V. parahaemolyticus. In this study, we demonstrated that the deletion of icmF2, a structural gene of T6SS2, reduced the biofilm formation capacity of V. parahaemolyticus under low salt conditions, which was also influenced by the incubation time. Nonetheless, the deletion of icmF2 did not affect the biofilm formation capacity in marine-like growth conditions, nor did it impact the flagella-driven swimming and swarming motility of V. parahaemolyticus. IcmF2 was found to promote the production of the main components of the biofilm matrix, including extracellular DNA (eDNA) and extracellular proteins, and cyclic di-GMP (c-di-GMP) in V. parahaemolyticus. Additionally, IcmF2 positively influenced the transcription of cpsA, mfpA, and several genes involved in c-di-GMP metabolism, including scrJ, scrL, vopY, tpdA, gefA, and scrG. Conversely, the transcription of scrA was negatively impacted by IcmF2. Therefore, IcmF2-dependent biofilm formation was mediated through its effects on the production of eDNA, extracellular proteins, and c-di-GMP, as well as its impact on the transcription of cpsA, mfpA, and genes associated with c-di-GMP metabolism. This study confirmed new physiological roles for IcmF2 in promoting biofilm formation and c-di-GMP production in V. parahaemolyticus.

Abstract Image

Abstract Image

VI 型分泌系统 2 的 IcmF2 在副溶血性弧菌的生物膜形成过程中发挥作用。
副溶血性弧菌拥有两种不同的 VI 型分泌系统(T6SS),即 T6SS1 和 T6SS2。T6SS1 主要负责粘附到 Caco-2 和 HeLa 细胞,并发挥副溶血性弧菌的抗菌活性,而 T6SS2 则主要负责粘附 HeLa 细胞。然而,T6SS 系统在副溶血性弧菌中是否还具有其他生理作用仍不清楚。在本研究中,我们发现删除 T6SS2 的结构基因 icmF2 会降低副溶血性弧菌在低盐条件下形成生物膜的能力,而且这种能力还受到培养时间的影响。然而,删除 icmF2 并不影响副溶血性弧菌在类海洋生长条件下的生物膜形成能力,也不影响其鞭毛驱动的游动和蜂群运动。研究发现,IcmF2 能促进副溶血性弧菌生物膜基质主要成分的生成,包括胞外 DNA(eDNA)、胞外蛋白质和环状二-GMP(c-di-GMP)。此外,IcmF2 还对 cpsA、mfpA 以及参与 c-di-GMP 代谢的几个基因(包括 scrJ、scrL、vopY、tpdA、gefA 和 scrG)的转录产生了积极影响。相反,scrA 的转录受到 IcmF2 的负面影响。因此,IcmF2 通过影响 eDNA、胞外蛋白和 c-di-GMP 的产生,以及影响 cpsA、mfpA 和 c-di-GMP 代谢相关基因的转录,介导了生物膜的形成。这项研究证实了 IcmF2 在促进副溶血弧菌生物膜形成和 c-di-GMP 生成方面的新生理作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Archives of Microbiology
Archives of Microbiology 生物-微生物学
CiteScore
4.90
自引率
3.60%
发文量
601
审稿时长
3 months
期刊介绍: Research papers must make a significant and original contribution to microbiology and be of interest to a broad readership. The results of any experimental approach that meets these objectives are welcome, particularly biochemical, molecular genetic, physiological, and/or physical investigations into microbial cells and their interactions with their environments, including their eukaryotic hosts. Mini-reviews in areas of special topical interest and papers on medical microbiology, ecology and systematics, including description of novel taxa, are also published. Theoretical papers and those that report on the analysis or ''mining'' of data are acceptable in principle if new information, interpretations, or hypotheses emerge.
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