Analysis of biofilm expansion rate of Bacillus subtilis (MTC871) on agar substrates with different stiffness.

IF 1.8 4区 生物学 Q4 BIOTECHNOLOGY & APPLIED MICROBIOLOGY Canadian journal of microbiology Pub Date : 2023-12-01 Epub Date: 2023-06-28 DOI:10.1139/cjm-2022-0259
Jin Wu, Xianyong Li, Rui Kong, Jiankun Wang, Xiaoling Wang
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Abstract

The surface morphology of mature biofilms is heterogeneous and can be divided into concentric rings wrinkles (I), labyrinthine networks wrinkles (II), radial ridges wrinkles (III), and branches wrinkles (IV), according to surface wrinkle structure and distribution characteristics. Due to the wrinkle structures, channels are formed between the biofilm and substrate and transport nutrients, water, metabolic products, etc. We find that expansion rate variations of biofilms growing on substrates with high and low agar concentrations (1.5, 2.0, 2.5 wt.%) are not in the same phase. In the first 3 days' growth, the interaction stress between biofilm and each agar substrate increases, which makes the biofilm expansion rate decreases before wrinkle pattern IV (branches) comes up. After 3 days, in the later growth stage after wrinkle pattern IV appears, the biofilm has larger expansion rate growing on 2.0 wt.% agar concentration, which has the larger wrinkle distance in wrinkle pattern IV reducing energy consumption. Our study shows that the stiff substrate does not always inhibit the biofilm expansion, although it does in the earlier stage; after that, mature biofilms acquire larger expansion rate by adjusting the growth mode through the wrinkle evolution even in nutrient extremely depletion.

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枯草芽孢杆菌(Bacillus subtilis, MTC871)在不同硬度琼脂基质上的生物膜膨胀率分析。
成熟生物膜的表面形态具有异质性,根据表面皱纹的结构和分布特点,可分为同心圆环状皱纹(I)、迷宫网状皱纹(II)、径向脊状皱纹(III)和分支状皱纹(IV)。由于褶皱结构,生物膜和基质之间形成通道,运输营养物质、水、代谢产物等。我们发现,在琼脂浓度高、浓度低(1.5、2.0、2.5 wt.%)的基质上生长的生物膜的膨胀率变化并不在同一阶段。在生长的前3天,生物膜与各琼脂底物之间的相互作用应力增大,使生物膜的膨胀率下降,直至皱纹模式IV(分支)出现。3天后,在皱纹型IV出现后的生长后期,生物膜的膨胀率在2.0 wt上有较大的增长。%琼脂浓度,在皱纹模式IV中具有较大的皱纹距离,降低了能耗。我们的研究表明,硬底物并不总是抑制生物膜的扩张,尽管它在早期有抑制作用;在此之后,成熟的生物膜即使在养分极度耗竭的情况下,也能通过皱纹进化来调节生长方式,获得更大的膨胀速率。
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来源期刊
CiteScore
4.80
自引率
0.00%
发文量
71
审稿时长
2.5 months
期刊介绍: Published since 1954, the Canadian Journal of Microbiology is a monthly journal that contains new research in the field of microbiology, including applied microbiology and biotechnology; microbial structure and function; fungi and other eucaryotic protists; infection and immunity; microbial ecology; physiology, metabolism and enzymology; and virology, genetics, and molecular biology. It also publishes review articles and notes on an occasional basis, contributed by recognized scientists worldwide.
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