纤维素对海假交替单胞菌生物被膜生物学特性及厚壳贻贝幼虫附着变态的影响
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国家自然科学基金 (41876159,41476131);国家重点研发计划 (2019YFC0312104,2020YFD0900804);上海市优秀学术带头人计划 (20XD1421800);南方海洋科学与工程广东省实验室 (广州)人才团队引进重大专项 (GML2019ZD0402)


Effect of cellulose on Pseudoalteromonas marina biofilm biological characteristics and larval settlement and metamorphosis of Mytilus coruscus
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    摘要:

    为探究纤维素对海假交替单胞菌生物被膜的生物学特性及其对厚壳贻贝幼虫附着变态的影响,实验设置海假交替单胞菌 (初始细菌密度 5×108 个/mL)分别与浓度为0.02、0.20、2.00、20.00 mg/L的纤维素共孵育形成生物被膜,检测形成的生物被膜对厚壳贻贝幼虫变态的诱导作用变化,比较生物被膜成膜能力、胞外产物等生物学特性变化,并分析其与厚壳贻贝幼虫附着变态的关系。纤维素浓度为2.00或20.00 mg/L时,所形成的生物被膜对幼虫附着变态的诱导活性显著降低。通过分析加入纤维素后海假交替单胞菌形成的生物被膜生物学特性发现,随着纤维素浓度升高,生物被膜中细菌的分布更为分散,细菌密度和膜厚呈逐渐降低趋势,生物被膜胞外产物中α-多糖、β-多糖和脂质的生物量显著降低,而蛋白无明显变化。在海假交替单胞菌生物被膜形成过程中,纤维素主要通过降低胞外α-多糖、β-多糖和脂质的产生,进而间接调控厚壳贻贝幼虫附着变态。研究结果为探究海假交替单胞菌纤维素对生物被膜形成及对厚壳贻贝附着变态调控分子机制提供理论依据,为整治生物污损等实际问题提供新思路。

    Abstract:

    Mytilus coruscus is an important economic shellfish and a typical marine macrofouling organism in China. The process of settlement and metamorphosis in its life history is a necessary condition for the survival of larvae. The effects of cellulose on the biofilms of Pseudoalteromonas marina biological characteristics and its effect on the larval settlement and metamorphosis of M. coruscus were explored. Biofilms were cultured by different concentrations of cellulose (0.02, 0.2, 2 and 20 mg/L) with P. marina (initial bacterial density: 5×108 cells/mL). The inducing activity of biofilms formed under different conditions was tested. The results showed, when P. marina biofilm formed with the cellulose concentration of 2 mg/L, the percentage of larval settlement and metamorphosis was 25%, which was significantly lower than that of monospecific bacterial biofilm. As the cellulose concentration increased, the bacterial density of the biofilm formed by P. marina and cellulose was greatly reduced, and reached the minimum at a certain concentration (20 mg/L). The bacteria were more dispersed and biofilm thickness were significantly reduced. Compared with monospecific bacterial biofilm, the biomass of α-polysaccharides, β-polysaccharides and lipids of biofilms formed with addition of cellulose was reduced by 72.55%, 62.01% and 66.23%, respectively. While for proteins, no significant difference was observed in the presence or absence of cellulose. In the process of P. marina biofilm formation, cellulose indirectly regulated the larval settlement and metamorphosis by reducing the production of extracellular polysaccharides and lipids. The findings may provide a theoretical basis for exploring the molecular mechanism of P. marina cellulose on the formation of biofilms and the settlement and metamorphosis of M. coruscus, and also provide new ideas for the treatment of biofouling.

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邵安琪,李嘉政,张俊波,万荣,杨金龙,梁箫.纤维素对海假交替单胞菌生物被膜生物学特性及厚壳贻贝幼虫附着变态的影响[J].水产学报,2023,47(8):089611

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  • 收稿日期:2021-04-06
  • 最后修改日期:2021-05-24
  • 录用日期:2021-05-28
  • 在线发布日期: 2023-08-16
  • 出版日期: 2023-08-01