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Study of the Response of a Biofilm Bacterial Community to UV Radiation

机译:生物膜细菌群落对紫外线辐射响应的研究

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We have developed a bioluminescent whole-cell biosensor that can be incorporated into biofilm ecosystems. RM4440 is a Pseudomonas aeruginosa FRD1 derivative that carries a plasmid-basedrecA-luxCDABE fusion. We immobilized RM4440 in an alginate matrix to simulate a biofilm, and we studied its response to UV radiation damage. The biofilm showed a protective property by physical shielding against UV C, UV B, and UV A. Absorption of UV light by the alginate matrix translated into a higher survival rate than observed with planktonic cells at similar input fluences. UV A was shown to be effectively blocked by the biofilm matrix and to have no detectable effects on cells contained in the biofilm. However, in the presence of photosensitizers (i.e., psoralen), UV A was effective in inducing light production and cell death. RM4440 has proved to be a useful tool to study microbial communities in a noninvasive manner.
机译:我们已经开发出一种可以整合到生物膜生态系统中的生物发光全细胞生物传感器。 RM4440是铜绿假单胞菌FRD1衍生物,带有基于质粒的recA-luxCDABE融合蛋白。我们将RM4440固定在藻酸盐基质中以模拟生物膜,并研究了其对紫外线辐射损伤的响应。该生物膜通过对UV C,UV B和UV A进行物理屏蔽而显示出保护性。藻酸盐基质对UV光的吸收转化为比在类似输入注量下的浮游细胞所观察到的更高的存活率。 UV A被证明可以被生物膜基质有效阻滞,并且对生物膜中包含的细胞没有可检测的影响。但是,在存在光敏剂(即补骨脂素)的情况下,UV A有效诱导光产生和细胞死亡。事实证明,RM4440是一种以无创方式研究微生物群落的有用工具。

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