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Toxic effect and adaptation in Scenedesmus intermedius to anthropogenic chloramphenicol contamination: genetic versus physiological mechanisms to rapid acquisition of xenobiotic resistance.

机译:中间景物对人为氯霉素污染的毒性作用和适应:快速获得异种生物抗性的遗传与生理机制。

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摘要

Anthropogenic water pollution is producing a challenge to the survival of phytoplankton populations. From an ecological point of view, the tolerance of these microorganisms to water pollution is of paramount importance since they are the principal primary producers of aquatic ecosystems. The adaptation of a common chlorophyta species (Scenedesmus intermedius) exposed to selected dose-response chloramphenicol (CAP) concentrations has been analyzed. A fluctuation analysis demonstrated that CAP-resistant cells arise due to spontaneous mutation which occurs randomly prior to the antibiotic exposure. CAP-inhibited growth and photosynthetic performance of algal cells at 0.28 mg/l, and the IC(50(72)) value was established in 0.10 mg/l for both parameters. The mutation rate from CAP sensitivity to resistance was 1.01 x 10(-5) mutations per cell division, while the frequency of CAP-resistant allele in non-polluted environment was estimated to be 5.5 CAP-resistant mutants per 10(3) sensitive-cells. These results demonstrate that resistant mutants exhibit a diminished fitness until 5 mg/l of CAP, thus enabling the survival of microalgae population.
机译:人为水污染正在对浮游植物种群的生存提出挑战。从生态角度来看,这些微生物对水污染的耐受性至关重要,因为它们是水生生态系统的主要主要生产者。已经分析了暴露于所选剂量反应氯霉素(CAP)浓度下的常见叶绿体物种(Scenedesmus intermedius)的适应性。波动分析表明,CAP耐药细胞是由于自发突变产生的,该突变是在暴露于抗生素之前随机发生的。 CAP抑制藻类细胞的生长和光合性能为0.28 mg / l,两个参数的IC(50(72))值均为0.10 mg / l。从CAP敏感性到抗性的突变率是每细胞分裂1.01 x 10(-5)突变,而在无污染环境中CAP抵抗性等位基因的频率估计为每10(3)敏感-细胞。这些结果表明,直到5 mg / l CAP为止,抗性突变体的适应性都会降低,从而使微藻种群得以生存。

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