Department of Chemistry and Environmental Science, New Jersey Institute of Technology, Newark, NJ, United States.
Aquat Toxicol. 2013 Oct 15;142-143:230-8. doi: 10.1016/j.aquatox.2013.08.015. Epub 2013 Sep 1.
A cell's growth phase could affect its susceptibility to a biocide in microbial control. This study examines the growth phase dependent susceptibility of a brown tide bloom alga Aureococcus anophagefferens to microbial biocide hydrogen peroxide (H2O2). Test cultures of A. anophagefferens cells in exponential and stationary growth phase and similar initial cell density (1.6×10(6) cells mL(-1)) were exposed to 0.4-1.6 mg L(-1) H2O2. Changes in algal growth (in vivo fluorescence, total chlorophyll a, and cell density), cell physiology (maximum quantum yield of photosystem II, and total intracellular non-protein thiols), and H2O2 decomposition were quantified. Results show that the stationary phase cells are more susceptible to H2O2 than the exponential phase cells, and this is attributed to the weaker ROS (reactive oxygen species) scavenging system and consequently greater cell damage in stationary phase cells. The stationary phase cells potentially require 30-40% less H2O2 to reach 90% removal within 12 h of treatment as compared to the exponential phase cells. The results have practical implications in brown tide bloom control with respect to the timing and the dosage of H2O2 application.
细胞的生长阶段可能会影响其对微生物控制中杀菌剂的敏感性。本研究检查了褐潮藻聚球藻对微生物杀菌剂过氧化氢(H2O2)的生长阶段依赖性敏感性。处于指数生长阶段和静止生长阶段且初始细胞密度(1.6×10^6 个细胞 mL^(-1))相似的聚球藻测试培养物暴露于 0.4-1.6 mg L^(-1) H2O2 下。定量测定了藻类生长(体内荧光、总叶绿素 a 和细胞密度)、细胞生理(光合作用系统 II 的最大量子产量和总细胞内非蛋白巯基)和 H2O2 分解的变化。结果表明,静止期细胞比指数期细胞对 H2O2 更敏感,这归因于较弱的 ROS(活性氧)清除系统,因此静止期细胞的细胞损伤更大。与指数期细胞相比,静止期细胞在 12 小时的处理内达到 90%去除所需的 H2O2 量少 30-40%。这些结果对于褐潮藻控制中关于 H2O2 的应用时间和剂量具有实际意义。