Department of Biotechnology, College of Biomedical and Health Science, Konkuk University, Chungju 27478, Republic of Korea.
Department of Life Science, Graduate School, Kyonggi University, Suwon 16227, Republic of Korea.
J Microbiol Biotechnol. 2020 Oct 28;30(10):1516-1524. doi: 10.4014/jmb.2004.04064.
Climate change is expected to affect not only availability and quality of water, the valuable resource of human life on Earth, but also ultimately public health issue. A six-year monitoring (total 20 times) of O157, , , , , and was conducted at five raw water sampling sites including two lakes, Hyundo region (Geum River) and two locations near Water Intake Plants of Han River (Guui region) and Nakdong River (Moolgeum region). A total 100 samples of 40 L water were tested. Most of the targeted bacteria were found in 77% of the samples and at least one of the target bacteria was detected (65%). Among all the detected bacteria, O157 were the most prevalent with a detection frequency of 22%, while was the least prevalent with a detection frequency of 2%. Nearly all the bacteria (except for ) were present in samples from Lake Soyang, Lake Juam, and the Moolgeum region in Nakdong River, while was detected in those from the Guui region in Han River. During the six-year sampling period, individual targeted noxious bacteria in water samples exhibited seasonal patterns in their occurrence that were different from the indicator bacteria levels in the water samples. The fact that they were detected in the five Korea's representative water environments make it necessary to establish the chemical and biological analysis for noxious bacteria and sophisticated management systems in response to climate change.
预计气候变化不仅会影响到人类赖以生存的宝贵水资源的供应和质量,还会最终影响到公共卫生问题。在五年的五个原水采样点(包括两个湖泊,Hyundo 地区(Geum 河)和两个位于汉江取水口附近的地点(Guui 地区)和南渡河(Moolgeum 地区))进行了为期六年(共 20 次)的 O157、、、、、和 监测。共检测了 100 个 40 升水样。大多数目标细菌在 77%的样本中被发现,至少有一个目标细菌被检测到(65%)。在所检测到的细菌中,O157 的检出率最高,为 22%,而 的检出率最低,为 2%。除 外,几乎所有的细菌(包括 O157)都存在于 Soyang 湖、Juam 湖和南渡河 Moolgeum 地区的样本中,而 则存在于汉江 Guui 地区的样本中。在六年的采样期间,水样中个体目标有害细菌的出现呈现出与水样中指示性细菌水平不同的季节性模式。这些细菌在韩国五个代表性的水环境中被检测到,这使得有必要建立针对有害细菌的化学和生物分析以及针对气候变化的复杂管理系统。