Department of Biochemistry and Cell Physiology, Voronezh State University, Universitetskaya pl., 1, 394018 Voronezh, Russia.
Belozersky Institute of Physico-Chemical Biology, Lomonosov Moscow State University, Leninskie Gory, 119991 Moscow, Russia.
Int J Mol Sci. 2024 Aug 22;25(16):9093. doi: 10.3390/ijms25169093.
Bacteria of the morphotype, comprising the genera , and , are frequently encountered in domestic and industrial wastewater treatment systems, but they are usually not clearly differentiated due to the marked similarity in their morphologies. Methods ranging from light microscopy, FISH and PCR to modern high-throughput sequencing are used to identify them. The development of these bacteria in wastewater treatment systems has both advantages and disadvantages. On the one hand, the explosive growth of these bacteria can lead to activated sludge bulking or clogging of the treatment system's membranes, with a consequent decrease in the water treatment efficiency. On the other hand, members of the morphotype can improve the quality of granular sludge and increase the water treatment efficiency. This may be due to their capacity for sulfide oxidation, denitrification combined with the oxidation of reduced sulfur compounds, enhanced biological phosphate removal and possibly denitrifying phosphate removal. The recently obtained pangenome of the genus allows the explanation, at the genomic level, of the experimental results of various studies. Moreover, this review summarizes the data on the factors affecting the proliferation of representatives of the morphotype.
形态型细菌包括 属、属和 属,经常出现在家庭和工业废水处理系统中,但由于它们的形态非常相似,通常无法明确区分。可以使用从光学显微镜、荧光原位杂交(FISH)和聚合酶链式反应(PCR)到现代高通量测序等方法对其进行鉴定。这些细菌在废水处理系统中的发展既有优点也有缺点。一方面,这些细菌的爆发式生长可能导致活性污泥膨胀或处理系统膜堵塞,从而降低水处理效率。另一方面,形态型的成员可以改善颗粒污泥的质量并提高水处理效率。这可能是由于它们具有硫化物氧化、与还原硫化合物氧化结合的反硝化、增强的生物除磷以及可能的反硝化除磷的能力。属的最近获得的泛基因组允许在基因组水平上解释各种研究的实验结果。此外,本综述总结了影响形态型代表增殖的因素的数据。