Graduate School of Life and Environmental Sciences, University of Tsukuba, 1-1-1 Tennoudai, Tsukuba, Ibaraki, Japan.
Faculty of Life and Environmental Sciences, University of Tsukuba, 1-1-1 Tennoudai, Tsukuba, Ibaraki, Japan.
Environ Sci Pollut Res Int. 2021 Jan;28(1):177-184. doi: 10.1007/s11356-020-10429-4. Epub 2020 Aug 15.
Geosmin is one of the most common earthy-musty odor compounds, which is mainly produced by cyanobacteria in surface water. Nitrogen (N) is an important factor affecting the growth of cyanobacteria and its secondary metabolites production due to the eutrophication. In this study, we compared the effects of elevated N on the growth and geosmin productivity of Dolichospermum smithii NIES-824 (synonym Anabaena smithii NIES-824), aiming to better understand the mechanisms involved and give an important and fundamental knowledge to solve off-flavor problem. Results show that elevated N concentration promoted more chlorophyll a (Chl-a) production, whereas the geosmin synthesis decreased, revealing a possible competitive correlation between the Chl-a concentration and geosmin production of D. smithii NIES-824. The majority of geosmin (> 90%) was retained intracellularly during the 28 days of cultivation. The qRT-PCR analysis demonstrates that the expression level of the geosmin synthase gene (geoA) was constitutive and decreased at the higher N concentration during the exponential growth phase of cyanobacterial cells. Furthermore, the decrease of geoA expression during the decline phase suggested that geoA transcription was closely related to cell activity and isoprenoid productivity.
土腥素是最常见的泥土气味化合物之一,主要由地表水的蓝藻产生。氮(N)是影响蓝藻生长及其次生代谢产物产生的重要因素,这是由于富营养化的原因。在这项研究中,我们比较了升高 N 对螺旋鱼腥藻(Dolichospermum smithii)NIES-824(同义蓝藻 Anabaena smithii NIES-824)生长和土腥素生产的影响,旨在更好地了解相关机制,并为解决异味问题提供重要的基础知识。结果表明,升高的 N 浓度促进了更多的叶绿素 a(Chl-a)的产生,而土腥素的合成减少了,这表明 Chl-a 浓度和螺旋鱼腥藻 NIES-824 土腥素生产之间可能存在竞争关系。在 28 天的培养过程中,大部分土腥素(>90%)保留在细胞内。qRT-PCR 分析表明,土腥素合酶基因(geoA)的表达水平是组成型的,并且在蓝藻细胞的指数生长阶段,在较高的 N 浓度下会降低。此外,在下降阶段 geoA 表达的减少表明 geoA 转录与细胞活性和异戊二烯产物密切相关。