Dignum Marco, Hoogveld Hans L, Matthijs Hans C P, Laanbroek Hendrikus J, Pel Roel
Centre for Limnology, Netherlands Institute of Ecology, Royal Netherlands Academy of Arts and Sciences, Nieuwersluis, The Netherlands.
FEMS Microbiol Ecol. 2004 Apr 1;48(1):29-38. doi: 10.1016/j.femsec.2003.12.007.
The novel phosphatase substrate, ELF-97 phosphate, yields intensely green fluorescent precipitates of ELF-97 alcohol (ELFA) upon enzymatic dephosphorylation, and thereby traces phosphatase activity back to its producer. In this study, we show that ELFA fluorescence is a useful tool in flow cytometric analysis of natural phytoplankton populations. Presence of endogenous fluorescent pigments allowed flow cytometric distinction of clusters in the phytoplankton community in Lake Loosdrecht (The Netherlands): Eukaryotes (diatoms and green algae), chlorophyll a and b containing but phycobilin-less cyanobacteria (Prochlorothrix hollandica), and phycocyanin-containing cyanobacteria (predominantly Limnothrix sp.). Several, but not all tested cyanobacteria showed ELFA fluorescence. The dominant Limnothrix sp. possesses a derepressible phosphatase, whereas the second most abundant strain, P. hollandica, did not have phosphatase activity. Within both natural and cultured populations of Limnothrix sp. we found discernible levels of ELFA fluorescence, indicating the presence of subpopulations with different physiological characteristics.
新型磷酸酶底物ELF-97磷酸盐在酶促去磷酸化后会产生强烈绿色荧光的ELF-97醇(ELFA)沉淀,从而将磷酸酶活性追溯到其产生者。在本研究中,我们表明ELFA荧光是对天然浮游植物种群进行流式细胞术分析的有用工具。内源性荧光色素的存在使得能够通过流式细胞术区分荷兰洛斯德雷赫特湖浮游植物群落中的不同群体:真核生物(硅藻和绿藻)、含有叶绿素a和b但不含藻胆蛋白的蓝细菌(荷兰原绿球藻)以及含有藻蓝蛋白的蓝细菌(主要是Limnothrix属)。几种(但不是所有)受试蓝细菌显示出ELFA荧光。占主导地位的Limnothrix属具有一种可解除阻遏的磷酸酶,而第二丰富的菌株荷兰原绿球藻则没有磷酸酶活性。在Limnothrix属的自然种群和培养种群中,我们都发现了可辨别的ELFA荧光水平,表明存在具有不同生理特征的亚群体。