Hu C, Rea C, Yu Z, Lee J
Division of Environmental Health Sciences, College of Public Health, The Ohio State University, Columbus, OH, USA.
Department of Animal Sciences, The Ohio State University, Columbus, OH, USA.
J Appl Microbiol. 2016 Jan;120(1):138-51. doi: 10.1111/jam.12983. Epub 2015 Dec 9.
Microcystis population and microcystin (MC) dynamics were investigated in western Lake Erie coastal wetlands and downstream beach water. A three-dimensional (3-D) model was developed to quantify how Microcystis population size and structure affect MCs.
Real-time PCR, denaturing gradient gel electrophoresis (DGGE) and enzyme-linked immunoabsorbent assay (ELISA) were used. A moderate-low level of Microcystis abundance and MCs were detected with a significant increase along the wetland flow and the spatiotemporal homogeneity of Microcystis populations. The proportion of toxigenic and nontoxgenic genotypes appeared to be more affected by the variation in two major Microcystis PC-IGS genotypes. MC dynamics was associated with the changing Microcystis population size and structure. The 3-D model showed that Microcystis population with greater Microcystis PC-IGS abundance (and simultaneously higher diversity) had more MCs.
Microcystin variation was significantly affected by Microcystis population size and structure. The 3-D model also revealed the relative importance of Microcystis population size and structure in determining MCs in the Lake Erie costal wetland and downstream beach water.
This study enriches our understanding of Microcystis population and microcystin ecology in a western Lake Erie coastal wetland and downstream beach water. Our illustrative model brings a new perspective for understanding the ecological relationship between Microcystis population size and structure and MCs.
对伊利湖西部沿海湿地及下游滩涂水中的微囊藻种群和微囊藻毒素(MC)动态进行研究。构建了一个三维(3-D)模型,以量化微囊藻种群大小和结构如何影响微囊藻毒素。
采用实时荧光定量聚合酶链反应(Real-time PCR)、变性梯度凝胶电泳(DGGE)和酶联免疫吸附测定(ELISA)。检测到微囊藻丰度和微囊藻毒素处于中低水平,且随着湿地水流方向微囊藻丰度显著增加,微囊藻种群具有时空同质性。产毒和非产毒基因型的比例似乎受两种主要微囊藻PC-IGS基因型变异的影响更大。微囊藻毒素动态与微囊藻种群大小和结构的变化有关。三维模型显示,具有更高微囊藻PC-IGS丰度(同时具有更高多样性)的微囊藻种群含有更多微囊藻毒素。
微囊藻毒素的变化受微囊藻种群大小和结构的显著影响。三维模型还揭示了微囊藻种群大小和结构在伊利湖沿岸湿地及下游滩涂水中微囊藻毒素含量测定中的相对重要性。
本研究丰富了我们对伊利湖西部沿海湿地及下游滩涂水中微囊藻种群和微囊藻毒素生态学的理解。我们的示例模型为理解微囊藻种群大小和结构与微囊藻毒素之间的生态关系带来了新视角。