Microbial Ecology Department, Institute of Botany, University of Warsaw, 02-096 Warsaw, Poland.
J Microbiol Biotechnol. 2013 Jun 28;23(6):739-49. doi: 10.4014/jmb.1208.08002.
The seasonal and spatial diversity of picocyanobacteria (Pcy) in lakes of the Great Mazurian Lakes (GLM) system was examined by DGGE analysis of molecular markers derived from the 16S-23S internal transcribed spacer (ITS) of the ribosomal operon and the phycocyanin operon (cpcBA-IGS). The study of nine lakes, ranging from mesotrophy to hypereutrophy, demonstrated seasonal variance of Pcy. The richness and Shannon diversity index calculated on the basis of both markers were higher in spring and lower in early and late summer. No statistically significant relationships were found between the markers and trophic status of the studied lakes or Pcy abundance. There were, however, statistically significant relationships between the diversity indices and sampling time. The analysis pointed to a different distribution of the two markers. The ITS marker exhibited more unique sequences in time and space, whereas a greater role for common and ubiquitous sequences was indicated by the cpcBA-IGS data. Examination of the Pcy community structure demonstrated that communities were grouped in highly similar clusters according to sampling season/time rather than to the trophic status of the lake. Our results suggest that time is more important than trophic status in shaping the diversity and structure of Pcy communities. The seasonal changes in picocyanobacteria and differences in diversity and community structures are discussed in the context of well-established ecological hypotheses: the PEG model, intermediate disturbance hypothesis (IDH), and horizontal gene transfer (HGT).
通过对核糖体操纵子和藻蓝蛋白操纵子(cpcBA-IGS)的 16S-23S 内部转录间隔区(ITS)的分子标记进行 DGGE 分析,研究了大梅佐尔湖(GLM)系统中湖泊中微囊藻(Pcy)的季节性和空间多样性。对从中营养到富营养的 9 个湖泊的研究表明,Pcy 具有季节性变化。基于这两种标记物计算的丰富度和香农多样性指数在春季较高,而在夏初和夏末较低。两种标记物与研究湖泊的营养状态或 Pcy 丰度之间未发现统计学上的显著关系。然而,多样性指数与采样时间之间存在统计学上的显著关系。分析表明这两种标记物的分布不同。ITS 标记在时间和空间上表现出更多独特的序列,而 cpcBA-IGS 数据表明常见和普遍序列的作用更大。对 Pcy 群落结构的分析表明,根据采样季节/时间而不是湖泊的营养状态,群落按高度相似的聚类分组。我们的结果表明,时间比营养状态更能塑造 Pcy 群落的多样性和结构。讨论了微囊藻的季节性变化以及多样性和群落结构的差异,并结合了已确立的生态假设:PEG 模型、中度干扰假说(IDH)和水平基因转移(HGT)。