Stachowski-Haberkorn Sabine, Quiniou Louis, Beker Beatriz, Haberkorn Hansy, Marie Dominique, de la Broise Denis
Université Européenne de Bretagne, LUBEM (EA3882), UBO, 6 Rue de l'Université, 29334 Quimper, France.
Ecotoxicology. 2009 Apr;18(3):364-76. doi: 10.1007/s10646-008-0288-8. Epub 2008 Dec 19.
The impacts of the fungicide Opus (epoxiconazole) on marine phytoplankton communities were assessed in a 12-day field experiment using in situ microcosms maintained underwater at 6 m depth. Three community analysis methods were compared for their sensitivity threshold in fungicide impact detection. When phytoplankton communities were exposed to 1 microg l(-1) of epoxiconazole, no effects could be demonstrated using TTGE (Temporal Temperature Gradient gel Electrophoresis), flow cytometry or HPLC. When exposed to 10 microg l(-1), TTGE fingerprints from PCR amplified 18S rDNA of communities exhibited significant differences compared with controls (ANOSIM, P = 0.028). Neither flow cytometry counts, nor HPLC pigment profiles allowed to show significant differences in microcosms exposed to 10 microg l(-1) of epoxiconazole. When exposed to 100 microg l(-1), all three methods allowed to detect significant differences in treated microcosms, as compared to controls. The TTGE analysis appears in this study as the most sensitive method for fungicide impact assessment on eukaryote microbial communities.
在一项为期12天的野外实验中,利用在6米深度水下维持的原位微宇宙评估了杀菌剂奥谱(戊唑醇)对海洋浮游植物群落的影响。比较了三种群落分析方法在检测杀菌剂影响时的敏感性阈值。当浮游植物群落暴露于1微克/升的戊唑醇时,使用温度梯度凝胶电泳(TTGE)、流式细胞术或高效液相色谱法均未显示出影响。当暴露于10微克/升时,群落PCR扩增18S rDNA的TTGE指纹图谱与对照相比显示出显著差异(相似性分析,P = 0.028)。在暴露于10微克/升戊唑醇的微宇宙中,流式细胞术计数和高效液相色谱色素图谱均未显示出显著差异。当暴露于100微克/升时,与对照相比,所有三种方法均能检测到处理过的微宇宙中的显著差异。在本研究中,TTGE分析似乎是评估杀菌剂对真核微生物群落影响的最敏感方法。