Männistö Minna K, Tiirola Marja, Häggblom Max M
Finnish Forest Research Institute, Eteläranta 55, 96300 Rovaniemi, Finland.
Microb Ecol. 2009 Oct;58(3):621-31. doi: 10.1007/s00248-009-9516-x. Epub 2009 Apr 15.
The effect of freeze-thaw (FT) cycles on Arctic tundra soil bacterial community was studied in laboratory microcosms. FT-induced changes to the bacterial community were followed over a 60-day period by terminal restriction fragment length polymorphism (T-RFLP) profiles of amplified 16S rRNA genes and reverse transcribed 16S rRNA. The main phylotypes of the active, RNA-derived bacterial community were identified using clone analysis. Non-metric multidimensional scaling ordination of the T-RFLP profiles indicated some shifts in the bacterial communities after three to five FT cycles at -2, -5, and -10 degrees C as analyzed both from the DNA and rRNA. The dominating T-RFLP peaks remained the same, however, and only slight variation was generally detected in the relative abundance of the main T-RF sizes of either DNA or rRNA. T-RFLP analysis coupled to clone analysis of reverse transcribed 16S rRNA indicated that the initial soil was dominated by members of Bacteroidetes, Acidobacteria, Alpha-, Beta-, and Gammaproteobacteria. The most notable change in the rRNA-derived bacterial community was a decrease in the relative abundance of a Betaproteobacteria-related phylotype after the FT cycles. This phylotype decreased, however, also in the control soil incubated at constant +5 degrees C suggesting that the decrease was not directly related to FT sensitivity. The results indicate that FT caused only minor changes in the bacterial community structure.
在实验室微观世界中研究了冻融(FT)循环对北极苔原土壤细菌群落的影响。通过对扩增的16S rRNA基因和逆转录的16S rRNA进行末端限制性片段长度多态性(T-RFLP)分析,在60天的时间里跟踪FT诱导的细菌群落变化。使用克隆分析鉴定了活性RNA衍生细菌群落的主要系统发育型。T-RFLP分析的非度量多维标度排序表明,在-2、-5和-10摄氏度下经过三到五个FT循环后,从DNA和rRNA分析,细菌群落都有一些变化。然而,主要的T-RFLP峰保持不变,并且在DNA或rRNA的主要T-RF大小的相对丰度中通常只检测到轻微变化。T-RFLP分析与逆转录16S rRNA的克隆分析相结合表明,初始土壤中以拟杆菌门、酸杆菌门、α-、β-和γ-变形菌门的成员为主。rRNA衍生细菌群落中最显著的变化是FT循环后与β-变形菌相关的系统发育型相对丰度的下降。然而,在恒温+5摄氏度下培养的对照土壤中,这种系统发育型也有所下降,这表明这种下降与FT敏感性没有直接关系。结果表明,FT仅引起细菌群落结构的微小变化。