de Menezes Alexandre B, Müller Christoph, Clipson Nicholas, Doyle Evelyn
Peel Building, School of Environment & Life Sciences, University of Salford, Salford M5 4WT, UK.
School of Biology and Environmental Science and Earth Institute, University College Dublin, Belfield, Dublin 4, Ireland.
Microbiology (Reading). 2016 Sep;162(9):1572-1582. doi: 10.1099/mic.0.000341. Epub 2016 Jul 26.
The soil bacterial community at the Giessen free-air CO2 enrichment (Gi-FACE) experiment was analysed by tag sequencing of the 16S rRNA gene. No substantial effects of CO2 levels on bacterial community composition were detected. However, the soil moisture gradient at Gi-FACE had a significant effect on bacterial community composition. Different groups within the Acidobacteria and Verrucomicrobia phyla were affected differently by soil moisture content. These results suggest that modest increases in atmospheric CO2 may cause only minor changes in soil bacterial community composition and indicate that the functional responses of the soil community to CO2 enrichment previously reported at Gi-FACE are due to factors other than changes in bacterial community composition. The effects of the moisture gradient revealed new information about the relationships between poorly known Acidobacteria and Verrucomicrobia and soil moisture content. This study contrasts with the relatively small number of other temperate grassland free-air CO2 enrichment microbiome studies in the use of moderate CO2 enrichment and the resulting minor changes in the soil microbiome. Thus, it will facilitate the development of further climate change mitigation studies. In addition, the moisture gradient found at Gi-FACE contributes new knowledge in soil microbial ecology, particularly regarding the abundance and moisture relationships of the soil Verrucomicrobia.
通过对16S rRNA基因进行标签测序,分析了吉森自由空气CO2富集(Gi-FACE)实验中的土壤细菌群落。未检测到CO2水平对细菌群落组成有实质性影响。然而,Gi-FACE的土壤湿度梯度对细菌群落组成有显著影响。酸杆菌门和疣微菌门内的不同类群受土壤含水量的影响不同。这些结果表明,大气CO2的适度增加可能只会导致土壤细菌群落组成的微小变化,并表明先前在Gi-FACE报道的土壤群落对CO2富集的功能反应是由细菌群落组成变化以外的因素引起的。湿度梯度的影响揭示了关于鲜为人知的酸杆菌和疣微菌与土壤含水量之间关系的新信息。本研究与其他相对较少的温带草原自由空气CO2富集微生物组研究形成对比,本研究使用了适度的CO2富集,导致土壤微生物组的变化较小。因此,它将有助于进一步开展气候变化缓解研究。此外,在Gi-FACE发现的湿度梯度为土壤微生物生态学贡献了新知识,特别是关于土壤疣微菌的丰度和湿度关系。