School of Agriculture, Pesticide Science Laboratory, Aristotle University of Thessaloniki, Thessaloniki 54124, Greece.
Microb Ecol. 2011 Oct;62(3):704-14. doi: 10.1007/s00248-011-9863-2. Epub 2011 May 10.
Phospholipid fatty acid (PLFA) analysis is a robust method for characterizing soil microbial communities. We determined the effects of extraction solvent (chloroform vs dichloromethane) and buffer (phosphate vs citrate) on the yield and the profile of PLFAs extracted from an acidic (pH 5.5) and an alkaline (pH 8.6) soil following two 2-h sequential extractions. The yield and the profile of the PLFAs obtained separately by the first and the second 2-h extraction were compared to identify the impact of sequential extractions on the PLFA extraction efficiency. Chloroform-citrate and a 2 × 2-h extraction maximized PLFA yields in both soils. Multivariate analysis of the data showed that the choice of the extraction mixture did not significantly influence the profile of the PLFAs obtained by the first 2-h extraction, whereas it had a profound effect on the profile of the PLFAs obtained by the second 2-h extraction. Most PLFAs were extracted during the first extraction except 18:2ω6,9 and 22:0 which were almost equally extracted by the two sequential extractions. The choice of organic solvent significantly influenced the profile of the PLFAs extracted; their yield increased with chloroform with the exception of 18:2ω6,9 and 22:0 which were favored by dichloromethane. Overall, a 2 × 2-h extraction with chloroform/methanol/citrate is expected to provide maximum PLFA yields.
磷脂脂肪酸(PLFA)分析是一种用于描述土壤微生物群落的有效方法。我们通过两次 2 小时连续提取,确定了提取溶剂(氯仿与二氯甲烷)和缓冲液(磷酸盐与柠檬酸盐)对从酸性(pH 5.5)和碱性(pH 8.6)土壤中提取的 PLFA 的产量和谱的影响。比较了第一次和第二次 2 小时提取分别获得的 PLFA 的产量和谱,以确定连续提取对 PLFA 提取效率的影响。在两种土壤中,氯仿-柠檬酸盐和 2×2 小时提取均使 PLFA 的产量最大化。数据分析的多元分析表明,提取混合物的选择并不显著影响第一次 2 小时提取获得的 PLFA 的谱,但对第二次 2 小时提取获得的 PLFA 的谱有深远影响。除 18:2ω6,9 和 22:0 外,大多数 PLFA 在前一次提取中被提取,而这两种物质在前两次连续提取中几乎被等量提取。有机溶剂的选择显著影响了提取的 PLFA 的谱;除 18:2ω6,9 和 22:0 外,它们更倾向于使用二氯甲烷,它们的产量随着氯仿的增加而增加。总体而言,使用氯仿/甲醇/柠檬酸盐的 2×2 小时提取有望提供最大的 PLFA 产量。