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Bench scale and microplate format assay of soil enzyme activities using spectroscopic and fluorometric approaches.

机译:使用光谱和荧光方法对土壤酶活性进行基准规模和微孔板测定。

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Method standardization and validation are essential for meaningful data comparison and interpretation. The objective of this study was to compare bench scale and microplate format assays of soil enzyme activities using spectroscopic (p-nitrophenyl or pNP) and fluorometric (4-methylumbelliferyl or MUF) based approaches. Three assay approaches, including pNP-bench, pNP-microplate and MUF-microplate, were compared. Data from microplate format assays in the presence of soil suspension suggested that MUF-based assays were about 14 times more sensitive than pNP-based assays. MUF detection provided measures as low as 50 pmol of MUF in a microplate well. However, the pNP bench scale assay was the most sensitive of the three assays in quantifying enzyme activities. The limit of quantification (LOQ) values expressed as corresponding enzyme activities using the protocols tested were 0.049, 0.242, and 0.0936 mmol kg-1 h-1 for pNP bench, pNP microplate, and MUF microplate assays, respectively. Of the microplate assays, the MUF-based assay was more precise than the procedure using pNP. The presence of soil suspension increased standard errors, which more than doubled for the detection of pNP in microplate assays, but showed little effect on the standard error for the detection of MUF. For meaningful data interpretation, we suggest that LOQ values be calculated for enzyme assays and caution be exercised when interpreting data below LOQ values. Based on evaluations of three different enzymes in 16 diverse soils, the activities measured by the three protocols were often significantly different, but were in the same order of magnitude and significantly correlated, suggesting that the same pool of isoenzymes were measured by the different protocols.Digital Object Identifier http://dx.doi.org/10.1016/j.apsoil.2012.11.002
机译:方法的标准化和验证对于有意义的数据比较和解释至关重要。这项研究的目的是比较使用光谱法(对硝基苯基或pNP)和荧光法(4-甲基伞形酮或MUF)进行土壤酶活性的台式和微孔板测定。比较了三种检测方法,包括pNP台式,pNP微孔板和MUF微孔板。在存在土壤悬浮液的情况下,微孔板测定的数据表明,基于MUF的测定的灵敏度比基于pNP的测定高约14倍。 MUF检测可在微孔板孔中提供低至50 pmol MUF的措施。但是,在定量酶活性方面,pNP基准规模分析是这三种分析中最敏感的。对于pNP实验台,pNP,使用测试方案表示的相应酶活性的定量(LOQ)值分别为0.049、0.242和0.0936 mmol kg -1 h -1 微孔板和MUF微孔板检测。在微孔板检测中,基于MUF的检测比使用pNP的检测更为精确。土壤悬浮液的存在增加了标准误,在微孔板检测中检测pNP时,标准误增加了一倍以上,但对检测MUF的标准误影响不大。对于有意义的数据解释,我们建议为酶分析计算LOQ值,并且在解释低于LOQ值的数据时应谨慎行事。根据对16种不同土壤中三种不同酶的评估,这三种方案测得的活性通常显着不同,但数量级相同且显着相关,这表明不同方案测得的同工酶量相同。数字对象标识符http://dx.doi.org/10.1016/j.apsoil.2012.11.002

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