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Critical evaluation of methods for determining total protein in soil solution.

机译:对测定土壤溶液中总蛋白质的方法的严格评估。

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Proteins represent a significant reservoir of organic nitrogen in most terrestrial ecosystems and therefore comprise a key component of the soil N cycle. Consequently, there is a critical need to develop robust methodologies for quantifying the abundance of proteins in soil. In this study we evaluated the performance of five commercially available total protein assay kits in a contrasting range of soils. All the kits were based on the detection of proteins after conjugation with either chromophores or fluorophores. Overall, we found that all the kits suffered significant signal interference from humic substances present in solution, resulting in either a quenching or enhancement of the protein response. Inter-comparison of the kits yielded no agreement when quantifying the total amount of protein present in soil solution, with differences in concentration for individual samples ranging 20-500-fold when using the different assay kits. We concluded that none of the commercial assay kits can provide a reliable indicator of soil solution protein content. Although it may detect some non-proteinaceous material (e.g. peptidoglycan), total protein quantitation is currently best undertaken by acid hydrolysis of proteins in solution with subsequent determination of the amino acids liberated. However, there is an imperative need to develop robust methods for protein extraction, purification and analysis in soil.
机译:蛋白质代表了大多数陆地生态系统中重要的有机氮库,因此构成了土壤氮循环的关键组成部分。因此,迫切需要开发可靠的方法来定量土壤中蛋白质的丰度。在这项研究中,我们评估了五种市售总蛋白测定试剂盒在不同土壤范围内的性能。所有试剂盒均基于与发色团或荧光团结合后的蛋白质检测。总的来说,我们发现所有试剂盒均受到溶液中存在的腐殖质的明显信号干扰,从而导致蛋白质反应的淬灭或增强。当对土壤溶液中蛋白质的总量进行定量时,这些试剂盒的相互比较没有达成一致,当使用不同的测定试剂盒时,单个样品的浓度差异为20-500倍。我们得出的结论是,没有任何一种商业化的检测试剂盒能够提供土壤溶液蛋白质含量的可靠指标。尽管它可以检测到某些非蛋白质物质(例如肽聚糖),但总蛋白定量目前最好通过溶液中蛋白质的酸水解并随后测定释放的氨基酸来进行。然而,迫切需要开发用于在土壤中进行蛋白质提取,纯化和分析的可靠方法。

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