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生态单宁分析:原花青素评估、蛋白质结合分析及蛋白质沉淀潜力

Ecological tannin assays : Evaluation of proanthocyanidins, protein binding assays and protein precipitating potential.

作者信息

Wisdom C S, Gonzalez-Coloma A, Rundel P W

机构信息

Laboratory of Biomedical and Environmental Sciences, University of California, Los Angeles, 900 Veteran Avenue, 90024, Los Angeles, CA, USA.

出版信息

Oecologia. 1987 Jun;72(3):395-401. doi: 10.1007/BF00377570.

Abstract

Estimations of condensed tannin content are generally based on calibration standard curves from Quebracho condensed tannins. We generated calibration standard curves from eight Sonoran Desert species for comparison with estimates of tannin concentrations derived from the Quebracho standard curve. Estimates of leaf tannin concentrations of each of the eight species using each species standard curve differed significantly with the estimates given by the Quebracho standard curve. Standard curves constructed from tannins from different individuals of three of the species varied significantly between, but not within, species. The efficiency of precipitation of protein bovine serum albumin (BSA) by each different tannin varied up to a factor of fifty for tannins of different species. Ordering species from highest to lowest based on tannin concentrations or binding efficiencies gave two different ranks. We argue that concentration or efficiency alone do not describe adequately tannin ecological activity. Instead, we suggest combining tannin concentrations and binding efficiencies to measure the protein precipitating potential of a leaf. Leaf protein precipitating potential is a more ecologically realistic parameter, we feel, for between-species comparisons than tannin content or binding efficiencies alone.

摘要

缩合单宁含量的估算通常基于来自坚木缩合单宁的校准标准曲线。我们从八种索诺兰沙漠物种中生成了校准标准曲线,以便与从坚木标准曲线得出的单宁浓度估算值进行比较。使用每种物种标准曲线对这八个物种各自叶片单宁浓度的估算值,与坚木标准曲线给出的估算值有显著差异。由其中三个物种不同个体的单宁构建的标准曲线,在物种之间差异显著,但在物种内部差异不显著。对于不同物种的单宁,其沉淀牛血清白蛋白(BSA)的效率相差高达五十倍。根据单宁浓度或结合效率从高到低对物种进行排序会得出两种不同的排名。我们认为,仅浓度或效率并不能充分描述单宁的生态活性。相反,我们建议将单宁浓度和结合效率结合起来,以衡量叶片沉淀蛋白质的潜力。我们认为,对于种间比较而言,叶片蛋白质沉淀潜力是一个比单独的单宁含量或结合效率更符合生态实际的参数。

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