首页> 外文期刊>Geoderma: An International Journal of Soil Science >A comparative study on the chemical composition of humic acids from forest soil, agricultural soil and lignite deposit Bound lipid, carbohydrate and amino acid distributions
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A comparative study on the chemical composition of humic acids from forest soil, agricultural soil and lignite deposit Bound lipid, carbohydrate and amino acid distributions

机译:森林土壤,农业土壤和褐煤沉积物中腐殖酸化学成分的比较研究结合脂质,碳水化合物和氨基酸分布

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Base- and acid-hydrolysable fractions of humic acids (HAs) isolated from a forest soil, an agricultural soil and a lignite deposit were analysed, and comparisons were made between the base hydrolysable lipid (bound lipid), carbohydrate and amino acidsignatures of the different humic acids. Bound lipids differ depending on the humic acid origin. Their composition were rather similar for the two soil humic acids, with three main lipid classes identified: (i) aliphatic components, (ii) aromatic components and (iii) sterols and triterpenols. The aliphatic subtraction was the most abundant and consisted predominantly of cutin- and suberin-derived moieties some of which could be clearly related to the vegetation. A minor bacterial input was indicated bythe presence of short chain a- and p-hydroxyalkanoic acids. Aromatic subtraction contributed to a low amount to the total base hydrolysates and consisted mainly of lignin-derived methoxyphenols. Present in trace amounts, sterols and triterpenols are mainly of higher plant origin. The base hydrolysate from lignite humic acid markedly differs. Bound lipids released from lignite HA comprised almost exclusively aliphatic components, largely dominated by long chain alkanoic acids. Lignin-derived moieties, hardly detected, consisted solely of vanillic and 4-hydroxybenzoic acids indicating a much higher degree of lignin alteration in lignite humic acid. Sterols and triterpenols were absent. Although the composition of monosaccharides released upon acid hydrolysis was rather uniform irrespective of the humic acid origin, the distribution changed with the degree of humification of the HAs. Ratios of (Galactose+Mannose) to (Xylose+Arabinose) increased from soil to lignite humic acids. The high values of the ratios indicate that carbohydrates are primarily of microbial origin. In all humic acids neutral and acidic protein amino acids dominated. Non protein amino acids were only minor components consisting mainly of hydroxy proline and ornithine. The amino aciddistributions of both soil HAs were similar. The amino acid distribution of lignite HA resembled that of soil HAs except for the following differences: (1) the absence of hydroxy proline and the greater abundance of ornithine suggesting a higher microbial contribution to the amino acids as the degree of humification increases, (2) the higher contribution of polar amino acids suggesting a preferential preservation of these amino acids possibly by interaction with the humic acid surface through hydrogenbonds.
机译:分析了从森林土壤,农业土壤和褐煤沉积物中分离得到的腐殖酸(HAs)的碱和酸可水解级分,并比较了碱水解性脂质(结合脂质),碳水化合物和不同氨基酸的氨基酸特征腐殖酸。结合的脂质根据腐殖酸的来源而不同。对于两种土壤腐殖酸,它们的组成相当相似,鉴定出三种主要的脂质类别:(i)脂肪族组分,(ii)芳香族组分和(iii)固醇和三萜醇。脂肪族减法是最丰富的,并且主要由角质和木栓质衍生的部分组成,其中一些可能与植被明显相关。短链α-和对羟基链烷酸的存在表明存在少量细菌输入。芳香族减法对总碱水解产物的贡献很小,主要由木质素衍生的甲氧基酚组成。固醇和三萜醇的含量极低,主要来自植物。来自褐煤腐殖酸的碱水解产物明显不同。从褐煤HA释放的结合脂质几乎仅包含脂族组分,主要由长链链烷酸占主导。几乎没有检测到木质素衍生的部分,仅由香草酸和4-羟基苯甲酸组成,表明褐煤腐殖酸中木质素的变化程度更高。不含甾醇和三萜醇。尽管不管腐殖酸的来源如何,酸水解释放的单糖组成都相当均匀,但其分布随HA的腐殖化程度而变化。从土壤到褐煤腐殖酸,(半乳糖+甘露糖)与(木糖+阿拉伯糖)的比例增加。该比率的高值表明碳水化合物主要是微生物来源的。在所有腐殖酸中,中性和酸性蛋白质氨基酸占主导地位。非蛋白质氨基酸仅是次要成分,主要由羟脯氨酸和鸟氨酸组成。两种土壤HA的氨基酸分布相似。褐煤HA的氨基酸分布与土壤HA相似,除了以下差异:(1)羟脯氨酸的缺乏和鸟氨酸的丰度越高,表明随着腐殖化程度的增加,微生物对氨基酸的贡献也就越大,(2 )极性氨基酸的较高贡献,表明可能通过氢键与腐殖酸表面相互作用而优先保留这些氨基酸。

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