首页> 外文期刊>Analytica chimica acta >Chemical characterization by pyrolysis gas chromatography mass spectrometry of acid-precipitable polymeric lignin (APPL) from wheat straw transformed by selected streptomyces strains
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Chemical characterization by pyrolysis gas chromatography mass spectrometry of acid-precipitable polymeric lignin (APPL) from wheat straw transformed by selected streptomyces strains

机译:高温热解气相色谱质谱法对链霉菌转化小麦秸秆中酸可沉淀的聚合木质素(APPL)进行化学表征

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摘要

The possible differential biodegradation of wheat straw performed by different Streptomyces strains was investigated on solid-state fermentation conditions. The modified lignin polymer named acid-precipitable polymeric lignin (APPL), harvested with NaOH or water, from wheat straw transformed by selected Streptomyces strains was tentatively characterized by pyrolysis-gas chromatography-mass spectrometry (PY/GC/MS). For comparative analyzes, lignin-carbohydrate-protein complexes obtained from uninoculated wheat straw were used as controls. Significant differences in the p-hydroxyphenyl: guaiacyl : syringyl (H: G: S) and in the syringyl/guaiacyl (S/G) ratios of the APPLs extracted with water from wheat straw transformed by the strains Streptomyces UAH 23, Streptomyces UAH 52 and Streptomyces viridosporus T7 A were detected compared with the control. While S. UAH 23 produced a preferential degradation of the non-condensed S-lignin units, a decrease in the condensed G-units was produced by S. UAH 52 and S. viridosporus T7 A. From the results obtained it can be concluded that PY/GC/MS is a suitable technique to establish differences in the composition of the main product of solubilization of lignocellulose by different Streptomyces strains. Nevertheless for chemical characterization of this polymer, it is important to select the method to be used to extract the APPL from degraded residues in order to prevent chemical modifications of the substrate as occurred when NaOH was used which make difficult to attribute the changes observed to the microbial activity.
机译:在固态发酵条件下,研究了由不同链霉菌菌株进行的麦秸可能的生物降解差异。通过热解-气相色谱-质谱法(PY / GC / MS)初步表征了用NaOH或水收获的,经选择的链霉菌属菌株转化的小麦秸秆中改性的木质素聚合物,称为酸可沉淀聚合物木质素(APPL)。为了进行比较分析,将从未接种的麦秸中得到的木质素-碳水化合物-蛋白质复合物用作对照。从由Streptomyces UAH 23,Streptomyces UAH 52菌株转化的小麦秸秆中提取的APPL的水提取的APPL的对羟基苯基:guaiacyl:syringyl(H:G:S)和syringyl / guaiacyl(S / G)比的显着差异与对照相比,检测到了链霉菌和病毒链霉菌T7A。虽然S. UAH 23会优先降解未缩合的S-木质素单元,但S. UAH 52和S. viridosporus T7 A会降低缩合G单元。从所得结果可以得出结论: PY / GC / MS是确定不同链霉菌菌株对木质纤维素增溶的主要产物组成差异的合适技术。然而,对于该聚合物的化学表征,重要的是选择用于从降解的残留物中提取APPL的方法,以防止当使用NaOH时发生的底物化学改性,因为这种化学改性很难将观察到的变化归因于NaOH。微生物活性。

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