黄芪提取物复杂化学成分中黄酮类化合物的分形分析西伯利亚西部贫营养沼泽中的冬青科植物

IF 0.4 Q4 PLANT SCIENCES
Usmanov Isk, er Yusufovich, Yumagulova Elvira Ramilevna, Aleks, rova Viktoria Viktorovna, Ivanov Sergey Petrovich, Shcherbakov Arkadiy Vladimirovich, Gonchar Ivan Gennadievich, Ivanov Vyacheslav Borisovich
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引用次数: 9

摘要

从中性理论的角度评价了组织植物适应原类黄酮生物合成的可能性。我们假设类黄酮和具有相似物理化学性质的低分子化合物的生物合成对环境条件的微波动是中性的。Chamaedaphne calculata (L.)采用高效液相色谱-高效液相色谱法研究了西西伯利亚中Ob地区贫营养沼泽自然种群中的赤藓。进行HPLC分析的样品取自生态等效的沼泽地区。色谱图在峰的数量、释放时间和特定峰的面积上有所不同。将1、2、3、5、9层色谱中的峰置于峰释放的共同时间尺度上,从单个色谱图到“组合”色谱图进行分层构建,进行分形分析。峰的数量从特定色谱中的21-30个到“广义”统一色谱中的76个峰不等。计算程序的复杂性表明,所有的色谱图都是随机分形的,其中自变量是每个特定峰的数量、大小(面积)和释放时间。在类黄酮体系具有分形特性的情况下,有必要分析实现这种或那种类黄酮合成的中性和确定性变体的可能性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Fractal analysis of flavonoids in complex chemical compositions in extracts of Chamaedaphne calyculata (L.) Moench (ericaceae) in oligotrophic swamps of Western Siberia
Evaluated the possibility of organizing the biosynthesis of plant adaptogens-flavonoids from the standpoint of the theory of neutrality. We assumed that the biosynthesis of flavonoids and low-molecular compounds with similar physicochemical properties is neutral with respect to microfluctuations of environmental conditions. Leaf extracts Chamaedaphne calyculata (L.) Moench from natural populations oligotrophic swamps the Middle Ob region (Western Siberia) was studied by method HPLC-high performance liquid chromatography. The samples to carry out the HPLC analyses were taken in ecologically equivalent swamp areas. Chromatograms differed in the number of peaks, the time of their release, and the area of particular peaks. The hierarchy constructing procedure from single up to "combined" chromatograms, where peaks from 1, 2, 3, 5, and 9 chromatograms were placed on the common time scale of the peaks release, was carried out for fractal analysis. The number of peaks varied from 21-30 in particular chromatograms up to 76 peaks in a "generalized" united chromatogram. The complex of calculation procedures has shown that all chromatograms obtained from Chamaedaphne calyculata plants are stochastic fractals, where the independent variables are the number, the size (area) and release time of each particular peak. In the presence of the fractal properties of the flavonoid system, it is necessary to analyze the possibility of implementing both neutral and deterministic variants of the synthesis of this or that flavonoid.
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来源期刊
Modern Phytomorphology
Modern Phytomorphology PLANT SCIENCES-
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