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Climatic Factors Shape the Spatial Distribution of Concentrations of Triterpenoids in Barks of White Birch ( Betula Platyphylla Suk.) Trees in Northeast China

机译:气候因素影响东北白桦树皮树皮中三萜类化合物的空间分布

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Betulin, betulinic acid and lupeol are naturally occurring pentacyclic triterpenoids with significant medicinal values. Great amounts of triterpenoids are found in the bark of white birch ( Betula platyphylla Suk.) trees, which can be affected by climatic factors along the geographical gradients. In this study, site-based data of triterpenoids’ (betulin, betulinic acid and lupeol) concentrations were determined in barks of white birch trees from 48 sites in Northeast China. Triterpenoid concentration in white birch tree barks did not change in response to any geographical gradients along latitudes, longitudes or elevations. Instead, concentrations of betulin and lupeol in birch tree barks increased with the increase of temperature and precipitation but declined with the increase of relative humidity. As a result, betulin concentration was higher in birch trees in the northeastern and southwestern parts of the study area, and lower in the central part of the study area in Northeast China. Although betulinic acid concentration did not change with climatic factors, its distribution pattern was similar to betulin concentration. Lupeol concentration was highest in the north-eastern part and along the southern and eastern boundaries in the study area. Our results can supply information for precondition of triterpenoids’ extraction for industrial production, which can be an available approach to solve the issue of bark waste processing of white birch.
机译:桦木素,桦木酸和羽扇豆酚是天然存在的五环三萜,具有重要的药用价值。在白桦树皮(Betula platyphylla Suk。)的树皮中发现了大量的三萜类化合物,这可能会受到沿地理梯度的气候因素的影响。在这项研究中,从东北地区48个站点的白桦树皮中确定了三萜类化合物(贝特林,桦木酸和羽扇豆酚)浓度的基于位置的数据。白桦树皮中的三萜类物质浓度没有响应于沿纬度,经度或海拔的任何地理梯度而变化。取而代之的是,白桦树皮中的桦木素和羽扇豆酚的浓度随温度和降水的增加而增加,但随相对湿度的增加而下降。结果,在研究区域的东北和西南部桦树中白桦蛋白浓度较高,而在中国东北的研究区域中部则较低。尽管桦木酸的浓度没有随气候因素而变化,但是其分布方式与桦木素的浓度相似。在研究区域的东北部以及沿南部和东部边界,羽扇豆酚的浓度最高。我们的结果可以为工业生产中三萜类化合物提取的前提条件提供信息,这可能是解决白桦树皮废物加工问题的一种可行方法。

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