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Optimization of D-pinitol extraction from vegetable soybean leaves and its potential application in control of cucumber powdery mildew.

机译:蔬菜大豆叶中D-松醇的提取工艺优化及其在黄瓜白粉病防治中的潜在应用。

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摘要

D-pinitol is a bioactive compound with an important application in both food and nonfood industries. In the present study, the leaves of twelve vegetable soybean cultivars that are usually treated as agricultural waste were screened for the presence of D-pinitol. The results showed that the D-pinitol content in these 12 cultivars ranged from 1.32 to 3.04% (w/w) of dry weight, and the cultivar Z98002 was found to contain the highest amount of D-pinitol. Response surface methodology (RSM) was used for optimization of D-pinitol extraction conditions by the Box-Behnken design. The predicted extraction efficiency, which is at least 1.3-fold that of the previously reported typical method, reached to 3.27% under the following optimal conditions: temperature of 65.5 degrees C, extraction time of 86.8 min, and dilution rate of 1:10. The test in the growth chamber showed that the efficacy of soybean extracts in cucumber powdery mildew control was dose-dependent on the D-pinitol concentration, and the formulated extracts clearly increased the control compared to the crude extract. This effect of the D-pinitol formulation in a greenhouse was confirmed in four provinces of China over a period of two years. Our present study provides the optimized extraction conditions for a selected agricultural waste-vegetable soybean-to obtain a high yield of D-pinitol. Results from the growth chamber test and the greenhouse bioassay will be useful in exploring a low-cost phytochemical fungicide for cucumber powdery mildew control.
机译:D-松醇是一种生物活性化合物,在食品和非食品工业中都有重要的应用。在本研究中,对12种通常被视为农业废弃物的蔬菜大豆品种的叶片进行了D-松醇的筛选。结果表明,这12个品种中D-松醇的含量为干重的1.32%至3.04%(w / w),并且发现Z98002品种中D-松醇的含量最高。通过Box-Behnken设计,将响应面方法(RSM)用于优化D-松醇的提取条件。在以下最佳条件下(65.5摄氏度,86.8分钟的提取时间和1:10的稀释率),预测的提取效率至少是先前报道的典型方法的1.3倍,达到3.27%。在生长室中的测试表明,大豆提取物在黄瓜白粉病防治中的功效取决于D-松醇的浓度,与粗提取物相比,配制的提取物明显提高了对照。在四年中,在中国的四个省中证实了D-松醇制剂在温室中的这种作用。我们的当前研究为选定的农业废料蔬菜大豆提供了最佳的提取条件,以获得高产量的D-松醇。生长室测试和温室生物测定的结果将有助于探索一种低成本的植物化学杀菌剂,以控制黄瓜白粉病。

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