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Extraction and characterization of brassinosteroids from residues of the biodiesel chain

机译:从生物柴油链残留物中提取和表征油菜素类固醇

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Brassinosteroids are plant hormones whose stimulating activity on plant growth and development has been fully characterised and already investigated for agricultural applications. Straw and deoiled cakes, that are main residues from crops and processing for biodiesel production, of Brassica carinata and Brassica napus var. oleifera were analyzed for their content of brassinosteroids and compared to the concentrations detected in seeds. Brassinosteroids in these extracts were quantified by both HPLC analysis and bioactivity test, and a very high residual content was found in these by-products. B. carinata showed a higher concentration of brassinosteroids than B. napus var. oleifera. A new extraction method was optimized to accelerate the process. As brassinosteroids are hydrophobic compounds, then characterised by low water-solubility, the addition of HP-beta cyclodextrin as coadjuvant was tested in order to improve their bioavailability in a commercial formulation for agricultural uses. These extracts were tested for their phytostimulating activity in pot-grown annual plants (lettuce and chard) under controlled conditions in a plant growth chamber. A significant increase of biomass yield was reached with both foliar and root treatments; no significant yield increased was observed when HP-beta cyclodextrin was added. Then the formulation of a commercial bio-based product to be proposed as phytostimulant for agricultural uses is possible by extraction of brassinosteroids from residues of the biodiesel chain; this co-product can improve the addition value and reduce the environmental impact of a biodiesel biorefinery converting a byproduct, coproduct or residue in a source. (C) 2015 Elsevier B.V. All rights reserved.
机译:油菜素类固醇是植物激素,其对植物生长和发育的刺激活性已得到充分表征,并且已经在农业方面进行了研究。甘蓝型油菜和甘蓝型油菜的秸秆和脱油饼是农作物和生物柴油生产加工的主要残留物。分析油菜中油菜素的含量,并与种子中检测到的浓度进行比较。这些提取物中的油菜素类固醇通过HPLC分析和生物活性测试进行了定量,并且在这些副产物中发现了很高的残留量。卡氏芽孢杆菌比油菜芽孢杆菌显示出更高的油菜素类固醇浓度。油菜。优化了一种新的提取方法以加速该过程。由于油菜素甾醇是疏水性化合物,其特征是水溶性低,因此测试了添加HP-β环糊精作为助剂的目的,以提高其在农业用工业制剂中的生物利用度。在植物生长室中的受控条件下,对这些提取物在盆栽的一年生植物(生菜和唐莴苣)中的植物刺激活性进行了测试。叶面处理和根部处理均可显着提高生物量产量;当添加HP-β-环糊精时,没有观察到明显的产率增加。然后,可以通过从生物柴油链的残基中提取油菜素类固醇来配制拟用作农业用植物刺激剂的商业生物基产品。这种副产品可以提高附加值,并减少生物柴油生物精炼厂将副产品,副产品或来源中的残留物转化为环境的影响。 (C)2015 Elsevier B.V.保留所有权利。

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