Department of Plants and Crops - Unit HortiCell, Ghent University, Faculty of Bioscience Engineering, Coupure Links 653, 9000, Ghent, Belgium.
Department of Green Chemistry and Technology - SynBioC research group, Ghent University, Faculty of Bioscience Engineering, Coupure Links 653, 9000, Ghent, Belgium.
Sci Rep. 2022 May 25;12(1):8792. doi: 10.1038/s41598-022-12815-z.
Recovering biostimulant compounds from by-products of crops is a promising strategy to add value, enhance sustainability, and increase the environmental safety of the agricultural production chain. Here, we report consistent root and shoot growth-stimulating bioactivity present in water-based extracts from Belgian endive forced roots (Cichorium intybus var. foliosum) over two consecutive harvest years. The shoot and the primary root of in vitro cultivated Arabidopsis thaliana treated with Belgian endive extract were about 30% increased in size compared to plants grown under control conditions. The ornamental species Plectranthus esculentus also showed enhanced in vitro shoot and root growth, suggesting bioactivity on a broad range of species. Fractionation of the Belgian endive extracts into aqueous and organic subfractions coupled with bioactivity measurements showed that the principal root and shoot growth-promoting ingredients are primarily water-soluble. NMR-based characterization of the bioactive aqueous fractions revealed the presence of predominantly sugars and organic acids. Malate and sugars were abundant and common to all water fractions, suggesting these molecules contributed to the growth stimulation phenotype. The findings indicate that Belgian endive roots are a source for the development of organic waste-derived biostimulants with potential for application in tissue culture and putatively for soil-grown crop production.
从农作物副产物中回收生物刺激化合物是一种很有前途的策略,可以增加附加值、提高可持续性,并提高农业生产链的环境安全性。在这里,我们报告了在连续两年的收获中,从比利时菊苣(菊苣变种)的水基提取物中存在一致的根和地上部生长刺激生物活性。与在对照条件下生长的植物相比,用比利时菊苣提取物处理的体外培养拟南芥的地上部和主根的大小增加了约 30%。观赏植物虾钳菜的离体地上部和根生长也得到了增强,这表明其对广泛的物种具有生物活性。将比利时菊苣提取物分离成水相和有机相,并进行生物活性测量,结果表明,主要的根和地上部生长促进成分主要是水溶性的。基于 NMR 的生物活性水相部分的表征表明,主要存在糖和有机酸。苹果酸和糖在所有水相中都很丰富且常见,这表明这些分子对生长刺激表型有贡献。研究结果表明,比利时菊苣根是开发有机废物衍生生物刺激剂的来源,这些生物刺激剂有可能应用于组织培养,并可能应用于土壤种植的作物生产。