Zombori Zoltán, Szalai Gabriella, Hamow Kamirán Áron, Hóvári Miklós, Sass László, Ferenc Györgyi, Janda Tibor, Dudits Dénes
Institute of Plant Biology, HUN-REN Biological Research Centre, Szeged, Hungary.
Department of Plant Physiology and Metabolomics, Agricultural Institute, HUN-REN Centre for Agricultural Research, Martonvásár, Hungary.
Front Plant Sci. 2025 Aug 4;16:1650824. doi: 10.3389/fpls.2025.1650824. eCollection 2025.
Extracts from willow bark or leaves were shown to contain effective plant biostimulants and pharmaceutical compounds. Considering the limitation in the use of bark raw materials on large scale, here we analyzed the stimulatory effects of extracts from various organs of willow (Salix viminalis L) plants grown as short rotation shrub willow. Metabolomic analysis of water extracts from different organs (leaves, meristems, stems) of two triploid genotypes (Rába and Maros) revealed presence of bioactive compounds. Quantity of phenylpropanoids, flavones, flavonols, anthocyanins, aminobenzoate degradants, plant hormones and stylbenes varied between organs and genotypes. Several of these bioactive compounds are known as pharmaceuticals. Here we carried out phytostimulatory tests by using various extracts for seed priming and foliar spraying of maize plants in greenhouse and field experiments. Both the digital imagining of maize plants and measurements of the plant height showed variable stimulation of growth. Chlorophyll fluorescence parameters indicated improved photosynthetic performance. Increased seed weight/ear and 1000 seed weight (17%) were detected after foliar spraying. The present study supports the extended application of bioactive phytocompounds by offering a novel raw material, the short rotation willow shoots as sources of bioactive compounds for use in agricultural practice and pharmaceutical industry.
柳树皮或树叶的提取物被证明含有有效的植物生物刺激剂和药物化合物。考虑到大规模使用树皮原料的局限性,我们在此分析了作为短轮伐灌木柳树种植的柳树(垂柳)不同器官提取物的刺激作用。对两种三倍体基因型(拉巴和马罗斯)不同器官(叶子、分生组织、茎)的水提取物进行代谢组学分析,发现了生物活性化合物。苯丙烷类、黄酮类、黄酮醇类、花青素类、氨基苯甲酸降解产物、植物激素和芪类化合物的含量在不同器官和基因型之间存在差异。其中几种生物活性化合物是已知的药物。我们在此通过在温室和田间试验中使用各种提取物对玉米种子进行引发处理和叶面喷施,开展了植物刺激试验。玉米植株的数字成像和株高测量均显示出生长受到不同程度的刺激。叶绿素荧光参数表明光合性能得到改善。叶面喷施后,穗粒重和千粒重增加(17%)。本研究通过提供一种新型原料——短轮伐柳树嫩枝,作为农业实践和制药行业中生物活性化合物的来源,支持生物活性植物化合物的广泛应用。