Bulgari Roberta, Cocetta Giacomo, Trivellini Alice, Ferrante Antonio
1Department of Agricultural and Environmental Sciences, Università degli Studi di Milano, Via Celoria 2, Milan, Italy.
2Institute of Life Science, Scuola Superiore Sant'Anna Pisa, Pz Martiri della Libertà 33, Pisa, Italy.
Physiol Mol Biol Plants. 2020 Apr;26(4):649-660. doi: 10.1007/s12298-020-00783-5. Epub 2020 Mar 19.
Market is increasingly demanding vegetables with high quality and nutraceutical characteristics. It was demonstrated that leafy vegetables can get benefit from biostimulants, for the reduction of nitrate concentration and the increment of antioxidants, with potential benefit for human health. The research purpose was to investigate on the role of a novel plant-based biostimulant in affecting nitrogen and carbon metabolism in wild rocket ( L.). Foliar spray treatments were performed with extracts obtained from borage ( L.) leaves and flowers. To evaluate the treatments effect, in vivo determinations (chlorophyll fluorescence and chlorophyll content) were performed. At harvest, nitrate concentration, sucrose, total sugars, chlorophyll, and carotenoids levels were measured in leaves. In order to characterize the mechanism of action also at molecular level, a set of genes encoding for some of the key enzymes implicated in nitrate and carbon metabolism was selected and their expression was measured by qRT-PCR. Interesting results concerned the increment of sucrose, coherent with a high value of Fv/Fm, in addition to a significant reduction of nitrate and ABA than control, and an enhanced NR in vivo activity. Also, genes expression was influenced by extracts, with a more pronounced effect on N related genes.
市场对具有高品质和营养保健特性的蔬菜需求日益增加。事实证明,叶菜类蔬菜可以从生物刺激剂中受益,从而降低硝酸盐浓度并增加抗氧化剂含量,对人体健康具有潜在益处。本研究的目的是探讨一种新型植物源生物刺激剂对野生芝麻菜(L.)氮和碳代谢的影响。用琉璃苣(L.)的叶子和花朵提取物进行叶面喷施处理。为了评估处理效果,进行了活体测定(叶绿素荧光和叶绿素含量)。收获时,测定叶片中的硝酸盐浓度、蔗糖、总糖、叶绿素和类胡萝卜素水平。为了在分子水平上表征作用机制,选择了一组编码参与硝酸盐和碳代谢的一些关键酶的基因,并通过qRT-PCR测量它们的表达。有趣的结果包括蔗糖增加,与Fv/Fm的高值一致,此外硝酸盐和脱落酸含量比对照显著降低,以及体内硝酸还原酶(NR)活性增强。此外,基因表达也受到提取物的影响,对与氮相关的基因影响更为明显。