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植物蛋白水解物的生物刺激作用通过提高“杰诺维斯”罗勒的性能和品质特征,补偿了漂浮筏式系统中营养供应强度的降低。

Biostimulatory Action of Vegetal Protein Hydrolysate Compensates for Reduced Strength Nutrient Supply in a Floating Raft System by Enhancing Performance and Qualitative Features of "Genovese" Basil.

作者信息

Ciriello Michele, Formisano Luigi, Kyriacou Marios C, Colla Giuseppe, Graziani Giulia, Ritieni Alberto, De Pascale Stefania, Rouphael Youssef

机构信息

Department of Agricultural Sciences, University of Naples Federico II, Naples, Italy.

Department of Vegetable Crops, Agricultural Research Institute, Aglantzia, Cyprus.

出版信息

Front Plant Sci. 2022 May 23;13:906686. doi: 10.3389/fpls.2022.906686. eCollection 2022.

Abstract

The floating raft constitutes a valuable system for growing herbs as it effectuates high yield and prime functional quality. However, the pressing need for advancing sustainability in food production dictates the reduction of chemical fertilizer inputs in such intensive production schemes through innovative cultivation practices. In this perspective, our work appraised the productive and qualitative responses of two "Genovese" basil genotypes (Eleonora and Italiano Classico) grown in a floating raft system with nutrient solutions of varied electrical conductivity (EC; 2 and 1 dS m) combined with root application of protein hydrolysate biostimulant at two dosages (0.15 and 0.3 0 ml L of Trainer). The phenolic composition, aromatic profile, and antioxidant activities (ABTS, DPPH, and FRAP) of basil were determined by UHPLC/HRMS, GC/MS, and spectrophotometry, respectively. "Eleonora" demonstrated higher number of leaves (37.04 leaves per plant), higher fresh yield (6576.81 g m), but lower polyphenol concentration (1440.81 μg g dry weight) compared to "Italiano Classico." The lower EC solution (1 dS m) increased total phenols (+32.5%), ABTS, DPPH, and FRAP antioxidant activities by 33.2, 17.1, and 15.8%, respectively, and decreased linalool relative abundance by 5.5%. Biostimulant application improved crop performance and increased total phenolic concentration in both genotypes, with the highest phenolic concentration (1767.96 μg g dry weight) registered at the lowest dose. Significant response in terms of aromatic profile was detected only in "Eleonora." Our results demonstrate that the application of protein hydrolysate may compensate for reduced strength nutrient solution by enhancing yield and functional quality attributes of "Genovese" basil for pesto.

摘要

漂浮筏是一种种植草药的宝贵系统,因为它能实现高产和优质的功能品质。然而,食品生产中对提高可持续性的迫切需求要求通过创新种植方法减少这种集约化生产方案中的化肥投入。从这个角度来看,我们的研究评估了两种“热那亚”罗勒基因型(埃莱奥诺拉和意大利经典)在漂浮筏系统中生长时的生产和质量反应,该系统使用了不同电导率(EC;2和1 dS m)的营养液,并结合两种剂量(0.15和0.30 ml L的Trainer)的蛋白质水解物生物刺激剂进行根部施用。罗勒的酚类成分、香气特征和抗氧化活性(ABTS、DPPH和FRAP)分别通过超高效液相色谱/高分辨率质谱(UHPLC/HRMS)、气相色谱/质谱(GC/MS)和分光光度法测定。与“意大利经典”相比,“埃莱奥诺拉”表现出更高的叶片数量(每株37.04片叶)、更高的鲜产量(6576.81 g m),但多酚浓度较低(1440.81 μg g干重)。较低电导率的溶液(1 dS m)使总酚含量增加了32.5%,ABTS、DPPH和FRAP抗氧化活性分别提高了33.2%、17.1%和15.8%,并使芳樟醇相对含量降低了5.5%。生物刺激剂的施用改善了作物性能,并提高了两种基因型的总酚浓度,最低剂量时记录到最高酚浓度(1767.96 μg g干重)。仅在“埃莱奥诺拉”中检测到对香气特征的显著反应。我们的结果表明,蛋白质水解物的施用可以通过提高“热那亚”罗勒用于制作香蒜酱的产量和功能品质属性来弥补营养液强度的降低。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0934/9168677/abebdab44516/fpls-13-906686-g001.jpg

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