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  • Open Access

    ARTICLE

    Correlation between Floral Color Attributes and Volatile Components among 10 Fragrant Phalaenopsis Cultivars

    Xiuyun Liu1, Jixia Sun2, Feng Ming3, Minxiao Liu2,*, Xinyu Wang2, Yingjie Zhang2,*

    Phyton-International Journal of Experimental Botany, Vol.94, No.2, pp. 379-391, 2025, DOI:10.32604/phyton.2025.060726 - 06 March 2025

    Abstract To study the main aroma components of Phalaenopsis orchid and their relationship with colors, 10 fragrant cultivars with different colors, like pink, rose, yellow, and purple, were used as samples in this experiment. Headspace-gas chromatography-mass spectrometry was used to determine the main components of floral fragrance and analyze the correlation between floral color and fragrance. The results showed that the main aroma components of the 10 fragrant cultivars of Phalaenopsis were alcohols, alkenes, esters, and benzene ring compounds, and the main aroma components of different cultivars were diverse. The main aroma components of yellow fragrant flowers… More >

  • Open Access

    ARTICLE

    Headspace Solid-Phase Micro-Extraction Gas Chromatography/Mass Spectrometry (HS-SPME-GC/MS)-Based Untargeted Metabolomics Analysis for Comparing the Volatile Components from 12 Panax Herbal Medicines

    Simiao Wang1,#, Xiaohang Li1,#, Meiting Jiang1, Xinlong Wu2, Yuying Zhao1, Meiyu Liu1, Xiaoyan Xu1, Huimin Wang1, Hongda Wang1, Heshui Yu2, Wenzhi Yang1,*

    Phyton-International Journal of Experimental Botany, Vol.91, No.7, pp. 1353-1364, 2022, DOI:10.32604/phyton.2022.021093 - 14 March 2022

    Abstract Quality control of ginseng currently is mainly based on ginsenoside analysis, but rarely focuses on the volatile organic components. In the current work, an untargeted metabolomics approach, by headspace solid-phase micro-extraction gas chromatography/mass spectrometry (HS-SPME-GC/MS), was elaborated and further employed to holistically compare the compositional difference of the volatile components simultaneously from 12 Panax herbal medicines, which included P. ginseng (PG), P. quinquefolius (PQ), P. notoginseng (PN), red ginseng (PGR), P. ginseng leaf (PGL), P. quinquefolius leaf (PQL), P. notoginseng leaf (PNL), P. ginseng flower (PGF), P. quinquefolius flower (PQF), P. notoginseng flower (PNF), P. japonicus (PJ), and P. japonicus var. major (PJvm). Chromatographic separation was performed… More >

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