A Comparative Analysis of Floral Scent Compounds in Intraspecific Cultivars of <i>Prunus mume</i> with Different Corolla Colours

<i>Prunus mume</i> is the only fragrant flowering species of <i>Prunus</i>. According to the previous studies, benzyl acetate and eugenol dominate its floral scent. However, the diversity of its floral scents remains to be elucidated. In this work, the floral volatiles emitte...

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Bibliographic Details
Main Authors: Tengxun Zhang, Fei Bao, Yongjuan Yang, Ling Hu, Anqi Ding, Aiqin Ding, Jia Wang, Tangren Cheng, Qixiang Zhang
Format: Article
Language:English
Published: MDPI AG 2019-12-01
Series:Molecules
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Online Access:https://www.mdpi.com/1420-3049/25/1/145
Description
Summary:<i>Prunus mume</i> is the only fragrant flowering species of <i>Prunus</i>. According to the previous studies, benzyl acetate and eugenol dominate its floral scent. However, the diversity of its floral scents remains to be elucidated. In this work, the floral volatiles emitted from eight intraspecific cultivars of <i>P. mume</i> with white, pink and red flowers, were collected and analyzed using headspace solid-phase microextraction combined with gas chromatograms-mass spectrometry (HS-SPME-GC-MS). In total, 31 volatile compounds were identified, in which phenylpropanoids/benzenoids accounted for over 95% of the total emission amounts. Surprisingly, except for benzyl acetate and eugenol, several novel components, such as benzyl alcohol, cinnamyl acohol, cinnamy acetate, and benzyl benzoate were found in some cultivars. The composition of floral volatiles in cultivars with white flowers was similar, in which benzyl acetate was dominant, while within pink flowers, there were differences of floral volatile compositions. Principal component analysis (PCA) showed that the emissions of benzyl alcohol, cinnamyl alcohol, benzyl acetate, eugenol, cinnamyl acetate, and benzyl benzoate could make these intraspecific cultivars distinguishable from each other. Further, hierarchical cluster analysis indicated that cultivars with similar a category and amount of floral compounds were grouped together. Our findings lay a theoretical basis for fragrant plant breeding in <i>P. mume</i>.
ISSN:1420-3049