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挥发性代谢组和花转录组分析揭示了×. 强香型后代的挥发性成分。

Volatile metabolome and floral transcriptome analyses reveal the volatile components of strongly fragrant progeny of × .

作者信息

Li Guofang, Liu Jia, Zhang He, Jia Linguang, Liu Youxian, Li Jiuyang, Zhou Shiwei, Wang Pengjuan, Tan Ming, Shao Jianzhu

机构信息

College of Horticulture, Hebei Agricultural University, Baoding, China.

Changli Institute of Pomology, Hebei Academy of Agricultural and Forestry Science, Changli, China.

出版信息

Front Plant Sci. 2023 Jan 20;14:1065219. doi: 10.3389/fpls.2023.1065219. eCollection 2023.

Abstract

Floral fragrance is an important trait that contributes to the ornamental properties and pollination of crabapple. However, research on the physiological and molecular biology of the floral volatile compounds of crabapple is rarely reported. In this study, metabolomic and transcriptomic analyses of the floral volatile compounds of standard flowers (Mr), and progeny with strongly and weakly fragrant flowers (SF and WF, respectively), were conducted. Fifty-six floral volatile compounds were detected in the plant materials, mainly comprising phenylpropane/benzene ring-type compounds, fatty acid derivatives, and terpene compounds. The volatile contents were significantly increased before the early flowering stage (ES), and the contents of SF flowers were twice those of WF and Mr flowers. Odor activity values were determined for known fragrant volatiles and 10-11 key fragrant volatiles were identified at the ES. The predominant fragrant volatiles were methyl benzoate, linalool, leaf acetate, and methyl anthranilate. In the petals, stamens, pistil, and calyx of SF flowers, 26 volatiles were detected at the ES, among which phenylpropane/benzene ring-type compounds were the main components accounting for more than 75% of the total volatile content. Functional analysis of transcriptome data revealed that the phenylpropanoid biosynthesis pathway was significantly enriched in SF flowers. By conducting combined analyses between volatiles and differentially expressed genes, transcripts of six floral scent-related genes were identified and were associated with the contents of the key fragrant volatiles, and other 23 genes were potentially correlated with the key volatile compounds. The results reveal possible mechanisms for the emission of strong fragrance by SF flowers, and provide a foundation for improvement of the floral fragrance and development of new crabapple cultivars.

摘要

花香是海棠观赏特性和授粉的重要性状。然而,关于海棠花挥发性化合物的生理和分子生物学研究鲜有报道。本研究对标准花(Mr)以及花香浓郁和花香淡薄的子代花(分别为SF和WF)的花挥发性化合物进行了代谢组学和转录组学分析。在植物材料中检测到56种花挥发性化合物,主要包括苯丙烷/苯环型化合物、脂肪酸衍生物和萜类化合物。挥发性成分在初花期(ES)前显著增加,SF花的含量是WF花和Mr花的两倍。测定了已知芳香挥发性物质的气味活性值,并在ES期鉴定出10 - 11种关键芳香挥发性物质。主要的芳香挥发性物质是苯甲酸甲酯、芳樟醇、乙酸叶醇酯和邻氨基苯甲酸甲酯。在ES期,在SF花的花瓣、雄蕊、雌蕊和花萼中检测到26种挥发性物质,其中苯丙烷/苯环型化合物是主要成分,占总挥发性成分的75%以上。转录组数据的功能分析表明,苯丙烷生物合成途径在SF花中显著富集。通过对挥发性物质和差异表达基因进行联合分析,鉴定出6个与花香相关基因的转录本,它们与关键芳香挥发性物质的含量相关,另外23个基因可能与关键挥发性化合物相关。研究结果揭示了SF花散发浓郁香气的可能机制,为改善花香和培育新的海棠品种奠定了基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/adf8/9895795/e12c6a94f295/fpls-14-1065219-g001.jpg

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