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通过转录组和代谢组揭示苹果属‘棒棒糖’花中的关键芳香化合物

Revealing the key aromatic compounds in Malus 'Lollipop' flowers by transcriptome and metabolome.

作者信息

Peng Qin, Zhou Limeng, Xiong Qingqing, Yu Fangyuan, Zhang Wangxiang, Fan Junjun

机构信息

College of Forestry, Nanjing Forestry University, No. 159 Longpan Road, Xuanwu District, Nanjing, Jiangsu 210037, China.

College of Forestry, Nanjing Forestry University, No. 159 Longpan Road, Xuanwu District, Nanjing, Jiangsu 210037, China.

出版信息

Gene. 2025 Jun 5;951:149371. doi: 10.1016/j.gene.2025.149371. Epub 2025 Feb 27.

Abstract

The ornamental crabapple Malus (M.) 'Lollipop' is renowned for its compact growth and fragrant flowers. This study aims to elucidate the biosynthesis molecular mechanism of volatile organic compounds (VOCs) across four developmental stages of the M. 'Lollipop' flowers using metabolomics and transcriptomics analyses. Gas chromatography-mass spectrometry (GC-MS) identified 29 VOCs (aliphatic derivatives, benzenes, and alkanes) in M. 'Lollipop' flowers. Orthogonal Partial Least Squares Discriminant Analysis (OPLS-DA) analysis highlights 14 key differential aromatic compounds (VIP ≥ 1), featuring (Z)-3-hexen-1-yl acetate in stage 1, methyl benzoate in stage 2, benzyl alcohol and linalool in stage 3, and camphene and (Z)-3-hexen-1-ol in stage 4. (Z)-3-hexen-1-yl acetate was identified as a co-primary constituent in the four flowering stages, designated as a key and floral contributing metabolite (variable importance in projection (VIP) ≥ 1& odor activity value (OAV) ≥ 1). RNA sequencing revealed key genes including CAT, DXS, MVD, HMGCR, FDPS, and TPSc in camphene and linalool synthesis, aroA, ADT, PDT, PAL, BEBT1, SDR, 4CL, CNL, and BALDH for benzyl alcohol, benzaldehyde, and methyl benzoate production. And PLA2G, SPLA2, TGL4, LOX2S and ADH1 in (Z)-3-hexen-1-yl acetate and (Z)-3-hexen-1-ol synthesis. 24 transcription factors (TFs) were predicted to be closely linked to genes involved in VOC synthesis. The findings above deepen our comprehension of the floral scent in crabapple, laying a foundation for further investigations into their functions and potential industrial applications.

摘要

观赏海棠品种‘棒棒糖’以其紧凑的株型和芬芳的花朵而闻名。本研究旨在通过代谢组学和转录组学分析,阐明‘棒棒糖’海棠花朵四个发育阶段挥发性有机化合物(VOCs)的生物合成分子机制。气相色谱-质谱联用(GC-MS)技术鉴定出‘棒棒糖’海棠花朵中的29种挥发性有机化合物(脂肪族衍生物、苯类和烷烃类)。正交偏最小二乘法判别分析(OPLS-DA)突出显示了14种关键的差异芳香族化合物(VIP≥1),其中第1阶段为(Z)-3-己烯-1-基乙酸酯,第2阶段为苯甲酸甲酯,第3阶段为苯甲醇和芳樟醇,第4阶段为蒈烯和(Z)-3-己烯-1-醇。(Z)-3-己烯-1-基乙酸酯被确定为四个开花阶段的共同主要成分,被指定为关键的花卉贡献代谢物(投影变量重要性(VIP)≥1且气味活性值(OAV)≥1)。RNA测序揭示了参与蒈烯和芳樟醇合成的关键基因,包括CAT、DXS、MVD、HMGCR、FDPS和TPSc,以及参与苯甲醇、苯甲醛和苯甲酸甲酯生成的aroA、ADT、PDT、PAL、BEBT1、SDR、4CL、CNL和BALDH。以及参与(Z)-3-己烯-1-基乙酸酯和(Z)-3-己烯-1-醇合成的PLA2G、SPLA2、TGL4、LOX2S和ADH1。预测有24个转录因子(TFs)与参与VOC合成的基因密切相关。上述研究结果加深了我们对海棠花香的理解,为进一步研究其功能和潜在的工业应用奠定了基础。

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