[1] 陈龙清, 陈俊愉. 蜡梅属植物的形态、分布、分类及其应用[J]. 中国园林, 1999(1): 76 − 77.

CHEN Longqing, CHEN Junyu. Morphology, distribution, classification and application of Chimonanthus [J]. Chinese Landscape Architecture, 1999(1): 76 − 77.
[2] ZHOU Mingqin, CHEN Longqing, RUAN Rui. Genetic diversity of Chimonanthus nitens Oliv. complex revealed using inter-simple sequence repeat markers [J]. Scientia Horticulturae, 2012, 136: 38 − 42.
[3] 伍碧华, 徐恒伟, 明军, 等. 四川大巴山野生蜡梅资源现状与保护利用[J]. 中国野生植物资源, 2009, 28(5): 33 − 36.

WU Bihua, XU Hengwei, MING Jun, et al. Existence status, protection and utilization of wild wintersweet (Chimonanthus Lindley) in Dabashan Sichuan [J]. Chinese Wild Plant Resources, 2009, 28(5): 33 − 36.
[4] 赵冰, 张启翔. 中国蜡梅属种质资源的分布及其特点[J]. 广西植物, 2007(5): 730 − 735.

ZHAO Bing, ZHANG Qixiang. Distribution and characteristic of Chimonanthus germplasm in China [J]. Guihaia, 2007(5): 730 − 735.
[5] 张川英, 李婷婷, 龚笑飞, 等. 遂昌乌溪江流域山蜡梅生境群落特征与物种多样性[J]. 浙江农林大学学报, 2023, 40(4): 848 − 858.

ZHANG Chuanying, LI Tingting, GONG Xiaofei, et al. Habitat community characteristics and species diversity of Chimonanthus nitens in Wuxi River Basin, Suichang [J]. Journal of Zhejiang A&F University, 2023, 40(4): 848 − 858.
[6] 黎鑫, 杨菲, 陈美霞, 等. 柳叶蜡梅化学成分及生物活性研究进展[J]. 粮食与油脂, 2023, 36(1): 25 − 28, 33.

LI Xin, YANG Fei, CHEN Meixia, et al. Research progress on chemical constituents and biological activities of Chimonanthus salicifolius [J]. Cereals and Oils, 2023, 36(1): 25 − 28, 33.
[7] 涂昆, 邹峥嵘. 蜡梅属植物生物碱的生物活性和合成研究进展[J]. 中草药, 2017, 48(11): 2340 − 2352.

TU Kun, ZOU Zhengrong. Research progress on biological activities and synthesis of alkaloids in plants from Chimonanthus Lindl [J]. Chinese Traditional and Herbal Drugs, 2017, 48(11): 2340 − 2352.
[8] 徐金标, 潘俊杰, 吕群丹, 等. 蜡梅科植物化学成分及其药理活性研究进展[J]. 中国中药杂志, 2018, 43(10): 1957 − 1968.

XU Jinbiao, PAN Junjie, LÜ Qundan, et al. Research advances on chemical constituents from Calycanthaceae plants and their pharmacological activities [J]. China Journal of Chinese Materia Medical, 2018, 43(10): 1957 − 1968.
[9] 李琦, 周君美, 邢丙聪, 等. 蜡梅属药用植物分子生物学研究进展[J]. 中国现代应用药学, 2022, 39(12): 1646 − 1654.

LI Qi, ZHOU Junmei, XING Bingcong, et al. Research progress on the molecular biology of genus Chimonanthus medicinal plants [J]. Chinese Journal of Modern Applied Pharmacy, 2022, 39(12): 1646 − 1654.
[10] ZHOU Xiaojie, YU Yang, CHENG Zhang, et al. Anti-depression effect of Chimonanthus salicifolicus essential oil in chronic stressed rats [J]. Journal of Medicinal Plants Research, 2014, 8: 430 − 435.
[11] WANG Kuiwu, LI Dan, WU Bin, et al. New cytotoxic dimeric and trimeric coumarins from Chimonanthus salicifolius [J]. Phytochemistry Letters, 2016, 16: 115 − 120.
[12] 李帅岚, 邹峥嵘. 蜡梅属植物中黄酮和香豆素类成分及药理活性研究进展[J]. 中草药, 2018, 49(14): 3425 − 3431.

LI Shuailan, ZOU Zhengrong. Research progress on flavonoids and coumarins from Chimonanthus plants and its pharmacological activities [J]. Chinese Traditional and Herbal Drugs, 2018, 49(14): 3425 − 3431.
[13] WANG Ning, CHEN Hui, XIONG Lei, et al. Phytochemical profile of ethanolic extracts of Chimonanthus salicifolius S. Y. Hu. leaves and its antimicrobial and antibiotic-mediating activity [J]. Industrial Crops & Products, 2018, 125: 328 − 334.
[14] 熊义权, 肖纯, 龙秀娟. 蜡梅属植物叶、花化学成分及药理性质研究进展[J]. 中国野生植物资源, 2008(1): 8 − 10, 15.

XIONG Yiquan, XIAO Chun, LONG Xiujuan. Research progress on chemical constituents and pharmacological properties of leaves and flowers of Chimonanthus [J]. Chinese Wild Plant Resources, 2008(1): 8 − 10, 15.
[15] 董瑞霞, 潘俊杰, 金叶, 等. 两种蜡梅属药食兼用茶化学成分及药理活性研究进展[J]. 食品工业科技, 2021, 42(16): 429 − 437.

DONG Ruixia, PAN Junjie, JIN Ye, et al. Research advances on chemical constituents and their pharmacological activities of two kinds of medicinal and edible tea from Chimonanthus Lindl [J]. Science and Technology of Food Industry, 2021, 42(16): 429 − 437.
[16] 杨钰, 王艺光, 董彬, 等. 不同梅花品种花香成分鉴定与分析[J]. 浙江农林大学学报, 2024, 41(2): 262 − 274.

YANG Yu, WANG Yiguang, DONG Bin, et al. Identification and analysis of floral scent compounds of Prunus mume cultivars [J]. Journal of Zhejiang A&F University, 2024, 41(2): 262 − 274.
[17] SHANG Junzhong, TIAN Jingpu, CHENG Huihui, et al. The chromosome-level wintersweet (Chimonanthus praecox) genome provides insights into floral scent biosynthesis and flowering in winter [J]. Genome Biology, 2020, 21(1): 200. doi: 10.1186/s13059-020-02088-y
[18] TIAN Jingpu, MA Zhiyao, ZHAO Kaige, et al. Transcriptomic and proteomic approaches to explore the differences in monoterpene and benzenoid biosynthesis between scented and unscented genotypes of wintersweet [J]. Physiologia Plantarum, 2019, 166: 478 − 493.
[19] 徐萌, 张经纬, 吴令上, 等. HS-SPME-GC-MS联用测定蜡梅属植物花的挥发性成分[J]. 林业科学, 2016, 52(12): 58 − 65.

XU Meng, ZHANG Jingwei, WU Lingshang, et al. Determination of volatile components from Chimonanthus flowers by HS-SPME-GC-MS [J]. Scientia Silvae Sinicae, 2016, 52(12): 58 − 65.
[20] LI Yue, JIA Weijia, WANG Qiong, et al. Comparative analysis of floral scent profiles between two Chimonanthus praecox plants under different rhythms and blooming stages [J/OL]. Scientia Horticulturae, 2022, 301 : 111129[2023-03-20]. doi: 10.1016/j.scienta.2022.111129.
[21] 蒙柳贝. 三个品种蜡梅花香成分的差异及动态变化研究[D]. 昆明: 西南林业大学, 2024.

MENG Liubei. Study on the Differences and Dynamic Chances of Floral Fragrance Compounds of Three Varieties of Chimonanthus Praecox [D]. Kunming: Southwest Forestry University, 2024.
[22] 周继荣, 倪德江. 蜡梅不同品种和花期香气变化及其花茶适制性[J]. 园艺学报, 2010, 37(10): 1621 − 1628.

ZHOU Jirong, NI Dejiang. Changes in flower aroma compounds of cultivars of Chimonanthus praecox (L. ) Link and at different stages relative to Chimonanthus tea quality [J]. Acta Horticulturae Sinica, 2010, 37(10): 1621 − 1628.
[23] 陆安霞, 周心如, 叶玉龙, 等. 蜡梅花离体摊放过程中香气感官评价和挥发性物质分析[J]. 园艺学报, 2020, 47(1): 73 − 84.

LU Anxia, ZHOU Xinru, YE Yulong, et al. Changes of sensory characteristic and volatiles of harvested flowers of Chimonanthus praecox during spreading process [J]. Acta Horticulturae Sinica, 2020, 47(1): 73 − 84.
[24] 余莉. 蜡梅花挥发性组分与花色色素分析[D]. 武汉: 华中农业大学, 2013.

YU Li. The Study of Volatile Components and Flower Pigments in Chimonanthus praecox [D]. Wuhan: Huazhong Agricultural University, 2013.
[25] 冯楠. 蜡梅花香挥发物测定及2个萜烯合酶基因功能初步研究[D]. 武汉: 华中农业大学, 2017.

FENG Nan. Determination of Floral Volatile Components and Preliminary Study on Function of Two Terpene Synthases in Wintersweet [D]. Wuhan: Huazhong Agricultural University, 2017.
[26] 林霞. 蜡梅属植物中挥发性成分的研究进展[J]. 福建农业科技, 2019(7): 57 − 64.

LIN Xia. Research progress on volatile components of Chimonanthus Lindl [J]. Fujian Agricultural Science and Technology, 2019(7): 57 − 64.
[27] ZHOU Shiliang, RENNER S S, WEN Jun. Molecular phylogeny and intra- and intercontinental biogeography of Calycanthaceae [J]. Molecular Phylogenetics and Evolution, 2006, 39(1): 1 − 15.
[28] YANG Xiulian, YUE Yuanzheng, LI Haiyan, et al. The chromosome-level quality genome provides insights into the evolution of the biosynthesis genes for aroma compounds of Osmanthus fragrans [J]. Horticulture Research, 2018, 5 : 72[2023-03-20]. doi: 10.1038/s41438-018-0108-0.
[29] ZHANG Liangsheng, CHEN Fei, ZHANG Xingtan, et al. The water lily genome and the early evolution of flowering plants [J]. Nature, 2020, 577(7788): 79 − 84.
[30] ROEDER S, HARTMANN A, EFFMERT U, et al. Regulation of simultaneous synthesis of floral scent terpenoids by the 1, 8-cineole synthase of Nicotiana suaveolens [J]. Plant Molecular Biology, 2007, 65: 107 − 124.
[31] CHENG Sihua, FU Xiumin, MEI Xin, et al. Regulation of biosynthesis and emission of volatile phenylpropanoids/benzenoids in petunia×hybrida flowers by multi-factors of circadian clock, light, and temperature [J]. Plant Physiology and Biochemistry, 2016, 107: 1 − 8.
[32] FENSKE M P, IMAIZUMI T. Circadian rhythms in floral scent emission [J/OL]. Frontiers in Plant Science, 2016, 7 : 462[2023-03-20]. doi: 10.3389/fpls.2016.00462.
[33] UNDERWOOD B A, TIEMAN D M, SHIBUYA K, et al. Ethylene-regulated floral volatile synthesis in petunia corollas [J]. Plant Physiology, 2005, 138: 255 − 266.
[34] FENSKE M P, HEWETT HAZELTON K D, HEMPTON A K, et al. Circadian clock gene LATE ELONGATED HYPOCOTYL directly regulates the timing of floral scent emission in Petunia [J]. Proceedings of the National Academy of Sciences of the United States of America, 2015, 112: 9775 − 9780.
[35] 蒋冬月, 李永红, 沈鑫. 芸香叶片和花瓣释放挥发性有机物成分及其变化规律[J]. 浙江农林大学学报, 2018, 35(3): 572 − 580.

JIANG Dongyue, LI Yonghong, SHEN Xin. Components and variations of volatile organic compounds released from leaves and flowers of Ruta graveolens [J]. Journal of Zhejiang A&F University, 2018, 35(3): 572 − 580.