[1] FREY W, STECH M. Marchantiophyta, Bryophyta, Anthocerotophyta[M]//FREY W (Ed.). Syllabus of plant families - A. Engler’s Syllabus der Pflanzenfamilien, 13th ed., Part 3: Bryophytes and seedless vascular plants. Stuttgart: Gebrüder Borntraeger, 2009: 13 – 263.
[2] SÖDERSTRÖM L, HAGBORG A, VON KONRAT M, et al. World checklist of hornworts and liverworts [J]. PhytoKeys, 2016, 59: 1 − 828. doi:  10.3897/phytokeys.59.6261
[3] 娄红祥主编. 苔藓化学与生物学[M]. 北京: 科学出版社, 2012: 61 – 307.
[4] ASAKAWA Y, LUDWICZUK A, NAGASHIMA F. Phytochemical and biological studies of bryophytes [J]. Phytochemistry, 2013, 91: 52 − 80. doi:  10.1016/j.phytochem.2012.04.012
[5] CHEN F, LUDWICZUK A, WEI G, et al. Terpenoid secondary metabolites in bryophytes: chemical diversity, biosynthesis and biological functions [J]. Critical Reviews in Plant Sciences, 2018, 37(2-3): 210 − 231. doi:  10.1080/07352689.2018.1482397
[6] BANERJEE R D, SEN S P. Antibiotic activity of bryophytes [J]. The Bryologist, 1979, 82(2): 141 − 153. doi:  10.2307/3242073
[7] KLAVINA L, SPRINGE G, NIKOLAJEVA V, et al. Chemical composition analysis, antimicrobial activity and cytotoxicity screening of moss extracts (moss phytochemistry) [J]. Molecules, 2015, 20(9): 17221 − 17243. doi:  10.3390/molecules200917221
[8] VOLLÁR M, GYOVAI A, SZŰCS P, et al. Antiproliferative and antimicrobial activities of selected bryophytes [J]. Molecules, 2018, 23(7): 1520 − 1534. doi:  10.3390/molecules23071520
[9] FERNANDES A S, MAZZEI J L, EVANGELISTA H, et al. Protection against UV-induced oxidative stress and DNA damage by Amazon moss extracts [J]. Journal of Photochemistry and Photobiology, B: Biology, 2018, 183: 331 − 341. doi:  10.1016/j.jphotobiol.2018.04.038
[10] ASAKAWA Y, LUDWICZUK A. Chemical constituents of bryophytes: structures and biological activity [J]. Journal of Natural Products, 2018, 81(3): 641 − 660. doi:  10.1021/acs.jnatprod.6b01046
[11] 吴鹏程(主编). 中国苔藓志·第六卷: 油藓目, 灰藓目[M]. 北京: 科学出版社, 2001: 240 – 250.
[12] 吴征镒(主编). 新华本草纲要(第三册)[M]. 上海: 上海科学技术出版社, 1990: 764 – 773.
[13] 衣艳君. 中国药用苔藓植物资源[J]. 中草药, 2000, 31(8): 624 − 628. doi:  10.3321/j.issn:0253-2670.2000.08.036
[14] WATANABE R. A revision of the family Thuidiaceae in Japan and adjacent areas [J]. The Journal of the Hattori Botanical Laboratory, 1972, 36: 171 − 320.
[15] TOUW A. A taxonomic revision of the Thuidiaceae (Musci) of tropical Asia, the western Pacific, and Hawaii [J]. The Journal of the Hattori Botanical Laboratory, 2001, 91: 1 − 136.
[16] 吴德邻, 张力(主编). 广东苔藓志[M]. 广州: 广东科技出版社, 2013: 427 – 429.
[17] SARITAS Y, SONWA M M, IZNAGUEN H, et al. Volatile constituents in mosses (Musci) [J]. Phytochemistry, 2001, 57(3): 443 − 457. doi:  10.1016/S0031-9422(01)00069-3
[18] LOZANO-GRANDE M A, GORINSTEIN S, ESPITIA-RANGEL E, et al. Plant sources, extraction methods, and uses of squalene [J]. International Journal of Agronomy, 2018: 1 − 13. doi:  10.1155/2018/1829160
[19] VÁZQUEZ L H, PALAZÓN J, NAVARRO-OCAÑA A, et al. The pentacyclic triterpenes, α, β-amyrins: a review of sources and biological activities[M]//RAO V (Ed.). Phytochemicals – A global perspective of their role in nutrition and health. Rijeka: InTech, 2012: 487 – 502.
[20] SWAMY M K,ARUMUGAM G,KAUR R,et al. GC-MS based metabolite profiling, antioxidant and antimicrobial properties of different solvent extracts of Malaysian Plectranthus amboinicus leaves[J]. Evidence-Based Complementray and Alternative Medicine,2017:1 – 10. doi:  10.1155/2017/1517683
[21] 谢心美, 郝海鑫, 何剑斌. 植物甾醇的生理功能及其应用[J]. 草业科学, 2013, 30(12): 2105 − 2109.
[22] BODADE R G, BORKAR P S, Md SAIFUL ARFEEN, et al. In vitro screening of bryophytes for antimicrobial activity [J]. Journal of Medicinal Plants, 2008, 7(S4): 23 − 28.
[23] 吴昆, 肖春旺. 贵州4种藓类植物的抑菌作用比较[J]. 贵州师范大学学报(自然科学版), 1998, 16(4): 25 − 28.
[24] 沙伟, 韩继臣. 16种苔藓植物对植物病原菌的抑菌性研究[J]. 食品科技, 2009, 34(5): 213 − 217.