[1] 邢少辰, CLARKE JIHONG LIU. 叶绿体基因组研究进展[J]. 生物化学与生物物理进展, 2008, 35(1): 21 − 28.

XING Shaochen, CLARKE J L. Progress in chloroplast genome analysis [J]. Progress in Biochemistry and Biophysics, 2008, 35(1): 21 − 28.
[2] DANIELL H, LIN C S, YU Ming, et al. Chloroplast genomes: diversity, evolution, and applications in genetic engineering [J/OL]. Genome Biology, 2016, 17(1): 134[2023-07-01]. doi: 10.1186/s13059-016-1004-2.
[3] SONG Yun, ZHAO Wenjun, XU Jin, et al. Chloroplast genome evolution and species identification of Styrax (Styracaceae) [J/OL]. Biomed Research International, 2022, 2022: 5364094[2023-07-01]. doi: 10.1155/2022/5364094.
[4] LIU Qing, LI Xiaoyu, LI Mingzhi, et al. Comparative chloroplast genome analyses of Avena: insights into evolutionary dynamics and phylogeny [J/OL]. BMC Plant Biology, 2020, 20(1): 406[2023-07-01]. doi: 10.1186/s12870-020-02621-y.
[5] JO I H, HAN S, SHIM D, et al. Complete chloroplast genome of the inverted repeat-lacking species Vicia bungei and development of polymorphic simple sequence repeat markers [J/OL]. Frontiers in Plant Science, 2022, 13: 891783[2023-07-01]. doi: 10.3389/fpls.2022.891783.
[6] 中国植物志编辑委员会. 中国植物志(52卷)[M]. 北京: 科学出版社, 1995.

Committee of Flora of China. Flora of China (Volume 52) [M]. Beijing: Science Press, 1995.
[7] 广东省食品药品监督管理局. 广东省中药材标准(第1册)[M]. 广州: 广东科技出版社, 2019.

Guangdong Medical Product Administration. Standard for Traditional Chinese Medicine in Guangdong Province (Volume 1) [M]. Guangzhou: Guangdong Science & Technology Press, 2019.
[8] 尹震花, 张娟娟, 陈林, 等. 了哥王化学成分与生物活性研究进展[J]. 中草药, 2018, 49(8): 1964 − 1976.

YIN Zhenhua, ZHANG Juanjuan, CHEN Lin, et al. Research progress on chemical constituents and biological activities of Wikstroemia indica [J]. Chinese Traditional and Herbal Drugs, 2018, 49(8): 1964 − 1976.
[9] 郑传奇, 冯果, 李伟, 等. 了哥王生物活性及抗肿瘤作用研究进展[J]. 微量元素与健康研究, 2020, 37(3): 46 − 48.

ZHENG Chuanqi, FENG Guo, LI Wei, et al. Research progress on bioactivity and anti-tumor effects of the Wikstroemia indica [J]. Studies of Trace Elements and Health, 2020, 37(3): 46 − 48.
[10] 张群, 陈颖, 曹晟烜, 等. 了哥王叶功能性状特征及其对土壤因子的响应[J]. 亚热带植物科学, 2023, 52(1): 60 − 66.

ZHANG Qun, CHEN Ying, CAO Shengxuan, et al. Characterization of leaf functional traits of Wikstroemia indica and its responses to soil factors [J]. Subtropical Plant Science, 2023, 52(1): 60 − 66.
[11] 房海灵, 邓绍勇, 朱培林. 不同引发处理对了哥王种子萌发的影响[J]. 南方林业科学, 2016, 44(2): 8 − 11.

FANG Hailing, DENG Shaoyong, ZHU Peiling. Effects of seed priming with different agents on seed germination of Wikstroemia indica [J]. South China Forestry Science, 2016, 44(2): 8 − 11.
[12] 黄琼林. 高良姜叶绿体基因组测序与特征分析[J]. 热带作物学报, 2021, 42(1): 1 − 6.

HUANG Qionglin. Complete sequencing and analysis of chloroplast genome from Alpinia officinarum Hance [J]. Chinese Journal of Tropical Crop, 2021, 42(1): 1 − 6.
[13] 吴民华, 邹振宁, 叶晓霞, 等. 露兜树叶绿体基因组结构与序列特征分析[J]. 中药新药与临床药理, 2023, 34(1): 115 − 122.

WU Minhua, ZOU Zhenning, YE Xiaoxia, et al. Structure and sequence characteristics of chloroplast genome from Pandanus tectorius [J]. Traditional Chinese Drug Research and Clinical Pharmacology, 2023, 34(1): 115 − 122.
[14] BENDICH A J. Circular chloroplast chromosomes: the grand illusion [J]. Plant Cell, 2004, 16(7): 1661 − 1666.
[15] ZHANG Yanjun, DU Liuwen, LIU Ao, et al. The complete chloroplast genome sequences of five epimedium species: lights into phylogenetic and taxonomic analyses [J/OL]. Frontiers in Plant Science, 2016, 7: 306[2023-07-01]. doi: 10.3389/fpls.2016.00306.
[16] DANIELL H, LEE S B, GREVICH J, et al. Complete chloroplast genome sequences of Solanum bulbocastanum, Solanum lycopersicum and comparative analyses with other Solanaceae genomes [J]. Theoretical and Applied Genetics, 2006, 112(8): 1503 − 1518.
[17] 钱少娟. 瑞香属的叶绿体基因组特征与系统学研究[D]. 昆明: 云南师范大学, 2021.

QIAN Shaojuan. Chloroplast Genome Characteristics and Phylogeny of the Genus Daphne [D]. Kunming: Yunnan Normal University, 2021.
[18] ZHAO Xueli, ZHU Zhangming. Comparative genomics and phylogenetic analyses of Christia vespertilionis and Urariopsis brevissima in the Tribe Desmodieae (Fabaceae: Papilionoideae) based on complete chloroplast genomes [J/OL]. Plants, 2020, 9(9): 1116[2023-07-01]. doi: 10.3390/plants9091116.
[19] 刘浩宇, 刘力宽, 王郑雷, 等. 兰科植物叶绿体基因组研究进展[J]. 中国野生植物资源, 2023, 42(7): 73 − 79.

LIU Haoyu, LIU Likuan, WANG Zhenglei, et al. Research progress on chloroplast genome of Orchidaceae [J]. Chinese Wild Plant Resources, 2023, 42(7): 73 − 79.
[20] 宋菊, 龙月红, 林丽梅, 等. 五加科植物叶绿体基因组结构与进化分析[J]. 中草药, 2017, 48(24): 5070 − 5075.

SONG Ju, LONG Yuehong, LIN Limei, et al. Analysis on structure and phylogeny of chloroplast genomes in Araliaceae species [J]. Chinese Traditional and Herbal Drugs, 2017, 48(24): 5070 − 5075.
[21] 张加强, 刘慧春, 王杰, 等. 金银花大毛花叶绿体基因组密码子的偏好性分析[J]. 浙江农业学报, 2023, 35(4): 821 − 830.

ZHANG Jiaqiang, LIU Huichun, WANG Jie, et al. Analysis on codon usage patterns of chloroplast genome of Lonicera japonica cv. Damaohua [J]. Acta Agriculturae Zhejiangensis, 2023, 35(4): 821 − 830.
[22] 杨祥燕, 蔡元保, 谭秦亮, 等. 菠萝叶绿体基因组密码子偏好性分析[J]. 热带作物学报, 2022, 43(3): 439 − 446.

YANG Xiangyan, CAI Yuanbao, TAN Qinliang, et al. Analysis of codon usage bias in the chloroplast genome of Ananas comosus [J]. Chinese Journal of Tropical Crops, 2022, 43(3): 439 − 446.
[23] 卢政阳, 于凤扬, 肖月娥, 等. 北陵鸢尾叶绿体基因组及其特征分析[J]. 草地学报, 2023, 31(6): 1656 − 1664.

LU Zhengyang, YU Fengyang, XIAO Yue’ e, et al. Complete chloroplast genome and characteristics analysis of Iris typhifolia [J]. Acta Agrestia Sinica, 2023, 31(6): 1656 − 1664.
[24] 吴永飞, 杨雪莲, 颜丽, 等. 闭鞘姜叶绿体基因组特征及其系统发育分析[J]. 种子, 2023, 42(4): 10 − 17.

WU Yongfei, YANG Xuelian, YAN Li, et al. Analysis on chloroplast genome characteristics and phylogeny of Helenia speciosa [J]. Seed, 2023, 42(4): 10 − 17.