[1] |
CHASE M W, CAMERON K M, FREUDENSTEIN J V, et al. An updated classification of Orchidaceae [J]. Botanical Journal of the Linnean Society, 2013, 177(2): 151 − 174. |
[2] |
GIVNISH T J, SPALINK D, AMES M, et al. Orchid historical biogeography, diversification, antarctica and the paradox of orchid dispersal [J]. Journal of Biogeography, 2016, 43(10): 1905 − 1916. |
[3] |
GIVNISH T J, SPALINK D, AMES M, et al. Orchid phylogenomics and multiple drivers of their extraordinary diversification [J]. Proceedings of the Royal Society B:Biological Sciences, 2015, 82(1814): 1 − 10. |
[4] |
景袭俊, 胡凤荣. 兰科植物分子生物学研究进展[J]. 分子植物育种, 2018, 16(17): 5835 − 5848.
JING Gongjun, HU Fengrong. Research progress of molecular biology of Orchidaceae [J]. Molecular Plant Breeding, 2018, 16(17): 5835 − 5848. |
[5] |
赵泽宇, 刘娜, 邢晓科. 菌根真菌与兰科植物互作的组学研究进展[J]. 菌物学报, 2021, 40(3): 423 − 435.
ZHAO Zeyu, LIU Na, XING Xiaoke. Research progress of the omics study of the interaction between mycorrhizal fungi and orchids [J]. Mycosystema, 2021, 40(3): 423 − 435. |
[6] |
张明泽, 何春梅, 王浩斌, 等. 兰科药用植物活性多糖研究进展[J]. 热带亚热带植物学报, 2019, 27(5): 611 − 622.
ZHANG Mingze, HE Chunmei, WANG Haobin, et al. Research progress of active polysaccharides from Orchidaceae medicinal plants [J]. Journal of Tropical and Subtropical Botany, 2019, 27(5): 611 − 622. |
[7] |
TOPIK H, YUKAWA T, ITO M. Molecular phylogenetics of subtribe Aeridinae (Orchidaceae): insights from plastid matK and nuclear ribosomal ITS sequences [J]. Journal of Plant Research, 2005, 118(4): 271 − 284. |
[8] |
中国科学院中国植物志编辑委员会. 中国植物志[M]. 北京: 科学出版社, 1999: 383.
Editorial Committee of Flora Reipublicae Popularis Sinicae of Chinese Academy of Sciences. Flora Reipublicae Popularis Sinicae [M]. Beijing: Science Press, 1999: 383. |
[9] |
KIM D G, KIM K K, BEEN C G. Development of intergeneric hybrids between wind orchids (Sedirea japonica and Neofinetia falcata) and moth orchids (Phalaenopsis alliances) [J]. Horticulture Environment &Biotechnology, 2015, 56(1): 67 − 78. |
[10] |
崔波, 马杰, 张仙云, 等. 萼脊兰的组织培养和快速繁殖[J]. 植物生理学通讯, 2008, 246(2): 303.
CUI Bo, MA Jie, ZHANG Xianyun, et al. Tissue culture and rapid propagation of Phalaenopsis japonica (Rchb. f. ) Kocyan & Schuit. [J]. Plant Physiology Communications, 2008, 246(2): 303. |
[11] |
蒋素华, 王默霏, 郝平安, 等. 萼脊兰FPPS基因的克隆及表达分析[J]. 分子植物育种, 2018, 16(23): 7606 − 7612.
JIANG Suhua, WANG Mofei, HAO Ping’an, et al. Cloning and expression analysis of FPPS gene in Phalaenopsis japonica (Rchb. f. ) Kocyan & Schuit. [J]. Molecular Plant Breeding, 2018, 16(23): 7606 − 7612. |
[12] |
蒋素华, 牛苏燕, 袁秀云, 等. 调控萼脊兰类黄酮生物合成的MYB转录因子挖掘分析[J]. 热带作物学报, 2021, 42(3): 629 − 636.
JIANG Suhua, NIU Suyan, YUAN Xiuyun, et al. Analysis of MYB transcription factor mining in Phalaenopsis japonica (Rchb. f. ) Kocyan & Schuit. [J]. Chinese Journal of Tropical Crops, 2021, 42(3): 629 − 636. |
[13] |
何亚平, 刘建全. 植物繁育系统研究的最新进展和评述[J]. 植物生态学报, 2003, 27(2): 151 − 163.
HE Yaping, LIU Jianquan. Research progress and comments on plant breeding system [J]. Chinese Journal of Plant Ecology, 2003, 27(2): 151 − 163. |
[14] |
刘江枫. 喇叭唇石斛的花部特征与繁育系统[J]. 亚热带农业研究, 2021, 17(4): 264 − 268.
LIU Jiangfeng. Floral characteristics and breeding system of Dendrobium lituiflorum Lindl. [J]. Subtropical Agriculture Research, 2021, 17(4): 264 − 268. |
[15] |
杨佳慧, 吴婷, 朱俊, 等. 长瓣兜兰开花特性与繁育系统研究[J]. 园艺学报, 2021, 48(5): 1002 − 1012.
YANG Jiahui, WU Ting, ZHU Jun, et al. Studies on flowering characteristics and breeding system of Paphiopedilum dianthum [J]. Acta Horticulturae Sinica, 2021, 48(5): 1002 − 1012. |
[16] |
李森, 刘娟, 公菲菲, 等. 黄花菜‘大同黄花’开花特性与繁育系统研究[J]. 园艺学报, 2021, 48(8): 1541 − 1551.
LI Sen, LIU Juan, GONG Feifei, et al. Studies on flowering characteristics and breeding system of Hemerocallis citrina Baroni [J]. Acta Horticulturae Sinica, 2021, 48(8): 1541 − 1551. |
[17] |
TONG Lirong, SONG Yu, WANG Peng, et al. Breeding system and pollination biology of Lespedeza daburica [J]. Acta Agrestia Sinica, 2021, 29(11): 2454 − 2460. |
[18] |
SUETSUGU K, TANAKA K. Pollination of Sedirea japonica (Orchidaceae) by Bombus diversus diversus (Hymenoptera: Apidae) [J]. European Journal of Entomology, 2013, 110(3): 545 − 548. |
[19] |
DAFNI A. Pollination Ecology: Apractical Approach [M]. Oxford: Oxford University Press, 1992. |
[20] |
林苏娥, 曹家树. 阿拉伯半乳糖蛋白基因BcMF8在白菜花粉壁发育过程中的作用[C]//张彦. 中国园艺学会十字花科分会第九届学术研讨会论文集. 南京: 中国园艺学会十字花科分会, 2011: 241.
LIN Sue, CAO Jiashu. The role of Arabinogalactan-protein gene BcMF8 in the development of pollen wall in Brassica rapa var. glabra Regel [C]// ZHANG Yan. Theory and Application about the 9th Symposium of Brassicaceae Burnett of the Chinese Society for Horticultural Science. Nanjing: Brassicaceae Burnett of the Chinese Society for Horticultural Science, 2011: 241. |
[21] |
刘昊. 核桃花粉管通道遗传转化体系的建立[D]. 北京: 中国林业科学研究院, 2012.
LIU Hao. Establishment of a Genetic Transformation System for Juglans regia L. Pollen Tube Pathway [D]. Beijing: Chinese Academy of Forestry, 2012. |
[22] |
高冠军, 范优荣, 李一博. 碘-碘化钾染色法鉴定水稻花粉育性[J/OL]. Bio-101, 2018: e1010139[2023-01-30]. doi: 10.21769/BioProtco.1010139.
GAO Guanjun, FAN Yourong, LI Yibo. Identification of Oryza sativa L. pollen fertility by iodine-potassium iodide staining [J/OL]. Bio-101, 2018: e1010139[2023-01-30]. doi: 10.21769/BioProtco.1010139. |
[23] |
边子星. 濒危附生兰华石斛种子生物学研究[D]. 海口: 海南大学, 2017.
BIAN Zixing. Study on Seed Biology of Endangered Epiphytic Orchid Dendrobium sinense T. Tang et F. T. Wang [D]. Haikou: Hainan University, 2017. |
[24] |
张哲, 任明迅, 向文倩, 等. 东南亚兰科植物的物种多样性、生活习性及其传粉系统[J]. 广西植物, 2021, 41(10): 1683 − 1703.
ZHANG Zhe, REN Mingxun, XIANG Wenqian, et al. Species diversity, living habits and pollination system of Orchidaceae in southeast Asia [J]. Guihaia, 2021, 41(10): 1683 − 1703. |
[25] |
林爱英. 福建3种野生兰科植物繁殖生物学的初步研究[D]. 福州: 福建师范大学, 2015.
LIN Aiying. A Preliminary Study on Reproductive Biology of Three Wild Orchids in Fujian [D]. Fuzhou: Fujian Normal University, 2015. |
[26] |
张锐, 尚伟, 许旭明. 辣椒雄性不育的选育及利用研究进展[J]. 分子植物育种, 2020, 18(18): 6143 − 6157.
ZHANG Yue, SHANG Wei, XU Xuming. Research progress breeding and utilization of male sterility in Capsicum annuum L. [J]. Molecular Plant Breeding, 2020, 18(18): 6143 − 6157. |