Page 166 - 《广西植物》2025年第7期
P. 166
1 3 5 8 广 西 植 物 45 卷
DING LHꎬ WANG YWꎬ YU Hꎬ 2013. Overexpression of 1852-1865.
DOSOC1ꎬ an ortholog of Arabidopsis SOC1ꎬ promotes MEN Sꎬ MING Xꎬ WANG Yꎬ et al.ꎬ 2003. Genetic
flowering in the orchid Dendrobium Chao Parya Smile transformation of two species of orchid by biolistic
[J]. Plant and Cell Physiologyꎬ 54(4): 595-608. bombardment [J]. Plant Cell Reportsꎬ 21(6): 592-598.
GNASEKARAN Pꎬ ANTONY JJJꎬ UDDAIN Jꎬ et al.ꎬ OVCHARENKO OOꎬ RUDAS VAꎬ 2023. Modern approaches to
2014. Agrobacterium ̄mediated transformation of the genetic engineering in the Orchidaceae family [J]. Cytology
recalcitrant Vanda Kasems Delight orchid with higher and Geneticsꎬ 57(2): 142-156.
efficiency [ J ]. The Scientific World Journalꎬ PHLAETITA Wꎬ CHIN PDꎬ OTANG VNꎬ et al.ꎬ 2015a. High
2014: 583934. efficiency Agrobacterium ̄mediated transformation of
HUANG CQꎬ WANG XMꎬ SU JMꎬ et al.ꎬ 2018. Establishment Dendrobium orchid using protocorms as a target material
of Dendrobium fimbriatum genetic transformation system by [J]. Plant Biotechnologyꎬ 32(4): 323-327.
Agrobacterium tumefaciens transfection [J]. Journal of Yulin PHLAETITA Wꎬ CHIN PDꎬ TOKUHARA Kꎬ et al.ꎬ
Normal Universityꎬ 39(2): 62-67. [黄超群ꎬ 王小敏ꎬ 苏 2015b. Agrobacterium ̄mediated transformation of protocorm ̄
建睦ꎬ 等ꎬ 2018. 农杆菌介导流苏石斛遗传转化体系的建 like bodies in Dendrobium Formidible ‘Ugusu’ [J]. Plant
立 [J]. 玉林师范学院学报ꎬ 39(2): 62-67.] Biotechnologyꎬ 32(3): 225-231.
KISHI ̄KABOSHI Mꎬ AIDA Rꎬ SASAKI Kꎬ 2018. Genome VIBHA Sꎬ JAMES Tꎬ 2016. Gene stacking by recombinases
engineering in ornamental plants: Current status and future [J]. Plant Biotechnology Journalꎬ 14(2): 471-482.
prospects [ J]. Plant Physiology and Biochemistryꎬ 131: XU JMꎬ HUA Kꎬ LANG ZBꎬ 2019. Genome editing for
47-52. horticultural crop improvement [J]. Horticulture Researchꎬ
KNAPP JEꎬ KAUSCH APꎬ CHANDLEE JMꎬ 2000. 6(1): 113.
Transformation of three genera of orchid using the bar gene YU Hꎬ YANG SHꎬ GOH CJꎬ 2001. Agrobacterium ̄mediated
as a selectable marker [ J]. Plant Cell Reportsꎬ 19(9): transformation of a Dendrobium orchid with the class 1 knox
893-898. gene DOH1 [J]. Plant Cell Reportsꎬ 20(4): 301-305.
KUI Lꎬ CHEN HTꎬ ZHANG WXꎬ et al.ꎬ 2016. Building a ZHANG DYꎬ ZHAO XWꎬ LI YYꎬ et al.ꎬ 2022. Advances and
genetic manipulation tool box for orchid biology: prospects of orchid research and industrialization [ J ].
Identification of constitutive promoters and application of Horticulture Researchꎬ 9: uhac220.
CRISPR/ Cas9 in the orchidꎬ Dendrobium officinale [ J]. ZHANG MBꎬ LIANG QZꎬ XIAO Hꎬ et al.ꎬ 2008. Study on
Frontiers in Plant Scienceꎬ 7: 2036. Agrobacterium ̄mediated transformation of Dendrobium
LI Yꎬ ZHANG Bꎬ YU Hꎬ 2022. Kilobase ̄scale genomic [J]. Acta Horticulturae Sinicaꎬ 47(4): 565- 570. [张妙
deletion of DOTFL1 in Dendrobium orchids [J]. Journal of 彬ꎬ 梁擎中ꎬ 肖浩ꎬ 等ꎬ 2008. 农杆菌介导石斛兰遗传转
Genetics and Genomicsꎬ 49(1): 81-84. 化的研究 [J]. 园艺学报ꎬ 47(4): 565-570.]
LI YMꎬ LI RYꎬ HAN ZGꎬ et al.ꎬ 2022. Recombinase ̄mediated
gene stacking in cotton [ J]. Plant Physiologyꎬ 188(4): (责任编辑 邓斯丽)

