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1
Editorial: Plant Transformation.社论:植物转化
Front Plant Sci. 2022 Apr 18;13:876671. doi: 10.3389/fpls.2022.876671. eCollection 2022.
2
Effect of promoter driving selectable marker on corn transformation.启动子驱动选择标记对玉米转化的影响。
Transgenic Res. 2008 Aug;17(4):695-704. doi: 10.1007/s11248-007-9149-0. Epub 2007 Oct 19.
3
A highly efficient sulfadiazine selection system for the generation of transgenic plants and algae.一种高效的磺胺嘧啶选择系统,用于转基因植物和藻类的生成。
Plant Biotechnol J. 2019 Mar;17(3):638-649. doi: 10.1111/pbi.13004. Epub 2018 Sep 13.
4
Advances in selectable marker genes for plant transformation.植物转化中选择标记基因的进展。
J Plant Physiol. 2008 Nov 1;165(16):1698-716. doi: 10.1016/j.jplph.2008.08.002. Epub 2008 Sep 11.
5
The 35S promoter used in a selectable marker gene of a plant transformation vector affects the expression of the transgene.植物转化载体的选择标记基因中使用的35S启动子会影响转基因的表达。
Planta. 2005 Jun;221(4):523-30. doi: 10.1007/s00425-004-1466-4. Epub 2005 Jan 29.
6
Selectable marker elimination in the T0 generation by Agrobacterium-mediated co-transformation involving Mungbean yellow mosaic virus TrAP as a non-conditional negative selectable marker and bar for transient positive selection.利用农杆菌介导的共转化,通过 Mungbean yellow mosaic virus TrAP 作为非条件负选择标记和 bar 作为瞬时正选择标记,在 T0 代中进行可选择标记的消除。
Plant Cell Rep. 2010 May;29(5):473-83. doi: 10.1007/s00299-010-0836-6. Epub 2010 Mar 5.
7
Direct Germline Transformation of Cotton Meristem Explants With No Selection.棉花分生组织外植体的直接生殖系转化,无需筛选。
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8
EYK1 encoding erythrulose kinase as a catabolic selectable marker for genome editing in the non-conventional yeast Yarrowia lipolytica.EYK1编码赤藓酮糖激酶,作为解脂耶氏酵母这一非常规酵母基因组编辑的分解代谢选择标记。
J Microbiol Methods. 2017 Aug;139:161-164. doi: 10.1016/j.mimet.2017.05.012. Epub 2017 May 26.
9
[Excision of selectable marker gene from transgenic plant].[从转基因植物中切除选择标记基因]
Zhi Wu Sheng Li Yu Fen Zi Sheng Wu Xue Xue Bao. 2004 Apr;30(2):121-6.
10
Stable wheat transformation obtained without selectable markers.无需选择标记即可获得稳定的小麦转化体。
Plant Mol Biol. 2003 May;52(2):415-9. doi: 10.1023/a:1023969501440.

引用本文的文献

1
Emerging trends in transgene-free crop development: insights into genome editing and its regulatory overview.无转基因作物开发的新趋势:对基因组编辑及其监管概述的见解
Plant Mol Biol. 2025 Jul 9;115(4):84. doi: 10.1007/s11103-025-01600-x.
2
In-vivo Raman microspectroscopy reveals differential nitrate concentration in different developmental zones in Arabidopsis roots.体内拉曼显微光谱揭示了拟南芥根不同发育区域硝酸盐浓度的差异。
Plant Methods. 2024 Dec 18;20(1):185. doi: 10.1186/s13007-024-01302-3.
3
Microbiome and plant cell transformation trigger insect gall induction in cassava.微生物群和植物细胞转化引发木薯虫瘿形成。
Front Plant Sci. 2023 Nov 29;14:1237966. doi: 10.3389/fpls.2023.1237966. eCollection 2023.
4
The Highly Embryogenic DH4079 Line Is Recalcitrant to -Mediated Genetic Transformation.高度胚性的DH4079株系对农杆菌介导的遗传转化具有顽拗性。
Plants (Basel). 2023 May 17;12(10):2008. doi: 10.3390/plants12102008.

本文引用的文献

1
Expression of foreign genes in regenerated plants and in their progeny.外源基因在再生植物及其后代中的表达。
EMBO J. 1984 Aug;3(8):1681-9. doi: 10.1002/j.1460-2075.1984.tb02032.x.
2
Ti plasmid vector for the introduction of DNA into plant cells without alteration of their normal regeneration capacity.Ti 质粒载体可将 DNA 导入植物细胞而不改变其正常的再生能力。
EMBO J. 1983;2(12):2143-50. doi: 10.1002/j.1460-2075.1983.tb01715.x.
3
AGROBACTERIUM AND PLANT GENES INVOLVED IN T-DNA TRANSFER AND INTEGRATION.参与T-DNA转移与整合的农杆菌和植物基因
Annu Rev Plant Physiol Plant Mol Biol. 2000 Jun;51:223-256. doi: 10.1146/annurev.arplant.51.1.223.
4
Right 25 bp terminus sequence of the nopaline T-DNA is essential for and determines direction of DNA transfer from agrobacterium to the plant genome.胭脂碱型T-DNA的右侧25个碱基对末端序列对于农杆菌向植物基因组的DNA转移至关重要,并决定其转移方向。
Cell. 1984 Sep;38(2):455-62. doi: 10.1016/0092-8674(84)90500-2.
5
Supercoiled circular DNA in crown-gall inducing Agrobacterium strains.冠瘿诱导农杆菌菌株中的超螺旋环状DNA。
J Mol Biol. 1974 Jun 15;86(1):109-27. doi: 10.1016/s0022-2836(74)80011-2.
6
Expression of chimaeric genes transferred into plant cells using a Ti-plasmid-derived vector. 1983.利用源自Ti质粒的载体将嵌合基因导入植物细胞中的表达。1983年。
Biotechnology. 1992;24:377-81.

Editorial: Plant Transformation.

作者信息

Hopp Horacio Esteban, Spangenberg German, Herrera-Estrella Luis

机构信息

Departamento de Fisiología, Biología Molecular y Celular, Facultad de Ciencias Exactas y Naturales, Universidad de Buenos Aires (UBA), Buenos Aires, Argentina.

Instituto de Agrobiotecnología y Biología Molecular (IABIMO), UEDD INTA-CONICET, Hurlingham, Argentina.

出版信息

Front Plant Sci. 2022 Apr 18;13:876671. doi: 10.3389/fpls.2022.876671. eCollection 2022.

DOI:10.3389/fpls.2022.876671
PMID:35519804
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC9062695/
Abstract
摘要