Agrobacterium tumefaciens-mediated transformation of poinsettia, Euphorbia pulcherrima, with virus-derived hairpin RNA constructs confers resistance to Poinsettia mosaic virus

被引:0
作者
Jihong Liu Clarke
Carl Spetz
Sissel Haugslien
Shaochen Xing
Merete W. Dees
Roar Moe
Dag-Ragnar Blystad
机构
[1] Norwegian Institute for Agricultural and Environmental Research,Plant Health and Plant Protection Division
[2] Jilin Academy of Agricultural Sciences,Biotechnology Research Center
[3] Norwegian University of Life Sciences,Department of Plant and Environmental Sciences
来源
Plant Cell Reports | 2008年 / 27卷
关键词
Somatic embryogenesis; Transformation;
D O I
暂无
中图分类号
学科分类号
摘要
Agrobacterium-mediated transformation for poinsettia (Euphorbia pulcherrima Willd. Ex Klotzsch) is reported here for the first time. Internode stem explants of poinsettia cv. Millenium were transformed by Agrobacterium tumefaciens, strain LBA 4404, harbouring virus-derived hairpin (hp) RNA gene constructs to induce RNA silencing-mediated resistance to Poinsettia mosaic virus (PnMV). Prior to transformation, an efficient somatic embryogenesis system was developed for poinsettia cv. Millenium in which about 75% of the explants produced somatic embryos. In 5 experiments utilizing 868 explants, 18 independent transgenic lines were generated. An average transformation frequency of 2.1% (range 1.2–3.5%) was revealed. Stable integration of transgenes into the poinsettia nuclear genome was confirmed by PCR and Southern blot analysis. Both single- and multiple-copy transgene integration into the poinsettia genome were found among transformants. Transgenic poinsettia plants showing resistance to mechanical inoculation of PnMV were detected by double antibody sandwich enzyme-linked immunosorbent assay (DAS-ELISA). Northern blot analysis of low molecular weight RNA revealed that transgene-derived small interfering (si) RNA molecules were detected among the poinsettia transformants prior to inoculation. The Agrobacterium-mediated transformation methodology developed in the current study should facilitate improvement of this ornamental plant with enhanced disease resistance, quality improvement and desirable colour alteration. Because poinsettia is a non-food, non-feed plant and is not propagated through sexual reproduction, this is likely to be more acceptable even in areas where genetically modified crops are currently not cultivated.
引用
收藏
页码:1027 / 1038
页数:11
相关论文
共 230 条
[1]  
Afolabi AS(2004)A large-scale study of rice plants transformed with different T-DNAs provides new insights into locus composition and T-DNA linkage configurations Theor Appl Genet 109 815-826
[2]  
Worland B(1999)-mediated transformation of Plant Sci 148 1-7
[3]  
Snape JW(2000) Mill J Plant Physiol 157 429-439
[4]  
Vain P(1998)T-DNA transfer, integration, expression and inheritance in rice: effects of plant genotype and Mol Plant Microbe Interact 11 626-633
[5]  
Aida R(2005) super-virulence Trends Biochem Sci 30 290-293
[6]  
Hirose Y(2001)Transformation of Nature 409 295-296
[7]  
Kishimoto S(2002) with the potato mop-top virus coat protein gene produces a novel resistance phenotype mediated by the coat protein Acta Hortic 568 225-226
[8]  
Shibata M(2000)RNA silencing Virology 271 289-297
[9]  
Azhakanandam K(2006)Role for a bidentate ribonuclease in the initiation step of RNA interference J Gen Virol 87 3697-3701
[10]  
Mccabe MS(2006)Transmission of Propag Ornam Plants 6 9-14