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在拟南芥和油菜中将花瓣转化为萼状器官:以器官特异性方式实施发夹RNA介导的基因沉默技术。

Transforming petals into sepaloid organs in Arabidopsis and oilseed rape: implementation of the hairpin RNA-mediated gene silencing technology in an organ-specific manner.

作者信息

Byzova Marina, Verduyn Christoph, De Brouwer Dirk, De Block Marc

机构信息

Bayer BioScience NV, Jozef Plateaustraat 22, Gent 9000, Belgium.

出版信息

Planta. 2004 Jan;218(3):379-87. doi: 10.1007/s00425-003-1117-1. Epub 2003 Oct 8.

DOI:10.1007/s00425-003-1117-1
PMID:14534787
Abstract

Oilseed rape ( Brassica napus L.) genotypes with no or small petals are thought to have advantages in photosynthetic activity. The flowers of field-grown oilseed rape form a bright-yellow canopy that reflects and absorbs nearly 60% of the photosynthetically active radiation (PAR), causing a severe yield penalty. Reducing the size of the petals and/or removing the reflecting colour will improve the transmission of PAR to the leaves and is expected to increase the crop productivity. In this study the 'hairpin' RNA-mediated (hpRNA) gene silencing technology was implemented in Arabidopsis thaliana (L.) Heynh. and B. napus to silence B-type MADS-box floral organ identity genes in a second-whorl-specific manner. In Arabidopsis, silencing of B-type MADS-box genes was obtained by expressing B. napus APETALA3( BAP3) or PISTILLATA ( BPI) homologous self-complementary hpRNA constructs under control of the Arabidopsis A-type MADS-box gene APETALA1 ( AP1) promoter. In B. napus, silencing of the BPI gene family was achieved by expressing a similar hpRNA construct as used in Arabidopsis under the control of a chimeric promoter consisting of a modified petal-specific Arabidopsis AP3 promoter fragment fused to the AP1 promoter. In this way, transgenic plants were generated producing male fertile flowers in which the petals were converted into sepals ( Arabidopsis) or into sepaloid petals ( B. napus). These novel flower phenotypes were stable and heritable in both species.

摘要

无花瓣或小花瓣的油菜(甘蓝型油菜)基因型被认为在光合活性方面具有优势。田间种植的油菜花朵形成亮黄色冠层,反射并吸收近60%的光合有效辐射(PAR),导致严重的产量损失。减小花瓣大小和/或去除反射颜色将提高PAR向叶片的传输,有望提高作物生产力。在本研究中,“发夹”RNA介导(hpRNA)基因沉默技术在拟南芥和甘蓝型油菜中实施,以第二轮特异性方式沉默B类MADS盒花器官特征基因。在拟南芥中,通过在拟南芥A型MADS盒基因APETALA1(AP1)启动子的控制下表达甘蓝型油菜APETALA3(BAP3)或PISTILLATA(BPI)同源自互补hpRNA构建体来实现B类MADS盒基因的沉默。在甘蓝型油菜中,通过在由与AP1启动子融合的修饰花瓣特异性拟南芥AP3启动子片段组成的嵌合启动子的控制下表达与拟南芥中使用的类似hpRNA构建体,实现了BPI基因家族的沉默。通过这种方式,产生了转基因植物,其雄性可育花中的花瓣转化为萼片(拟南芥)或萼片状花瓣(甘蓝型油菜)。这些新的花表型在两个物种中都是稳定且可遗传的。

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本文引用的文献

1
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Planta. 1992 Jun;187(3):405-13. doi: 10.1007/BF00195665.
2
Transformation of Brassica napus and Brassica oleracea Using Agrobacterium tumefaciens and the Expression of the bar and neo Genes in the Transgenic Plants.利用根癌农杆菌对甘蓝型油菜和甘蓝进行转化以及转基因植株中bar和neo基因的表达
Plant Physiol. 1989 Oct;91(2):694-701. doi: 10.1104/pp.91.2.694.
3
Constructs and methods for high-throughput gene silencing in plants.
日本杜鹃的持久花冠品种:一个在300多年前的传统杜鹃品种中鉴定出的突变同源物。
Front Plant Sci. 2018 Jan 9;8:2239. doi: 10.3389/fpls.2017.02239. eCollection 2017.
4
RNA interference: concept to reality in crop improvement.RNA干扰:从概念到作物改良中的现实应用
Planta. 2014 Mar;239(3):543-64. doi: 10.1007/s00425-013-2019-5. Epub 2014 Jan 9.
5
An Arabidopsis tissue-specific RNAi method for studying genes essential to mitosis.一种拟南芥组织特异性 RNAi 方法,用于研究有丝分裂必需基因。
PLoS One. 2012;7(12):e51388. doi: 10.1371/journal.pone.0051388. Epub 2012 Dec 7.
6
RNA interference-mediated gene knockdown within specific cell types.RNA 干扰介导的特定细胞类型内的基因敲低。
Plant Mol Biol. 2012 Sep;80(2):169-76. doi: 10.1007/s11103-012-9937-7. Epub 2012 Jun 28.
7
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9
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5
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6
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7
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8
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9
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10
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Curr Opin Plant Biol. 2002 Apr;5(2):146-50. doi: 10.1016/s1369-5266(02)00236-4.