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首页> 外文期刊>Planta >Transforming petals into sepaloid organs in Arabidopsis and oilseed rape: implementation of the hairpin RNA-mediated gene silencing technology in an organ-specific manner
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Transforming petals into sepaloid organs in Arabidopsis and oilseed rape: implementation of the hairpin RNA-mediated gene silencing technology in an organ-specific manner

机译:将花瓣转化为拟南芥和油菜中的萼片器官:以器官特异性方式实施发夹RNA介导的基因沉默技术

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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.
机译:没有花瓣或花瓣很小的油菜油菜(Brassica napus L.)基因型被认为在光合作用方面具有优势。田间种植的油菜的花形成了亮黄色的冠层,该冠层反射并吸收了近60%的光合有效辐射(PAR),从而导致严重的产量损失。减小花瓣的大小和/或消除反射色将改善PAR向叶片的透射率,并有望提高农作物的生产率。在这项研究中,在拟南芥Heynh中实施了“发夹” RNA介导(hpRNA)基因沉默技术。和甘蓝型油菜以第二种特异性方式沉默B型MADS框花器官身份基因。在拟南芥中,通过在拟南芥A型MADS-box基因APETALA1(AP1)的控制下表达甘蓝型油菜APETALA3(BAP3)或PISTILLATA(BPI)同源自我互补hpRNA构建体,获得B型MADS-box基因的沉默。启动子。在甘蓝型油菜中,BPI基因家族的沉默是通过在嵌合启动子的控制下表达与拟南芥中相似的hpRNA构建体实现的,该嵌合启动子由与AP1启动子融合的修饰的花瓣特异性拟南芥AP3启动子片段组成。以这种方式,产生了产生雄性可育花的转基因植物,其中花瓣被转化为萼片(拟南芥)或萼片花瓣(B.napus)。这些新颖的花表型在两个物种中都是稳定的和可遗传的。

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