Stahl Dietmar J, Kloos Dorothee U, Hehl Reinhard
PLANTA Angewandte Pflanzengenetik und Biotechnologie GmbH, Grimsehlstr. 31, D-37555 Einbeck, Germany.
BMC Biotechnol. 2004 Dec 5;4:31. doi: 10.1186/1472-6750-4-31.
Modification of leaf traits in sugar beet requires a strong leaf specific promoter. With such a promoter, expression in taproots can be avoided which may otherwise take away available energy resources for sugar accumulation.
Suppression Subtractive Hybridization (SSH) was utilized to generate an enriched and equalized cDNA library for leaf expressed genes from sugar beet. Fourteen cDNA fragments corresponding to thirteen different genes were isolated. Northern blot analysis indicates the desired tissue specificity of these genes. The promoters for two chlorophyll a/b binding protein genes (Bvcab11 and Bvcab12) were isolated, linked to reporter genes, and transformed into sugar beet using promoter reporter gene fusions. Transient and transgenic analysis indicate that both promoters direct leaf specific gene expression. A bioinformatic analysis revealed that the Bvcab11 promoter is void of G-box like regulatory elements with a palindromic ACGT core sequence. The data indicate that the presence of a G-box element is not a prerequisite for leaf specific and light induced gene expression in sugar beet.
This work shows that SSH can be successfully employed for the identification and subsequent isolation of tissue specific sugar beet promoters. These promoters are shown to drive strong leaf specific gene expression in transgenic sugar beet. The application of these promoters for expressing resistance improving genes against foliar diseases is discussed.
甜菜叶性状的改良需要一个强叶特异性启动子。有了这样一个启动子,就可以避免在主根中表达,否则可能会消耗用于糖分积累的可用能量资源。
利用抑制性消减杂交(SSH)技术构建了一个富集且均一化的甜菜叶表达基因cDNA文库。分离出了与13个不同基因相对应的14个cDNA片段。Northern杂交分析表明这些基因具有所需的组织特异性。分离了两个叶绿素a/b结合蛋白基因(Bvcab11和Bvcab12)的启动子,与报告基因相连,并通过启动子报告基因融合技术转化到甜菜中。瞬时和转基因分析表明这两个启动子都能指导叶特异性基因表达。生物信息学分析显示,Bvcab11启动子缺乏具有回文ACGT核心序列的类G-box调控元件。数据表明,G-box元件的存在不是甜菜叶特异性和光诱导基因表达的先决条件。
这项工作表明,SSH可成功用于鉴定和随后分离组织特异性甜菜启动子。这些启动子在转基因甜菜中能驱动强叶特异性基因表达。讨论了这些启动子在表达抗叶部病害改良基因方面的应用。