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用于稳定和瞬时抑制水稻基因功能的简单RNA干扰载体

Simple RNAi vectors for stable and transient suppression of gene function in rice.

作者信息

Miki Daisuke, Shimamoto Ko

机构信息

Laboratory of Plant Molecular Genetics, Nara Institute of Science and Technology, 8916-5 Takayama, Ikoma, 630-0101 Japan.

出版信息

Plant Cell Physiol. 2004 Apr;45(4):490-5. doi: 10.1093/pcp/pch048.

Abstract

Since the recent sequencing of the rice genome, the functional identification of rice genes has become increasingly important. Various tagged lines have been generated; however, the number of tagged genes available is not sufficient for extensive study of gene function. To help identify the functions of genes in rice, we developed a Gateway vector, pANDA, for RNA interference of rice genes. This vector can be used for Agrobacterium transformation of rice and allows easy and fast construction of efficient RNAi vectors. In the construct, hairpin RNA derived from a given gene is transcribed from a strong maize ubiquitin promoter, and an intron is placed 5' upstream of inverted repeats to enhance RNA expression. Analysis of rice genes using this vector showed that suppression of mRNA expression was observed in more than 90% of transgenic plants examined, and short interfering RNA indicative of RNA silencing was detected in each silenced plant. A similar vector, pANDA-mini, was also developed for direct transfer into leaf cells or protoplasts. This vector can be used for transient suppression of gene function in rice. These vectors should help identify the functions of rice genes whose tagged mutants are not available at present and complement existing methods for functional genomics of rice.

摘要

自从水稻基因组近期完成测序以来,水稻基因的功能鉴定变得越发重要。已经产生了各种标签系;然而,可用的标签基因数量不足以对基因功能进行广泛研究。为了帮助鉴定水稻基因的功能,我们开发了一种用于水稻基因RNA干扰的Gateway载体pANDA。该载体可用于水稻的农杆菌转化,并能简便快速地构建高效RNA干扰载体。在构建体中,源自特定基因的发夹RNA由强大的玉米泛素启动子转录,并且一个内含子置于反向重复序列的5'上游以增强RNA表达。使用该载体对水稻基因进行分析表明,在所检测的超过90%的转基因植株中观察到了mRNA表达的抑制,并且在每个沉默植株中都检测到了指示RNA沉默的短干扰RNA。还开发了一种类似的载体pANDA-mini,用于直接导入叶细胞或原生质体。该载体可用于水稻基因功能的瞬时抑制。这些载体应有助于鉴定目前尚无标签突变体的水稻基因的功能,并补充现有的水稻功能基因组学方法。

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