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Ribozyme termination of RNA transcripts down‐regulate seed fatty acid genes in transgenic soybean

作者:T.L. Buhr, Shirley Sato, Farida Ebrahim, Aiqiu Xing, You Zhou, Michelle R. Mathiesen, Bruce Schweiger, Anthony J. Kinney, Paul Staswick, Tom Clemente · 发表于:The Plant Journal · 年份:2002 · DOI:10.1046/j.1365-313x.2002.01283.x · 被引用次数:199 · 研究领域:Plant Virus Research Studies、Plant Molecular Biology Research、Transgenic Plants and Applications

We investigated whether termination of transcripts with a self-cleaving ribozyme can enhance nuclear retention and serve as a tool to decrease specific plant gene expression. Nuclear retention was first monitored in tobacco using the beta-glucuronidase gene terminated with either the 35S CaMV 3' untranslated sequence (UTR) or a cis-acting ribozyme. Northern blot analysis of nuclear RNA and total RNA, and in situ hybridizations showed that the ribozyme-terminated transcripts were preferentially retained in the nucleus of transgenic tobacco. Ribozyme-terminated transcripts were subsequently tested as a gene down-regulation strategy in soybean. The embryo-specific Delta-12 fatty acid desaturase FAD2-1 gene was targeted because its down-regulation elevates oleic acid content of seed storage lipids. Both ribozyme-terminated antisense and standard antisense constructs were capable of gene down-regulation, producing over 57% oleic acid compared with less than 18% in wild-type seed. Ribozyme termination cassettes were also constructed to evaluate sense transcripts for single gene down-regulation and the simultaneous down-regulation of two embryo-specific genes in soybean using a single promoter. Eight independent soybean transformants were screened that harboured standard plus sense or ribozyme terminated FAD2-1 cassette. Two of the eight ribozyme terminated transformants displayed oleic acids levels in the seed storage lipids of over 75%, while none of the standard plus sense FAD2-1...