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首页> 外文期刊>Plant Cell Reports >Agrobacterium-mediated transformation of a low glutelin mutant of 'Koshihikari' rice variety using the mutated-acetolactate synthase gene derived from rice genome as a selectable marker
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Agrobacterium-mediated transformation of a low glutelin mutant of 'Koshihikari' rice variety using the mutated-acetolactate synthase gene derived from rice genome as a selectable marker

机译:农杆菌介导的'越光'水稻低谷蛋白突变体的转化,利用水稻基因组突变的乙酰乳酸合酶基因作为选择标记

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摘要

We have developed an efficient rice transformation system that uses only rice genome-derived components. The transgenic 'Koshihikari' rice, low-glutelin mutant a123, is capable of accumulating large amounts of bioactive peptides in the endosperm. Agrobacterium-mediated transformation using the mutated-acetolactate synthase (mALS) gene expressed under the control of the callus-specific promoter (CSP) as a selectable marker was used to introduce GFP and an anti-hypertensive hexapeptide into 'Koshihikari' a123. The CSP:mALS gene cassette confers pyrimidinyl carboxy herbicide resistance to transgenic rice callus, but is not expressed in regenerated plants. Transformation efficiency of transgenic rice line a123 was improved from about 10% to about 30% by modifying callus induction, callus selection and regeneration media conventionally used for rice tissue culture.
机译:我们已经开发了仅使用水稻基因组成分的高效水稻转化系统。低谷蛋白突变体a123的转基因“越光”水稻能够在胚乳中积累大量生物活性肽。使用在愈伤组织特异性启动子(CSP)的控制下表达的突变乙酰乳酸合酶(mALS)基因作为选择标记的农杆菌介导转化将GFP和抗高血压六肽引入'越光'a123中。 CSP:mALS基因盒赋予嘧啶基羧基除草剂对转基因水稻愈伤组织的抗性,但在再生植物中不表达。通过改变通常用于水稻组织培养的愈伤组织诱导,愈伤组织选择和再生培养基,将转基因水稻品系a123的转化效率从约10%提高至约30%。

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