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Cloning and expression analysis of alcohol dehydrogenase (Adh) hybrid promoter isolated from Zea mays

机译:玉米中乙醇脱氢酶(Adh)杂种启动子的克隆与表达分析

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Hybrid promoters are created by shuffling of DNA fragments while keeping intact regulatory regions crucial of promoter activity. Two fragments of alcohol dehydrogenase (Adh) promoter from Zea mays were selected to generate hybrid promoter. Sequence analysis of both alcohol dehydrogenase promoter fragments through bioinformatics tools identified several crucial cis regulatory elements and transcription factors binding sites. Both fragments were separately cloned in the TA vector (pTZ57R/T) and fused to get the complete hybrid promoter (Adh-H). Alcohol dehydrogenase hybrid promoter was further cloned in expression vector pGR1 through adaptor ligation. Transient β-glucuronidase (GUS) assay revealed that hybrid promoter exhibited high expression under anaerobic conditions in wheat tissues. From the study it is concluded that hybrid promoter (Adh-H) may be used to derive gene expression in monocots during anaerobic conditions. The present work also provides an important insight in the designing of hybrid monocot promoters to improve multiple traits in crops without facing intellectual property rights (IPRs) issues.
机译:杂合启动子是通过改组DNA片段,同时保持完整的调节区对启动子活性至关重要而产生的。选择来自玉米的醇脱氢酶(Adh)启动子的两个片段以产生杂合启动子。通过生物信息学工具对两个醇脱氢酶启动子片段的序列分析,确定了几个关键的顺式调控元件和转录因子结合位点。将两个片段分别克隆到TA载体(pTZ57R / T)中,并融合以获得完整的杂交启动子(Adh-H)。通过衔接子连接将乙醇脱氢酶杂合启动子进一步克隆到表达载体pGR1中。瞬时β-葡萄糖醛酸苷酶(GUS)测定表明,杂合启动子在厌氧条件下在小麦组织中表现出高表达。从研究中可以得出结论,在厌氧条件下,杂种启动子(Adh-H)可用于在单子叶植物中获得基因表达。目前的工作还为设计杂交单子叶植物启动子提供了重要的见识,以改善农作物的多种性状,而不会遇到知识产权(IPR)问题。

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