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编码序列的修饰增强了昆虫控制蛋白基因在植物中的表达。

Modification of the coding sequence enhances plant expression of insect control protein genes.

作者信息

Perlak F J, Fuchs R L, Dean D A, McPherson S L, Fischhoff D A

机构信息

Plant Sciences, Monsanto Company, Chesterfield, MO 63198.

出版信息

Proc Natl Acad Sci U S A. 1991 Apr 15;88(8):3324-8. doi: 10.1073/pnas.88.8.3324.

Abstract

Increased expression of the insect control protein genes of Bacillus thuringiensis in plants has been critical to the development of genetically improved plants with agronomically acceptable levels of insect resistance. The expression of the cryIA(b) gene was compared to partially modified (3% nucleotide difference) and to fully modified (21% nucleotide difference) cryIA(b) and cryIA(c) genes in tobacco and tomato. The modified genes increased the frequency of plants that produced the proteins at quantities sufficient to control insects and dramatically increased the levels of these proteins. Among the most highly expressing transformed plants for each gene, the plants with the partially modified cryIA(b) gene had a 10-fold higher level of insect control protein and plants with the fully modified cryIA(b) had a 100-fold higher level of CryIA(b) protein compared with the wild-type gene. Similar results were obtained with the fully modified cryIA(c) gene in plants. Specific sequences of the partially modified cryIA(b) gene were analyzed for their ability to affect cryIA(b) gene expression in tobacco. The DNA sequence of a single region was identified as important to the improvement of plant expression of the cryIA(b) gene. The increased levels of cryIA(b) mRNA were not directly proportional to the increased levels of CryIA(b) protein in plants transformed with the modified cryIA(b) genes, indicating that the nucleotide sequence of these genes had an effect in improving their translational efficiency in plants.

摘要

苏云金芽孢杆菌的昆虫控制蛋白基因在植物中的表达增加,对于培育具有农艺学上可接受抗虫水平的转基因植物至关重要。将cryIA(b)基因的表达与部分修饰(核苷酸差异3%)和完全修饰(核苷酸差异21%)的cryIA(b)及cryIA(c)基因在烟草和番茄中的表达进行了比较。修饰后的基因提高了能产生足以控制昆虫数量蛋白质的植物频率,并显著提高了这些蛋白质的水平。在每个基因的高表达转化植物中,与野生型基因相比,具有部分修饰cryIA(b)基因的植物其昆虫控制蛋白水平高10倍,具有完全修饰cryIA(b)基因的植物其CryIA(b)蛋白水平高100倍。在植物中用完全修饰的cryIA(c)基因也获得了类似结果。分析了部分修饰cryIA(b)基因的特定序列影响烟草中cryIA(b)基因表达的能力。确定了单个区域的DNA序列对提高cryIA(b)基因在植物中的表达很重要。在用修饰后的cryIA(b)基因转化的植物中,cryIA(b) mRNA水平的增加与CryIA(b)蛋白水平的增加不成正比,这表明这些基因的核苷酸序列在提高其在植物中的翻译效率方面有作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d1b9/51439/622c113ca29e/pnas01058-0369-a.jpg

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