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Ubi1 intron-mediated enhancement of the expression of Bt cry1Ah gene in transgenic maize (Zea mays L.)
作者姓名:WANG YueBing  ;LANG Zhihong  ;ZHANG Jie  ;HE KangLai  ;SONG FuPing  ;HUANG DaFang
作者单位:[1]Biotechnology Research Institute, Chinese Academy of Agricultural Sciences, Beijing 100081, China; [2]State Key Laboratory for Biology of Plant Diseases and Insect Pests, Institute of Plant Protection, Chinese Academy of Agricultural Sciences, Beijing 100193, China
基金项目:Supported by the National Natural Science Foundation of China (Grant No. 30500039), National Basic Research Program of China (Grant No. 2003CB114201) and Basic Scientific Research Foundation for Chinese Central Academy (Biotech-nology Research Institute, CAAS)
摘    要:The cry1Ah gene was one of novel insecticidal genes cloned from Bacillus thuringiensis isolate BT8. Two plant expression vectors containing cry1Ah gene were constructed. The first intron of maize ubiqutinl gene was inserted between the maize Ubiquitin promoter and cry1Ah gene in one of the plant expressing vectors (pUUOAH). The two vectors were introduced into maize immature embryonic calli by microprojectile bombardment, and the reproductively plants were acquired. PCR and Southern blot analysis showed that foreign genes had been integrated into maize genome and inherited to the next generation stably. The ELISA assay to T1 and T2 generation plants showed that the expression of CrylAh protein in the construct containing the ubil intron (pUUOAH) was 20% higher than that of the intronless construct (pUOAH). Bioassay results showed that the transgenic maize harboring cry1Ah gene had high resistance to the Asian corn borers and the insecticidal activity of the transgenic maize containing the ubil intron was higher than that of the intronless construct. These results indicated that the maize ubil intron can enhance the expression of the Bt cry1Ah gene in transgenic maize efficiently

关 键 词:苏云金芽孢杆菌  cry1Ah基因  转基因玉米  Ubi1基因区  基因表达
收稿时间:2008-03-03
修稿时间:2008-04-29

<Emphasis Type="Italic">Ubi1</Emphasis> intron-mediated enhancement of the expression of Bt <Emphasis Type="Italic">cry1Ah</Emphasis> gene in transgenic maize (<Emphasis Type="Italic">Zea mays</Emphasis> L.)
WANG YueBing,;LANG Zhihong,;ZHANG Jie,;HE KangLai,;SONG FuPing,;HUANG DaFang.Ubi1 intron-mediated enhancement of the expression of Bt cry1Ah gene in transgenic maize (Zea mays L.)[J].Chinese Science Bulletin,2008,53(20):3185-3190.
Authors:YueBing Wang  Zhihong Lang  Jie Zhang  KangLai He  FuPing Song  DaFang Huang
Institution:(1) Biotechnology Research Institute, Chinese Academy of Agricultural Sciences, Beijing, 100081, China;(2) State Key Laboratory for Biology of Plant Diseases and Insect Pests, Institute of Plant Protection, Chinese Academy of Agricultural Sciences, Beijing, 100193, China
Abstract:The cry1Ah gene was one of novel insecticidal genes cloned from Bacillus thuringiensis isolate BT8. Two plant expression vectors containing cry1Ah gene were constructed. The first intron of maize ubiqutin1 gene was inserted between the maize Ubiquitin promoter and cry1Ah gene in one of the plant expressing vectors (pUUOAH). The two vectors were introduced into maize immature embryonic calli by microprojectile bombardment, and the reproductively plants were acquired. PCR and Southern blot analysis showed that foreign genes had been integrated into maize genome and inherited to the next generation stably. The ELISA assay to T1 and T2 generation plants showed that the expression of Cry1Ah protein in the construct containing the ubi1 intron (pUUOAH) was 20% higher than that of the intronless construct (pUOAH). Bioassay results showed that the transgenic maize harboring cry1Ah gene had high resistance to the Asian corn borers and the insecticidal activity of the transgenic maize containing the ubi1 intron was higher than that of the intronless construct. These results indicated that the maize ubi1 intron can enhance the expression of the Bt cry1Ah gene in transgenic maize efficiently Supported by the National Natural Science Foundation of China (Grant No. 30500039), National Basic Research Program of China (Grant No. 2003CB114201) and Basic Scientific Research Foundation for Chinese Central Academy (Biotechnology Research Institute, CAAS)
Keywords:Bacillus thuringiensis                      cry1Ah gene            ubi1 intron  intron-mediated enhancement  insect-resistant transgenic maize
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