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具有多个抗虫基因的转基因烟草品系的培育

Development of transgenic tobacco lines with pyramided insect resistant genes.

作者信息

Bakhsh Allah, Dinç Tolga, Hussain Tahira, Demirel Ufuk, Aasim Muhammad, Çalişkan Mehmet Emin

机构信息

Department of Agricultural Genetic Engineering, Faculty of Agricultural Sciences and Technologies, Niğde Ömer Halisdemir University , Niğde , Turkey.

Department of Biotechnology, Faculty of Science, Necmettin Erbakan University , Konya , Turkey.

出版信息

Turk J Biol. 2018 Apr 27;42(2):174-186. doi: 10.3906/biy-1710-71. eCollection 2018.

Abstract

Insect pests are among the major constraints rendering drastic decreases in crop yield. The expression of stacked insecticidal genes in crops can lead to resistance durability and can delay the development of resistance in target insect pests. The present study was designed to introduce an insect resistance trait in locally cultivated Turkish tobacco cultivars (Basma and Nail) with pyramided insecticidal genes. Agrobacterium strain LBA4404 harboring plasmid pKGH4 with cry1Ac and cry2A genes under the control of 35S promoter was used to infect leaf discs of both cultivars; plasmid also contained uidA within the T-DNA region for earlier screening of putative transformants. The overall transformation efficiency was calculated as 30.7% and 18.8% in Basma and Nail, respectively. PCR results confirmed the integration of cry1Ac, cry2A, uidA, and nptII genes in 40 plants of Basma and 16 plants of Nail. ELISA results showed variation in expression of cry1Ac protein among transgenic plants varying from 0.017 to 0.607 µg/g of fresh tissue. Bioassay results with potato tuber moth (Phthorimea operculella Zeller) showed significant mortality of the targeted pest on primary transformants. Furthermore, T1 transgenic progeny exhibited the inheritance of T-DNA in Mendelian as well as non-Mendelian fashion. The results revealed that lines can serve as a source of germplasm in tobacco breeding programs.

摘要

害虫是导致作物产量大幅下降的主要制约因素之一。在作物中表达多个杀虫基因可使抗性持久,并能延缓目标害虫抗性的发展。本研究旨在通过导入多个杀虫基因,赋予当地种植的土耳其烟草品种(巴斯马和奈尔)抗虫特性。携带质粒pKGH4的根癌农杆菌菌株LBA4404用于感染这两个品种的叶片圆盘,该质粒在35S启动子控制下含有cry1Ac和cry2A基因;质粒在T-DNA区域内还含有uidA基因,用于早期筛选假定的转化体。在巴斯马和奈尔品种中,总体转化效率分别计算为30.7%和18.8%。PCR结果证实了cry1Ac、cry2A、uidA和nptII基因整合到了40株巴斯马植株和16株奈尔植株中。ELISA结果显示,转基因植株中cry1Ac蛋白的表达量有所不同,范围为0.017至0.607μg/g鲜组织。用马铃薯块茎蛾(Phthorimea operculella Zeller)进行的生物测定结果表明,在初级转化体上目标害虫有显著死亡率。此外,T1转基因后代以孟德尔和非孟德尔方式表现出T-DNA的遗传。结果表明,这些株系可作为烟草育种计划中的种质资源。

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New Technologies for Insect-Resistant and Herbicide-Tolerant Plants.抗虫和耐除草剂植物的新技术。
Trends Biotechnol. 2016 Jan;34(1):49-57. doi: 10.1016/j.tibtech.2015.10.006. Epub 2015 Nov 24.
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Agrobacterium: nature's genetic engineer.农杆菌:自然界的基因工程师。
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