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用赋予对(沃克氏菌)抗性的基因对L.进行遗传转化。

Genetic Transformation of L. with the Gene Confers Resistance to (Walker).

作者信息

Chen Lin, Wang Pei, Tan Lixia, Li Houhua, Wang Dun

机构信息

College of Plant Protection, Yangzhou University, Yangzhou 225009, China.

State Key Laboratory of Crop Stress Biology for Arid Areas, College of Plant Protection, Northwest A&F University, Yangling, Xianyang 712100, China.

出版信息

Plants (Basel). 2024 Dec 20;13(24):3568. doi: 10.3390/plants13243568.

Abstract

L. is a popular ornamental plant in the genus Torenia, widely used in commercial landscaping, especially during the summer. Additionally, Torenia has served as a model ornamental plant in many studies exploring ornamental characteristics and pest control through genetic engineering. To date, no research has been reported on developing insect-resistant Torenia expressing genes from (Bt). In this study, a recombinant vector carrying the gene from Bt, pBI121-, was constructed and transferred into via -mediated transformation. A total of 13 shoots survived on the kanamycin selection medium, among which four putative transgenic lines, designated L1, L2, L7, and L11, were molecularly confirmed by PCR and Southern blot analysis, indicating successful integration of the gene into the genomes of these lines. Quantitative real-time PCR and ELISA results further verified the successful expression of the gene in the leaves of all four transgenic lines. Insect bioassay results demonstrated that all four transgenic lines showed strong resistance to the insect pest, , with mortality rates ranging from 59.9% to 100.0%, in contrast to a larval mortality rate of 16.2% in the wild-type Torenia. Additionally, these transgenic lines significantly decreased in larval survival rates compared to those fed on wild-type plants. Furthermore, these transgenic lines activated superoxide dismutase (SOD) activity at 12 and 24 h, and catalase (CAT) activity at 72 h, while suppressing SOD activity at 72 h, and peroxidase (POD) activity over time. Our findings indicate that these transgenic lines exhibit high resistance to the insect pest and provide new insights into controlling insect pests in ornamental plants through genetic approaches.

摘要

蓝猪耳是蓝猪耳属一种广受欢迎的观赏植物,广泛应用于商业园林景观,尤其是在夏季。此外,在许多通过基因工程探索观赏特性和害虫防治的研究中,蓝猪耳已作为模式观赏植物。迄今为止,尚未有关于培育表达苏云金芽孢杆菌(Bt)基因的抗虫蓝猪耳的研究报道。在本研究中,构建了携带Bt基因的重组载体pBI121-Bt,并通过农杆菌介导的转化将其转入蓝猪耳。共有13个芽在卡那霉素选择培养基上存活,其中4个推定的转基因株系,命名为L1、L2、L7和L11,通过PCR和Southern杂交分析进行了分子鉴定,表明Bt基因成功整合到这些株系的基因组中。定量实时PCR和ELISA结果进一步证实了Bt基因在所有4个转基因株系叶片中的成功表达。昆虫生物测定结果表明,所有4个转基因株系对害虫斜纹夜蛾均表现出较强抗性,死亡率在59.9%至100.0%之间,相比之下野生型蓝猪耳的幼虫死亡率为16.2%。此外,与取食野生型植株的幼虫相比,这些转基因株系的幼虫存活率显著降低。此外,这些转基因株系在12小时和24小时时激活了超氧化物歧化酶(SOD)活性,在72小时时激活了过氧化氢酶(CAT)活性,同时随着时间的推移抑制了72小时时的SOD活性和过氧化物酶(POD)活性。我们的研究结果表明,这些转基因株系对害虫具有高度抗性,并为通过基因方法控制观赏植物中的害虫提供了新的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/948c/11678925/935e7051c639/plants-13-03568-g001.jpg

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