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黄花烟是一个合适的瞬时表达系统,可用于高水平表达棉花象甲α-淀粉酶的活性抑制剂。

Nicotiana benthamiana is a suitable transient system for high-level expression of an active inhibitor of cotton boll weevil α-amylase.

机构信息

Embrapa Genetic Resources and Biotechnology, Brasília, DF, Brazil.

Catholic University of Brasília, Brasília, DF, Brazil.

出版信息

BMC Biotechnol. 2019 Mar 8;19(1):15. doi: 10.1186/s12896-019-0507-9.

Abstract

BACKGROUND

Insect resistance in crops represents a main challenge for agriculture. Transgenic approaches based on proteins displaying insect resistance properties are widely used as efficient breeding strategies. To extend the spectrum of targeted pathogens and overtake the development of resistance, molecular evolution strategies have been used on genes encoding these proteins to generate thousands of variants with new or improved functions. The cotton boll weevil (Anthonomus grandis) is one of the major pests of cotton in the Americas. An α-amylase inhibitor (α-AIC3) variant previously developed via molecular evolution strategy showed inhibitory activity against A. grandis α-amylase (AGA).

RESULTS

We produced in a few days considerable amounts of α-AIC3 using an optimised transient heterologous expression system in Nicotiana benthamiana. This high α-AIC3 accumulation allowed its structural and functional characterizations. We demonstrated via MALDI-TOF MS/MS technique that the protein was processed as expected. It could inhibit up to 100% of AGA biological activity whereas it did not act on α-amylase of two non-pathogenic insects. These data confirmed that N. benthamiana is a suitable and simple system for high-level production of biologically active α-AIC3. Based on other benefits such as economic, health and environmental that need to be considerate, our data suggested that α-AIC3 could be a very promising candidate for the production of transgenic crops resistant to cotton boll weevil without lethal effect on at least two non-pathogenic insects.

CONCLUSIONS

We propose this expression system can be complementary to molecular evolution strategies to identify the most promising variants before starting long-lasting stable transgenic programs.

摘要

背景

作物的抗虫性是农业面临的主要挑战之一。基于具有抗虫特性的蛋白质的转基因方法被广泛用作有效的育种策略。为了扩大目标病原体的范围并克服抗性的发展,已经在编码这些蛋白质的基因上使用分子进化策略来产生数千种具有新功能或改进功能的变体。棉铃象鼻虫(Anthonomus grandis)是美洲棉花的主要害虫之一。先前通过分子进化策略开发的一种α-淀粉酶抑制剂(α-AIC3)变体对 A. grandis α-淀粉酶(AGA)表现出抑制活性。

结果

我们使用优化的瞬时异源表达系统在 Nicotiana benthamiana 中几天内生产了相当数量的 α-AIC3。这种高α-AIC3 积累允许对其进行结构和功能表征。我们通过 MALDI-TOF MS/MS 技术证明该蛋白如预期那样被加工。它可以抑制高达 100%的 AGA 生物活性,而对两种非致病昆虫的α-淀粉酶没有作用。这些数据证实了 Nicotiana benthamiana 是一种适合且简单的系统,可用于高水平生产具有生物活性的α-AIC3。基于需要考虑的其他益处,如经济、健康和环境,我们的数据表明,α-AIC3 可能是生产对棉铃象鼻虫具有抗性的转基因作物的非常有前途的候选物,而对至少两种非致病昆虫没有致命影响。

结论

我们提出该表达系统可以与分子进化策略互补,在开始持久的稳定转基因计划之前,可以识别最有前途的变体。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ca17/6408794/058222e6787c/12896_2019_507_Fig1_HTML.jpg

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