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评价携带密码子修饰的 Vip3Aa 的转基因鹰嘴豆对棉铃虫(Helicoverpa armigera H.)的抗性。

Evaluation of transgenic chickpea harboring codon-modified Vip3Aa against gram pod borer (Helicoverpa armigera H.).

机构信息

Division of Plant Biotechnology, ICAR-Indian Institute of Pulses Research, Kanpur, Uttar Pradesh, India.

Department of Molecular and Cellular Engineering, Jacob Institute of Biotechnology and Bioengineering, SHUATS, Prayagraj, Uttar Pradesh, India.

出版信息

PLoS One. 2022 Jun 24;17(6):e0270011. doi: 10.1371/journal.pone.0270011. eCollection 2022.

Abstract

The gram pod borer is a major pest of chickpea, accounting for average annual yield losses to the tune of 40-50%. VIP3Aa, a class of insecticidal protein with different receptor binding site in the insect's midgut compared to Bt-crystal protein, offers an alternative protection strategy against Lepidopteran insects. Here, we report evaluation of genetically engineered chickpea lines harboring codon modified Vip3Aa (cmVip3Aa) against the Lepidopteran insect pest, gram pod borer. The synthetic codon modified, cmVip3Aa gene of 2,370 bp was sub-cloned in modified plant expression vector and used for direct transformation of embryonic axis explants of chickpea (cv. DCP 92-3), with transformation efficiency of 4.30%. Presence and transmission of transgene across two generations were confirmed by PCR and Southern blot analyses in the five selected transgenic chickpea lines. Real Time PCR analyses indicated variable levels of cmVip3Aa expression in the transgenic chickpea lines (average Cq values 15.01±0.86 to 19.32±0.10), which were absent in the non-transgenic counterpart. Detached leaf insect bioassay indicate larval mortality (up to 39.75%), reduced larval feeding (up to 82.91%) and reduced larval weight gain (up to 68.23%), compared to control lines. Evaluation of gene offers a platform to identify efficacious insecticidal gene that can be used for insect resistance management in chickpea.

摘要

豆荚野螟是鹰嘴豆的主要害虫,平均每年造成 40-50%的产量损失。VIP3Aa 是一类杀虫蛋白,与 Bt 晶体蛋白相比,其在昆虫肠道中的受体结合位点不同,为鳞翅目昆虫提供了一种替代的保护策略。在这里,我们报告了对携带密码子修饰 Vip3Aa(cmVip3Aa)的基因工程鹰嘴豆品系(cv. DCP 92-3)针对鳞翅目昆虫害虫豆荚野螟的评价。合成的密码子修饰的 2370bp cmVip3Aa 基因被亚克隆到改良的植物表达载体中,并用于直接转化鹰嘴豆胚胎轴外植体,转化率为 4.30%。通过 PCR 和 Southern blot 分析在五个选定的转基因鹰嘴豆品系中证实了转基因的存在和跨两代的传递。实时 PCR 分析表明,转基因鹰嘴豆品系中 cmVip3Aa 的表达水平不同(平均 Cq 值为 15.01±0.86 至 19.32±0.10),而非转基因品系中则不存在。离体叶片昆虫生物测定表明,与对照品系相比,幼虫死亡率(高达 39.75%)、幼虫取食减少(高达 82.91%)和幼虫体重增加减少(高达 68.23%)。该基因的评估为鉴定有效的杀虫基因提供了一个平台,可用于鹰嘴豆的昆虫抗性管理。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a633/9231776/a1b49287c451/pone.0270011.g001.jpg

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