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ZmDEF1基因的过表达增强了转基因玉米种子对象鼻虫幼虫的抗性。

Overexpression of the ZmDEF1 gene increases the resistance to weevil larvae in transgenic maize seeds.

作者信息

Vi Thi Xuan Thuy, Nguyen Thi Ngoc Lan, Pham Thi Thanh Nhan, Nguyen Huu Quan, Nguyen Thi Hai Yen, Tu Quang Tan, Le Van Son, Chu Hoang Mau

机构信息

Department of Genetics & Modern Biology, School of Biology, Thai Nguyen University of Education, 20-Luong Ngoc Quyen, Thai Nguyen, Vietnam.

Department of Bology, Tay Bac University, Son La, Vietnam.

出版信息

Mol Biol Rep. 2019 Apr;46(2):2177-2185. doi: 10.1007/s11033-019-04670-5. Epub 2019 Feb 23.

Abstract

Plant defensins are divided into 18 groups and are multifunctional proteins. The Zea mays defensin 1 (ZmDEF1) gene encodes the defensin 1 protein, which can inhibit alpha-amylase in the insect gut. In this study, the ZmDEF1 gene was transferred into two maize cultivars, LC1 and LVN99, to improve weevil resistance in maize. The recombinant ZmDEF1 protein was assessed for its ability to inhibit alpha-amylase in the gut of the larvae of the maize weevil (Sitophilus zeamais Motsch.). ZmDEF1 was cloned into a pBetaPhaso-dest vector, which harbours phaseolin, a seed-specific promoter, and the Agrobacterium tumefaciens strain C58 harbouring the pBetaPhaso-ZmDEF1 vector was used to transfer the ZmDEF1 gene into two maize cultivars using immature embryos. Transformed calluses were selected on selection media containing kanamycin. The stable integration of the ZmDEF1 transgene into the transgenic maize plant genome was confirmed using Southern blotting. The recombinant ZmDEF1 protein of approximately 10 kDa was expressed in three transgenic maize lines from the LC1 cultivar (C1, C3, and C5) and two transgenic maize lines from the LVN99 cultivar (L1 and L3). The ZmDEF1 transgenic efficiency based on the results of PCR, as well as Southern and Western blotting, was 1.32% and 0.82%, respectively, which depends on the genotypes of LC1 and LVN99. The recombinant ZmDEF1 protein inhibited the alpha-amylase activity of the maize weevil larvae, and its ability to inhibit alpha-amylase is 54.52-63.09% greater than the ZmDEF1 protein extracted from non-transgenic plants.

摘要

植物防御素分为18组,是多功能蛋白质。玉米防御素1(ZmDEF1)基因编码防御素1蛋白,该蛋白可抑制昆虫肠道中的α-淀粉酶。在本研究中,将ZmDEF1基因转入两个玉米品种LC1和LVN99中,以提高玉米对象鼻虫的抗性。评估了重组ZmDEF1蛋白抑制玉米象(Sitophilus zeamais Motsch.)幼虫肠道中α-淀粉酶的能力。将ZmDEF1克隆到一个携带菜豆蛋白(一种种子特异性启动子)的pBetaPhaso-dest载体中,并使用携带pBetaPhaso-ZmDEF1载体的根癌农杆菌菌株C58,利用未成熟胚将ZmDEF1基因转入两个玉米品种中。在含有卡那霉素的选择培养基上筛选转化愈伤组织。使用Southern杂交法确认ZmDEF1转基因在转基因玉米植物基因组中的稳定整合。在来自LC1品种的三个转基因玉米株系(C1、C3和C5)和来自LVN99品种的两个转基因玉米株系(L1和L3)中表达了约10 kDa的重组ZmDEF1蛋白。基于PCR以及Southern和Western杂交结果的ZmDEF1转基因效率分别为1.32%和0.82%,这取决于LC1和LVN99的基因型。重组ZmDEF1蛋白抑制了玉米象幼虫的α-淀粉酶活性,其抑制α-淀粉酶的能力比从非转基因植物中提取的ZmDEF1蛋白高54.52 - 63.09%。

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