Identification of resistance to corn-borer of transgenic maize inbred lines and hybrids with GFM Cry1A gene.

Y. Ying, Lin Xiao-hui, Kong Xiang-mei, Jia Zhi-lei, Lin Chun-Jing, L. Cong-cong, Liu Na, Sun Chuan-bo, Li De-pu
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引用次数: 3

Abstract

Six transgenic maize lines with the fully modified gene GFM Cry1A were obtained and polymerase chain reaction (PCR) analysis of their T 5 generation plants indicated that foreign genes could be stably inherited. Three hybrids (Simi25 Bt , Tongdan24 Bt and Jidan209 Bt ) were created using the transgenic lines and combined with regular maize inbred lines. The results of resistance identification of the transgenic inbred lines and hybrids showed that the difference of resistance among transgenic lines was very significant; there also existed a difference among individuals of the same line and among the three hybrids. Compared with the control inbred line (CK), the average of four transgenic inbred lines in the number of tunnels per stalk, larval tunnel length per plant and length of surviving larvae were decreased by 70%, 80% and 70%, respectively. Enzyme-linked immunosorbent assay (ELISA) testing showed that the average of Bt Cry1A protein expression level for six transgenic inbred lines was 0.16% total protein and the highest expression level was 0.19%. At maturity, compared with the control variety (CK), the larval tunnel length per plant of the three hybrids (Simi25 Bt , Tongdan24 Bt and Jidan209 Bt ) was decreased by 39.97%, 36.20% and 53.83%, respectively, which was a decrease of 43.36% on average. The investigation of agronomic characters showed that there was no significant difference between the improved hybrids and the control in plant height, ear length, row number per ear, kernel number per row and 100-kernels weight. It is thought that the GFM Cry1A gene can be applied to improve resistance to corn-borer, and maize inbred lines with the Bt gene can be directly applied to conventional maize breeding.
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转GFM Cry1A基因玉米自交系及杂交种对玉米螟的抗性鉴定。
获得了6个完全修饰基因GFM Cry1A的转基因玉米品系,并对其t5代植株进行了聚合酶链反应(PCR)分析,结果表明外源基因可以稳定遗传。利用转基因玉米自交系与普通玉米自交系组合,获得了3个杂交品种(simi25bt、同单24bt和吉单209bt)。对转基因自交系和杂交种的抗性鉴定结果表明,转基因系间的抗性差异非常显著;同一品系个体间和三个杂交种间也存在差异。与对照自交系(CK)相比,4个转基因自交系在单茎隧道数、单株幼虫隧道长度和存活幼虫长度上平均分别降低70%、80%和70%。酶联免疫吸附试验(ELISA)检测表明,6个转基因自交系的Cry1A蛋白平均表达量为总蛋白的0.16%,最高表达量为0.19%。成熟期,与对照品种(CK)相比,3个杂交品种(司米25 Bt、同单24 Bt和吉单209 Bt)单株幼虫隧道长度分别减少了39.97%、36.20%和53.83%,平均减少了43.36%。农艺性状调查表明,改良杂交种在株高、穗长、穗行数、行粒数和百粒重等性状上与对照无显著差异。认为GFM Cry1A基因可用于提高玉米对螟虫的抗性,携带Bt基因的玉米自交系可直接应用于常规玉米育种。
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