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Genetic studies of transgenic rice plants overproducing an antibacterial peptide show that a high level of transgene expression did not cause inferior effects on host plants

机译:对过量生产抗菌肽的转基因水稻植物进行的遗传研究表明,高水平的转基因表达不会对寄主植物产生不良影响

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摘要

Overexpression of an oat thionin gene (Asthil) confers enhanced disease resistance of rice (a cultivar "Chiyohonami") against seed-transmitted phytopathogenic bacteria. The isolated paddy field test for evaluation of agronomic traits using T4 transgenic rice plants which are homozygous with a high level of Asthil protein has shown that transgenic rice possesses, in addition to enhanced anti-bacterial resistance, slight different characteristics compared with the original cultivar such as slight decrease in plant height, grain yield and simultaneity in heading behavior in addition to 2 days earlier in heading date. To address whether this difference was caused by ectopic high level expression of the transgene, T4 plants were back-crossed with wild-type and selfed, and the progenies were analyzed. Almost all characteristics observed in the field were found to be genetically segregated. While only a limited number of plants were used, the present findings indicate that the altered characteristics found in transgenic plants were not attributable to integration of Asthil transgene or its high expression itself, but instead to possible spontaneous mutations which may have occurred during in vitro culture for Agrobacterium-mediated transformation.
机译:燕麦硫蛋白基因(Asthil)的过表达赋予水稻(品种“ Chiyohonami”)对种子传播的植物致病细菌增强的抗病性。使用纯合高Asthil蛋白水平的T4转基因水稻植株进行的水稻农艺性状分离水稻试验表明,转基因水稻除具有增强的抗细菌性外,还具有与原始栽培稻相比稍有不同的特性。除抽穗期提前两天外,株高,谷物产量和抽穗行为的同时性略有下降。为了解决这种差异是否是由于转基因的异位高水平表达引起的,将T4植物与野生型和自交回交,并分析了后代。发现该领域中观察到的几乎所有特征都是遗传分离的。虽然仅使用了少量植物,但本研究结果表明,转基因植物中改变的特征并非归因于Asthil转基因的整合或其本身的高表达,而是归因于体外培养过程中可能发生的自发突变用于农杆菌介导的转化。

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