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首页> 外文期刊>Plant Molecular Biology >Transgenic Rice Plants Expressing the Antifungal AFP Protein from Aspergillus Giganteus Show Enhanced Resistance to the Rice Blast Fungus Magnaporthe Grisea
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Transgenic Rice Plants Expressing the Antifungal AFP Protein from Aspergillus Giganteus Show Enhanced Resistance to the Rice Blast Fungus Magnaporthe Grisea

机译:表达来自大型曲霉的抗真菌AFP蛋白的转基因水稻植株对稻瘟病菌Magnaporthe Grisea的抗性增强

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摘要

The Aspergillus giganteus antifungal protein (AFP), encoded by the afp gene, has been reported to possess in vitro antifungal activity against various economically important fungal pathogens, including the rice blast fungus Magnaporthe grisea. In this study, transgenic rice (Oryza sativa) constitutively expressing the afp gene was generated by Agrobacterium-mediated transformation. Two different DNA constructs containing either the afp cDNA sequence from Aspergillus or a chemically synthesized codon-optimized afp gene were introduced into rice plants. In both cases, the DNA region encoding the signal sequence from the tobacco AP24 gene was N-terminally fused to the coding sequence of the mature AFP protein. Transgenic rice plants showed stable integration and inheritance of the transgene. No effect on plant morphology was observed in the afp-expressing rice lines. The inhibitory activity of protein extracts prepared from leaves of afp plants on the in vitro growth of M. grisea indicated that the AFP protein produced by the trangenic rice plants was biologically active. Several of the T2 homozygous afp lines were challenged with M. grisea in a detached leaf infection assay. Transformants exhibited resistance to rice blast at various levels. Altogether, the results presented here indicate that AFP can be functionally expressed in rice plants for protection against the rice blast fungus M. grisea.
机译:据报道,由afp基因编码的硕大曲霉抗真菌蛋白(AFP)具有针对各种经济上重要的真菌病原体,包括稻瘟病菌Magnaporthe grisea的体外抗真菌活性。在这项研究中,组成性表达afp基因的转基因水稻(Oryza sativa)是通过农杆菌介导的转化产生的。将包含来自曲霉的afp cDNA序列或化学合成的密码子优化的afp基因的两种不同的DNA构建体引入水稻植株。在两种情况下,编码来自烟草AP24基因的信号序列的DNA区域都在N末端与成熟AFP蛋白的编码序列融合。转基因水稻植物显示出稳定的整合和转基因遗传。在表达afp的水稻品系中未观察到对植物形态的影响。从afp植物叶片制备的蛋白质提取物对稻瘟病菌体外生长的抑制活性表明,转基因水稻植物产生的AFP蛋白具有生物活性。在分离的叶片感染试验中,数个T2 纯合afp系用稻瘟病菌攻击。转化子对稻瘟病表现出不同水平的抗性。总体而言,此处给出的结果表明AFP可以在水稻植物中功能表达,以保护稻瘟病菌M. grisea。

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