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首页> 外文期刊>Physiological and Molecular Plant Pathology >The influence of carotenoid biosynthesis modification on the Fusarium culmorum and Fusarium oxysporum resistance in flax
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The influence of carotenoid biosynthesis modification on the Fusarium culmorum and Fusarium oxysporum resistance in flax

机译:类胡萝卜素生物合成修饰对亚麻镰刀菌和抗尖孢镰刀菌的影响

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Flax engineering to yield increased resistance to pathogens is the goal of this study. Since carotenoids act as antioxidants it is thus postulated that the accumulation of a higher quantity of these compounds in the transgenic plants might improve their resistance to pathogen infection.Our approach was based on the generation of transgenic flax overproducing carotene and analysis of its susceptibility to Fusarium infection. For transformation bacterial gene - crtB was used. As expected, transgenic plants showed increased resistance against pathogen infection.The impact of carotenoids on plant resistance to infection was verified by generation and analysis of transgenic flax with decreased content of carotene. The transgenic plants were obtained by suppression of endogenous flax gene coding for lycopene beta-cyclase. Plant analysis revealed decrease in carotene content, however, an unexpected increase in resistance against Fusarium infection was detected. Further analysis of metabolites in the plants revealed that an increase in accumulation of other terpenoids and tocopherols, squalene and menthol were among them. Thus, it is suggested that repression of carotene synthesis results in the redirecting of substrates to other branches of isoprenoids synthesis.We conclude that a general level of antioxidants rather than the presence of any particular compound is the most important factor in resistance of the flax plant to pathogen infection
机译:亚麻工程以提高对病原体的抵抗力是这项研究的目标。由于类胡萝卜素作为抗氧化剂,因此推测在转基因植物中积累大量这些化合物可能会提高其对病原体感染的抵抗力。我们的方法是基于产生过量生产胡萝卜素的转基因亚麻及其对镰刀菌敏感性的分析感染。为了转化细菌基因,使用了crtB。正如预期的那样,转基因植物显示出对病原体感染的抗性增强。通过减少胡萝卜素含量的转基因亚麻的产生和分析,证实了类胡萝卜素对植物抗感染性的影响。通过抑制编码番茄红素β-环化酶的内源亚麻基因获得转基因植物。植物分析显示胡萝卜素含量降低,但是,发现对镰刀菌感染的抗性出乎意料的增加。对植物中代谢物的进一步分析表明,其中的其他萜类化合物和生育酚,角鲨烯和薄荷醇的积累量也在增加。因此,建议抑制胡萝卜素的合成导致底物重定向到类异戊二烯合成的其他分支。我们得出结论,一般水平的抗氧化剂而不是任何特定化合物的存在是亚麻植物抗性的最重要因素。病原体感染

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