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Transgenic ipt tobacco overproducing cytokinins overaccumulates phenolic compounds during in vitro growth.

机译:转基因ipt烟草过量生产的细胞分裂素在体外生长过程中会过度积累酚类化合物。

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We present evidence that overproduction of endogenous cytokinins (CK) caused stress response in non-rooting Pssu-ipt transgenic tobacco (Nicotiana tabacum L.) grown in vitro. It was demonstrated by overaccumulation of phenolic compounds, synthesis of pathogenesis related proteins (PR proteins), and increase in peroxidase (POD) activities. Immunolocalization of zeatin and also PR-1b protein on leaf cryo-sections proved their accumulation in all mesophyll cells of transgenic tobacco contrary to control non-transgenic plants. Intensive blue autofluorescence of phenolic compounds induced by UV in cross-sections of leaf midrib showed enhanced contents of phenolics in transgenic tobacco compared with controls, nevertheless, no significant difference between both plant types was found in leaf total lignin content. Transgenic plantlets exhibited higher peroxidase activities of both soluble and ionically bound fractions compared with controls. HPLC analysis of phenolic acids confirmed the increase in all phenolic acids in transgenic tobacco except for salicylic acid (SA). The effect of high phenolic content on rooting of transgenic tobacco is discussed..
机译:我们目前的证据表明,内源性细胞分裂素(CK)的过度生产会在体外生长的无根Pssu-ipt转基因烟草(Nicotiana tabacum L.)中引起应激反应。酚类化合物的过度积累,发病相关蛋白(PR蛋白)的合成以及过氧化物酶(POD)活性的增加证明了这一点。玉米蛋白和PR-1b蛋白在叶片冰冻切片上的免疫定位证明了它们在转基因烟草的所有叶肉细胞中的积累,这与对照非转基因植物相反。叶片中脉横断面中紫外线诱导的酚类化合物的强烈蓝色自发荧光显示,与对照相比,转基因烟草中酚类化合物的含量增加,但是,两种植物的叶片中总木质素含量没有显着差异。与对照相比,转基因小植株在可溶性和离子结合级分中均表现出更高的过氧化物酶活性。酚酸的HPLC分析证实,除水杨酸(SA)外,转基因烟草中所有酚酸的含量均增加。讨论了高酚含量对转基因烟草生根的影响。

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