首页> 外文OA文献 >Effects of the Suicide Inhibitors of Arginine and Ornithine Decarboxylase Activities on Organogenesis, Growth, Free Polyamine and Hydroxycinnamoyl Putrescine Levels in Leaf Explants of Nicotiana Xanthi n.c. Cultivated in Vitro in a Medium Producing Callus Formation
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Effects of the Suicide Inhibitors of Arginine and Ornithine Decarboxylase Activities on Organogenesis, Growth, Free Polyamine and Hydroxycinnamoyl Putrescine Levels in Leaf Explants of Nicotiana Xanthi n.c. Cultivated in Vitro in a Medium Producing Callus Formation

机译:精氨酸和鸟氨酸脱羧酶活性的自杀抑制剂对烟草黄单胞菌叶片外植体器官发生,生长,游离多胺和羟肉桂基腐胺水平的影响。在培养基产生的愈伤组织中进行体外培养

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摘要

We studied the effects of dl-α-difluoromethylarginine (DFMA) and dl-α-difluoromethylornithine (DFMO), specific, irreversible inhibitors of arginine decarboxylase (ADC) and ornithine decarboxylase (ODC), respectively, on organogenesis growth and titers of free polyamines and conjugated putrescines (hydroxycinnamoyl putrescines) in tobacco (Nicotiana tabacum cv Xanthi n.c.) calli. These results suggest that ADC and ODC regulate putrescine biosynthesis during early and later stages of tobacco callus development, respectively. ADC appears active in biosynthesis of large levels of free amines (agmatine and putrescine) while ODC appears active only in biosynthesis of large levels of putrescine conjugates (hydroxycinnamoyl putrescines). DFMA inhibits the fresh and dry weight increases of tobacco calli, whereas DFMO even promoted the fresh and dry weight increases, thus supporting the view that ADC is important for cell division and callus induction. Inhibition of ODC activity by DFMO resulting in an amide deficiency after 4 weeks of culture facilates the expression of differentiated cell functions. Formation of buds is associated with a significant decrease of hydroxycinnamoyl putrescines.
机译:我们研究了精氨酸脱羧酶(ADC)和鸟氨酸脱羧酶(ODC)的特异性,不可逆抑制剂dl-α-二氟甲基精氨酸(DFMA)和dl-α-二氟甲基鸟氨酸(DFMO)对器官发生生长和游离多胺效价的影响以及烟草(Nicotiana tabacum cv Xanthi nc)愈伤组织中的共轭腐胺(羟基肉桂酰腐胺)。这些结果表明,ADC和ODC分别在烟草愈伤组织发育的早期和后期分别调节腐胺的生物合成。 ADC在大量游离胺(胍丁胺和腐胺)的生物合成中似乎有活性,而ODC仅在大量腐胺结合物(羟基肉桂酰基腐胺)的生物合成中有活性。 DFMA抑制了烟草愈伤组织的鲜重和干重的增加,而DFMO甚至促进了鲜重和干重的增加,因此支持了ADC对于细胞分裂和愈伤组织诱导很重要的观点。培养4周后,DFMO对ODC活性的抑制导致酰胺缺乏,促进了分化细胞功能的表达。芽的形成与羟基肉桂酰腐胺的显着减少有关。

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