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Changes in free polyamine titers and expression of polyamine biosynthetic genes during growth of peach in vitro callus

机译:桃离体愈伤组织生长过程中游离多胺效价的变化和多胺生物合成基因的表达

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In the present paper, correlation between free polyamines and growth of peach (Prunus persica cv. Yuzora) in vitro callus was investigated. Growth of the callus was divided into three phases based on measurement of fresh weight. Free polyamines, putrescine (Put), spermidine (Spd), and spermine (Spm), could be detected during peach callus growth. Changes in free Put titers followed the callus growth rate, as shown by low and stable levels in the first stage, quick increase at the beginning of the second phase, and slow increase in the last phase, whereas fluctuations of Spd and Spm titers were aberrant from that of Put at early stage. Expressions of five key genes involved in polyamine biosynthesis were characterized, in which only the genes leading to Put synthesis, ADC (arginine decarboxylase) and ODC (ornithine decarboxylase), agreed with callus growth and fluctuation of Put titers. Treatment of the callus with D-arginine, an inhibitor of ADC, led to significant growth inhibition and enormous reduction of endogenous Put, coupled with obvious decrease of mRNA levels of ADC and ODC. Exogenous application of Put partially restored the callus growth, along with resumption of endogenous Put and expression levels of ADC and ODC. Spd and Spm titers experienced minor change in comparison to Put. The data presented here suggested that free Put played an important part in peach callus growth. Putative mechanisms or mode of action underlying the role of Put in peach callus growth and different expression patterns of the genes responsible for polyamine biosynthesis are also discussed.
机译:本文研究了游离多胺与桃(Prunus persica cv。Yuzora)离体愈伤组织生长之间的相关性。根据新鲜体重的测量,将愈伤组织的生长分为三个阶段。在桃愈伤组织生长期间,可以检测到游离的多胺,腐胺(Put),亚精胺(Spd)和亚精胺(Spm)。游离愈伤组织滴度的变化跟随愈伤组织的生长,如在第一阶段低而稳定的水平所示,在第二阶段开始时迅速增加,而在最后阶段缓慢上升,而Spd和Spm滴度的波动却异常与早期的Put相比。表征了参与多胺生物合成的五个关键基因的表达,其中只有导致Put合成的基因ADC(精氨酸脱羧酶)和ODC(鸟氨酸脱羧酶)与愈伤组织的生长和Put效价的波动相吻合。用ADC抑制剂D-精氨酸处理愈伤组织,可导致显着的生长抑制和内源性Put的大量减少,以及ADC和ODC的mRNA水平明显降低。外源施加Put可以部分恢复愈伤组织的生长,并恢复内源Put的恢复以及ADC和ODC的表达水平。与Put相比,Sdd和Spm滴度变化不大。此处提供的数据表明,游离Put在桃愈伤组织生长中发挥了重要作用。还讨论了Put在桃愈伤组织生长中所起的作用的潜在机制或作用方式,以及负责多胺生物合成的基因的不同表达方式。

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