二氢-基因调节机制和转录因子Hy5外源5-氨基酸在秋葵芽芽甘蓝预言中的转录因子

Н. Г. Аверина, А. В. Емельянова, Т. Г. Каляга, С. М. Савина
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引用次数: 1

摘要

研究了外源5-氨基乙酰丙酸(ALA)对油菜二氢黄酮醇-4还原酶(DFR)活性、DFR基因和转录因子hy5基因表达的影响,以及不同光照强度与ALA联合作用对油菜子叶花青素积累的影响。结果表明,在外源ALA作用下,通过提高dfr和hy5基因的表达水平和dfr酶的活性,在分子水平上促进了花青素的积累。光强从40.5 μmol光子/ m2·s增加到66.2 μmol光子/ m2·s,植物积累花青素的能力平均提高35%。在50,100,150和200mg /L的浓度下,ALA的作用导致花青素在两种使用的光照水平下的额外积累增加,并且呈剂量依赖性。高光强下ALA的刺激作用远高于低照度下。因此,在40.5 μmol光子/ m2·s光照下,与不加ALA处理的光对照相比,50mg /L ALA对花青素积累的刺激作用为106%,100mg /L ALA为165%,150mg /L ALA为222%,200mg /L ALA为350%。在66.2 μmol光子/ m2·s光照下,这些指标分别为164、262、359和583%。由此可见,在ALA的作用下,冬油菜花青素的积累是由于其在分子水平上对dfr和hy5基因的转录产生了积极的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Молекулярно-генетические механизмы регуляции дигидрофлавонол редуктазы и транскрипционного фактора Hy5 экзогенной 5-аминолевулиновой кислотой в проростках озимого рапса
The effect of exogenous 5-aminolevulinic acid (ALA) on the activity of dihydroflavonol-4-reductase (DFR), the expression of the dfr gene and the hy5 gene of the transcription factor Hy5 and the light effect of different intensities in combination with the ALA action on the accumulation of anthocyanins in cotyledonous leaves of winter rape (Brassica napus L.) were studied. It was shown that the stimulation of the accumulation of anthocyanins under the exogenous ALA action at the molecular level was provided by increasing the expression level of the dfr and hy5 genes and the activity of the DFR enzyme. Increasing the light intensity from 40.5 to 66.2 μmol photons/m 2 ·s enhanced the ability of plants to accumulate anthocyanins on average by 35 %. The ALA action at concentrations of 50, 100, 150 and 200 mg/L led to an additional increase in the accumulation of anthocyanins at the two used levels of illumination, and in a dose-dependent manner. The stimulating effect of ALA under high light intensity was much higher than in the case of lower illumination. Thus, the stimulation of the anthocyanin accumulation under illumination of 40.5 μmol photons/m 2 ·s was 106 % when using 50 mg/L ALA, 165 % – when using 100 mg/L ALA, 222 % – in the case of 150 mg/L ALA and 350 % – under the action of 200 mg/L ALA compared with light control without of ALA treatment. At an illumination of 66.2 μmol photons/m 2 ·s, these indicators were 164, 262, 359 and 583 % respectively. Thus, it was demonstrated that the stimulation of the accumulation of anthocyanins under the action of ALA in winter rape plants was due to its positive effect on the transcription of the dfr and hy5 genes at the molecular level.
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