首页> 外文期刊>Journal of Plant Growth Regulation >Overexpression of the Arginine Decarboxylase Gene Improves Tolerance to Salt Stress in Emphasis Type='Italic'>Lotus tenuis/Emphasis> Plants
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Overexpression of the Arginine Decarboxylase Gene Improves Tolerance to Salt Stress in Emphasis Type='Italic'>Lotus tenuis/Emphasis> Plants

机译:精氨酸脱羧酶基因的过度表达改善了对盐胁迫的耐受性。强调=“斜体”>莲藕& /重点>植物

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Abstract To analyse the putative effects of putrescine on the plant response to salinity, micropropagated Lotus tenuis plants from wild-type and transgenic lines harbouring the pRD29A::oat arginine decarboxylase (ADC, EC 4.1.1.19) construct were subjected to a gradual increase in salinity that was applied gradually by means of sodium chloride irrigation (from 0 to 0.3?mol?L_(?1)) every 5 days up to the maximum concentration. At the end of the experiment, the transgenic lines were healthier than the wild-type plants and displayed a smaller reduction in shoot biomass and a slight increase in root growth in response to stress. The overexpression of ADC increased osmotic adjustment (5.8-fold) via the release of proline. The salinity treatment doubled the potassium uptake by roots from transgenic ADC stressed plants with a concomitant decrease in the accumulation of sodium, balancing the Na_(+)/K_(+)ratio. Analysis of gene expression, enzymatic activities and hormone metabolism suggests a crosstalk between polyamines and abscisic acid in response to salinity via modulation of the abscisic acid biosynthesis-related enzyme 9- cis -epoxycarotenoid dioxygenase (EC 1.13.11.51) at the transcriptional level.
机译:摘要为了分析腐胺对植物对盐度反应的可能影响,来自野生型和转基因株系的微繁殖细莲花植株含有pRD29A::燕麦精氨酸脱羧酶(ADC,EC 4.1.1.19)结构,每5天通过氯化钠灌溉(从0到0.3?mol?L_1)逐渐增加盐度,直至达到最大浓度。在实验结束时,转基因株系比野生型植株更健康,表现出较小的地上部生物量减少和根系生长轻微增加。ADC的过度表达通过释放脯氨酸增加渗透调节(5.8倍)。盐分处理使转基因ADC胁迫植物根系吸收的钾增加了一倍,同时钠的积累减少,从而平衡了Na_(+)/K_(+)比率。对基因表达、酶活性和激素代谢的分析表明,在转录水平上,多胺和脱落酸之间通过调节脱落酸生物合成相关酶9-顺式-环氧类胡萝卜素双加氧酶(EC 1.13.11.51)对盐度的反应存在串扰。

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