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首页> 外文期刊>Plant Science: An International Journal of Experimental Plant Biology >Exogenous abscisic acid enhances physiological, metabolic, and transcriptional cold acclimation responses in greenhouse-grown grapevines
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Exogenous abscisic acid enhances physiological, metabolic, and transcriptional cold acclimation responses in greenhouse-grown grapevines

机译:外源性脱落酸在温室生长的葡萄树中增强生理,代谢和转录冷置响应

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Previous studies have demonstrated that the freezing tolerance (FT) of grapevine was enhanced by foliar application of exogenous abscisic acid (exo-ABA), a treatment which might be incorporated into cultural practices to mitigate cold damage in vineyards. To investigate the underlying mechanisms of this response, a two-year (2017 and 2018) study was conducted to characterize the effects of exo-ABA on greenhouse-grown 'Cabernet franc' grapevine. In control grapevines, both physiological (deeper dormancy) and biochemical (sugar accumulation in buds) changes occurred, indicating that grapevines initiated cold acclimation in the greenhouse. Compared to control, exo-ABA decreased stomatal conductance 2 h after application. Two weeks post application, exo-ABA treated grapevines showed accelerated transition of grapevine physiology during cold acclimation (increased depth of dormancy, decreased bud water content and enhanced bud FT), relative to control. Exo-ABA induced the accumulation of several sugars in buds including the raffinose family oligosaccharides (RFOs), and the RFO precursor, galactinol. The expression of raffinose and galactinol synthase genes was higher in exo-ABA treated grapevine buds, compared to control. The new findings from this study have advanced our understanding of the role of ABA in grapevine FT, which will be useful to develop future strategies to protect grapevines from cold damage.
机译:以前的研究表明,通过叶面缺陷(EXO-ABA)的叶面施用,葡萄葡萄树的冷冻耐受性(FT),一种可能纳入文化惯例,以减轻葡萄园的冷损伤。为了调查这种反应的基本机制,进行了两年(2017年和2018年)研究,以表征EXO-ABA对温室增长的“赤霞珠法郎”葡萄树的影响。在对照葡萄中,发生生理(更深的休眠)和生物化学(芽中的糖积聚)发生变化,表明葡萄在温室中发起了冷的适应性。与对照相比,在施用后,EXO-ABA减少了2小时的气孔电导率。申请后两周,EXO-ABA治疗的葡萄藤在冷驯化过程中显示出加速转变葡萄生理学(增加休眠深度,降低芽水含量和增强的芽FT)。 EXO-ABA诱导芽中几种糖的积累,包括棉子糖家族寡糖(RFO)和RFO前体,半乳糖醇。与对照相比,EXO-ABA处理的葡萄葡萄芽芽蛋糖和半乳糖醇合成酶基因的表达较高。这项研究的新发现推进了我们对ABA在葡萄FT中的作用的理解,这将有助于制定未来的策略来保护葡萄伤害寒伤。

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