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γ-氨基丁酸提高园艺产品采后适销性:进展与展望

γ-Aminobutyrate Improves the Postharvest Marketability of Horticultural Commodities: Advances and Prospects.

作者信息

Aghdam Morteza Soleimani, Flaherty Edward J, Shelp Barry J

机构信息

Department of Horticultural Science, Imam Khomeini International University, Qazvin, Iran.

Department of Plant Agriculture, University of Guelph, Guelph, ON, Canada.

出版信息

Front Plant Sci. 2022 May 25;13:884572. doi: 10.3389/fpls.2022.884572. eCollection 2022.

Abstract

Postharvest deterioration can result in qualitative and quantitative changes in the marketability of horticultural commodities, as well as considerable economic loss to the industry. Low temperature and controlled atmosphere conditions (low O and elevated CO) are extensively employed to prolong the postharvest life of these commodities. Nevertheless, they may suffer from chilling injury and other physiological disorders, as well as excessive water loss and bacterial/fungal decay. Research on the postharvest physiological, biochemical, and molecular responses of horticultural commodities indicates that low temperature/controlled atmosphere storage is associated with the promotion of γ-aminobutyrate (GABA) pathway activity, with or without the accumulation of GABA, delaying senescence, preserving quality and ameliorating chilling injury. Regardless of whether apple fruits are stored under low temperature/controlled atmosphere conditions or room temperature, elevated endogenous GABA or exogenous GABA maintains their quality by stimulating the activity of the GABA shunt (glutamate GABA succinic semialdehyde succinate) and the synthesis of malate, and delaying fruit ripening. This outcome is associated with changes in the genetic and biochemical regulation of key GABA pathway reactions. Flux estimates suggest that the GABA pool is derived primarily from glutamate, rather than polyamines, and that succinic semialdehyde is converted mainly to succinate, rather than γ-hydroxybutyrate. Exogenous GABA is a promising strategy for promoting the level of endogenous GABA and the activity of the GABA shunt in both intact and fresh-cut commodities, which increases carbon flux through respiratory pathways, restores or partially restores redox and energy levels, and improves postharvest marketability. The precise mechanisms whereby GABA interacts with other signaling molecules such as Ca, HO, polyamines, salicylic acid, nitric oxide and melatonin, or with phytohormones such as ethylene, abscisic acid and auxin remain unknown. The occurrence of the aluminum-activated malate transporter and the glutamate/aspartate/GABA exchanger in the tonoplast, respectively, offers prospects for reducing transpirational water in cut flowers and immature green fruit, and for altering the development, flavor and biotic resistance of apple fruits.

摘要

采后变质会导致园艺产品在适销性方面出现质和量的变化,给该行业造成相当大的经济损失。低温和控制气氛条件(低氧和高二氧化碳)被广泛用于延长这些产品的采后寿命。然而,它们可能会遭受冷害和其他生理失调,以及过度失水和细菌/真菌腐烂。对园艺产品采后生理、生化和分子反应的研究表明,低温/控制气氛贮藏与γ-氨基丁酸(GABA)途径活性的促进有关,无论是否有GABA的积累,都能延缓衰老、保持品质并减轻冷害。无论苹果果实是在低温/控制气氛条件下还是在室温下贮藏,内源性GABA升高或外源性GABA都通过刺激GABA分流(谷氨酸→GABA→琥珀酸半醛→琥珀酸)的活性和苹果酸的合成来保持其品质,并延缓果实成熟。这一结果与关键GABA途径反应的遗传和生化调控变化有关。通量估计表明,GABA库主要来源于谷氨酸,而非多胺,琥珀酸半醛主要转化为琥珀酸,而非γ-羟基丁酸。外源性GABA是一种有前景的策略,可提高完整和鲜切产品中内源性GABA的水平和GABA分流的活性,增加通过呼吸途径的碳通量,恢复或部分恢复氧化还原和能量水平,并提高采后适销性。GABA与其他信号分子如钙、过氧化氢、多胺、水杨酸、一氧化氮和褪黑素相互作用,或与植物激素如乙烯、脱落酸和生长素相互作用的确切机制仍不清楚。液泡膜中分别出现铝激活的苹果酸转运体和谷氨酸/天冬氨酸/GABA交换体,为减少切花和未成熟绿色果实的蒸腾失水,以及改变苹果果实的发育、风味和生物抗性提供了前景。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/02a1/9174936/e080c442456f/fpls-13-884572-g001.jpg

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