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Modulatory Effects of Exogenously Applied Polyamines on Postharvest Physiology Antioxidant System and Shelf Life of Fruits: A Review

机译:外源多胺对果实采后生理抗氧化系统和保质期的调节作用:综述

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摘要

Polyamines (PAs) are natural compounds involved in many growth and developmental processes in plants, and, specifically in fruits, play a vital role regulating its development, ripening and senescence processes. Putrescine (PUT), spermine (SPE), and spermidine (SPD) are prominent PAs applied exogenously to extend shelf life of fruits. They also originate endogenously during developmental phases of horticultural crops and simultaneously affect the quality attributes and shelf life. Their anti-ethylene nature is being exploited to enhance the shelf life when exogenously applied on fruits. In growth and development of fruits, PA levels generally fall, which marks the beginning of senescence at postharvest phase. PUT, SPE and SPD treatments are being applied during postharvest phase to prolong the shelf life. They enhance the shelf life of fruits by reducing respiration rate, ethylene release and enhance firmness and quality attributes in fruits. PAs have a mitigating impact on biotic and abiotic stresses including chilling injury (CI) in tropical and sub-tropical fruits. PAs are environment friendly in nature and are biodegradable without showing any negative effect on environment. Biotechnological interventions by using chimeric gene constructs of PA encoding genes has boosted the research to develop transgenic fruits and vegetables which would possess inherent or in situ mechanism of enhanced biosynthesis of PAs at different stages of development and thereby will enhance the shelf life and quality in fruits. Internal and external quality attributes of fruits are improved by modulation of antioxidant system and by strengthening biophysical morphology of fruits by electrostatic interaction between PAs and phospholipids in the cell wall.
机译:多胺(PAs)是天然化合物,涉及植物(尤其是水果)的许多生长和发育过程,在调节其发育,成熟和衰老过程中起着至关重要的作用。腐胺(PUT),亚精胺(SPE)和亚精胺(SPD)是外源施用的显着PA,可延长水果的保质期。它们也是园艺作物发育阶段的内源性来源,同时会影响品质属性和保质期。外源应用在水果上时,已开发出其抗乙烯特性,以延长其保质期。在水果的生长发育中,PA水平通常会下降,这标志着采后阶段的衰老开始。在收获后阶段进行PUT,SPE和SPD处理可延长保质期。它们通过降低呼吸频率,释放乙烯并增强水果的硬度和品质属性来延长水果的保质期。 PA对热带和亚热带水果的生物和非生物胁迫(包括冷害(CI))具有缓解作用。 PA在本质上是环境友好的,并且可生物降解而对环境没有任何负面影响。通过使用PA编码基因的嵌合基因构建体进行生物技术干预,促进了开发转基因水果和蔬菜的研究,这些水果和蔬菜将具有固有的或原位的机制,在不同的发育阶段增强PAs的生物合成,从而延长水果的货架期和质量。 。通过调节抗氧化剂系统并通过PA和细胞壁中磷脂之间的静电相互作用增强水果的生物物理形态,可以改善水果的内部和外部质量属性。

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