Faculdade de Ciências Agrárias e Veterinárias, Universidade Estadual Paulista Júlio de Mesquita Filho (UNESP), 14884-900 Jaboticabal, São Paulo, Brazil.
Centre de Tecnologia Postcollita (CTP), Institut Valencià d'Investigacions Agràries (IVIA), 46113 Montcada, València, Spain.
Int J Food Microbiol. 2019 Jul 16;301:9-18. doi: 10.1016/j.ijfoodmicro.2019.04.008. Epub 2019 Apr 25.
A large amount of GRAS (generally recognized as safe) salts and concentrations were evaluated in in vitro tests (inhibition of mycelial growth on PDA dishes) against Lasiodiplodia theobromae, the causal agent of citrus Diplodia stem-end rot. Ammonium carbonate (AC, 0.2%), potassium sorbate (PS, 2.0%), potassium carbonate (PC, 0.2%), sodium methylparaben (SMP, 0.1%), sodium ethylparaben (SEP, 0.1%), sodium benzoate (SB, 2.0%), and potassium silicate (PSi, 2.0%) were selected as the most effective. Disease control ability of edible composite coatings formulated with hydroxypropyl methylcellulose (HPMC), beeswax (BW), and these selected antifungal GRAS salts was assessed in in vivo experiments with 'Ortanique' mandarins and 'Barnfield' oranges artificially inoculated with L. theobromae. Coatings containing 2% PS, 0.1% SEP, or 2% SB were the most effective reducing disease severity (up to 50% reduction) and were also applied to non-inoculated and cold-stored 'Barnfield' oranges to determine their effect on postharvest fruit quality. After periods of 21 and 42 d at 5 °C followed by 7 d of shelf life at 20 °C, coatings containing SEP and SB significantly reduced weight loss and did not adversely affect the physicochemical quality attributes (firmness, soluble solid content, titratable acidity, and ethanol and acetaldehyde content) and sensory flavor with respect to uncoated control fruit. Although the internal gas concentration (CO level) of coated fruit increased, the coatings did not induce off-flavors.
大量的 GRAS(一般认为安全)盐和浓度在体外试验(在 PDA 平板上抑制菌丝生长)中进行了评估,以对抗导致柑橘 Diplodia 茎端腐烂的病原菌 Lasiodiplodia theobromae。碳酸铵(AC,0.2%)、山梨酸钾(PS,2.0%)、碳酸钾(PC,0.2%)、对羟基苯甲酸甲酯(SMP,0.1%)、对羟基苯甲酸乙酯(SEP,0.1%)、苯甲酸钠(SB,2.0%)和硅酸钾(PSi,2.0%)被选为最有效的。用羟丙基甲基纤维素(HPMC)、蜂蜡(BW)和这些选定的抗真菌 GRAS 盐配制的可食用复合涂层在体内实验中评估了对‘Ortanique’甜橙和‘Barnfield’甜橙的控制能力,这些甜橙是用 L. theobromae 人工接种的。含有 2% PS、0.1% SEP 或 2% SB 的涂层对降低病害严重度(最高可达 50%)最有效,并且还应用于未接种和冷藏的‘Barnfield’甜橙,以确定它们对采后水果质量的影响。在 5°C 下贮藏 21 和 42 d 后,在 20°C 下货架期 7 d,含 SEP 和 SB 的涂层显著降低了失重,并且不会对物理化学质量特性(硬度、可溶性固形物含量、可滴定酸度以及乙醇和乙醛含量)和感官风味产生不利影响,与未涂层对照果实相比。尽管涂层果实的内部气体浓度(CO 水平)增加,但涂层没有引起异味。