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Light: An Alternative Method for Physical Control of Postharvest Rotting Caused by Fungi of Citrus Fruit

机译:光:柑橘类真菌引起的采后腐烂物理控制的另一种方法

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Solar light has fundamental roles in vast chemical, biochemical, and physical process in biosphere and hence been declared as “source of life.” Solar light is further classified into a broad range of electromagnetic waves, and each region in the solar spectrum bears its unique actions in the universe or biosphere. Since centuries, solar light is believed as a potent source of killing pathogens causing postharvest losses on food products as well as human skin diseases. Citrus fruit crops are widely produced and consumed across the world, but due to their higher juicy contents, Penicillium italicum (blue mold) and Penicillium digitatum (green mold) make their entry to decay fruits and cause approximately 80% and 30% fruit losses, respectively. Agrochemicals or synthetic fungicides are highly efficient to control these postharvest fungal pathogens but have certain health concerns due to toxic environmental residues. Therefore, the scientific community is ever looking for some physical ways to eradicate such postharvest fungal pathogens and reduce the yield losses along with maintaining the public health concerns. This review article presents and discusses existing available information about the positive and negative impacts of different spectrums of solar light exposure on the postharvest storage of citrus fruits, especially to check citrus postharvest rotting caused by Penicillium italicum (blue mold) and Penicillium digitatum (green mold). Moreover, a special focus shall be paid to blue light (390–500?nm), which efficiently reduces the decay of fruits, while keeping the host tissues/cells healthy with no known cytotoxicity, killing the fungal pathogen probably by ferroptosis, but indepth knowledge is scanty. The study defines how to develop commercial applications of light in the postharvest citrus industry.
机译:太阳灯在生物圈的巨大化学,生化和物理过程中具有基本作用,因此被宣布为“生命之源”。太阳灯进一步分为广泛的电磁波,太阳光谱中的每个区域都具有其在宇宙或生物圈中的独特作用。自几位以来,太阳灯被认为是杀死病原体的有效来源,导致食品产品和人体皮肤病的采后损失。柑橘类水果作物广泛生产和消耗世界,但由于其较高的多汁内容物,青霉素斜体(蓝色霉菌)和青霉霉素(绿色模具)使其进入腐烂水果并导致大约80%和30%的果实损失,分别。农业化学物质或合成杀菌剂对控制这些采后真菌病原体具有高效,但由于有毒的环境残留物,具有一定的健康问题。因此,科学界曾经寻找一些物理方式来消除这种采后真菌病原体,并降低产量损失以及维持公共卫生问题。本综述文章提出并讨论了关于柑橘类水果采后储存的不同频谱对不同频谱的正面和负面影响的现有信息,特别是检查由青霉素(蓝色模具)和青霉素(绿色模具)造成的柑橘采后腐烂腐烂)。此外,特别是特殊的重点应支付蓝光(390-500?NM),这有效地减少了果实的衰减,同时保持宿主组织/细胞健康,没有已知的细胞毒性,可能是通过硬化,但终止知识很少。该研究规定了如何在Postharvest Citrus Industry中开发光的商业应用。

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