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气培法种植的酸浆(Physalis peruviana L.)在LED光照及根系驯化条件下乙醇提取物的抗真菌活性

Antifungal Activity of Ethanolic Extracts from Aeroponically Grown Cape Gooseberry ( L.) with LED Lights and Habituated Roots.

作者信息

Avila-Avila Daniel Eduardo, Rodríguez-Mendiola Martha Alicia, Arias-Castro Carlos, Arias-Rodríguez Laura Isabel, Avila-Miranda Martin Eduardo, Mancilla-Margalli Norma Alejandra

机构信息

Plant Biotechnology Laboratory, Instrumental Analysis Laboratory, Plant Biochemistry Laboratory, National Technological Institute of Mexico, Tlajomulco de Zuñiga 45640, Mexico.

Smart Biotechnology S.A. de C.V., Santa Anita, Tlaquepaque 45600, Mexico.

出版信息

Plants (Basel). 2024 Dec 23;13(24):3586. doi: 10.3390/plants13243586.

Abstract

Green mold caused by is a major post-harvest disease in citrus fruits. Therefore, the search for sustainable and low-environmental-impact alternatives for the management of these fungi is of utmost importance. L. is a native fruit of the Peruvian Andes with rich bioactive components present throughout the plant. Its antifungal activity stands out, attributed to its high content of phenols, coupled with its antioxidant capacity and antimicrobial activity. Plants were cultivated aeroponically under a combination of red, mixed (50% red, 50% blue), and green LED lights. Additionally, -habituated roots free of plant growth regulators were also cultivated. An ethanol extraction assisted by ultrasound for 30 min followed by maceration for 72 h was performed, and the extract was filtrated and evaporated in an extraction hood. Antioxidant activity was assessed using the DPPH method, total polyphenols were measured using the Folin-Ciocâlteu method, and an antifungal test in vitro by the poisoned food method was conducted against . assays revealed that extracts from leaves, roots, and fruits exerted a significant inhibitory effect on the growth of , as evidenced by a reduction in colony radius when cultured employing the poisoned food method, with IC values of 62.17, 53.15, and 286.34 µg·mL, respectively, compared to 2297 µg·mL for the commercial fungicide Captan 50WP. Although leaves had higher total polyphenol content, no direct correlation with antifungal activity was found. Colored LEDs enhanced phenol accumulation, antioxidant capacity, and antifungal properties in plant parts compared to white LEDs and in vitro roots. These findings suggest as a new alternative biological production system to provide natural compounds for post-harvest disease management.

摘要

由[具体真菌名称未给出]引起的绿霉病是柑橘类水果采后的一种主要病害。因此,寻找可持续且对环境影响小的替代方法来管理这些真菌至关重要。[植物名称未给出]是秘鲁安第斯山脉的本土水果,整株植物都含有丰富的生物活性成分。其抗真菌活性显著,这归因于其高含量的酚类物质,以及其抗氧化能力和抗菌活性。在红色、混合光(50%红色、50%蓝色)和绿色发光二极管(LED)灯组合下对植物进行气培。此外,还培育了不含植物生长调节剂的[植物名称未给出]驯化根。采用超声辅助乙醇提取30分钟,随后浸泡72小时,提取物在抽提罩中过滤并蒸发。使用DPPH法评估抗氧化活性,使用福林 - 西奥尔特法测定总多酚含量,并通过毒饵法对[具体真菌名称未给出]进行体外抗真菌试验。[试验名称未给出]分析表明,叶、根和果实的提取物对[具体真菌名称未给出]的生长具有显著抑制作用,采用毒饵法培养时菌落半径减小证明了这一点,其IC值分别为62.17、53.15和286.34 μg·mL,而商业杀菌剂克菌丹50WP的IC值为2297 μg·mL。尽管叶片的总多酚含量较高,但未发现与抗真菌活性有直接相关性。与白色LED灯和体外培养的根相比,彩色LED灯增强了植物各部分的酚类物质积累、抗氧化能力和抗真菌特性。这些发现表明[植物名称未给出]作为一种新的替代生物生产系统,可为采后病害管理提供天然化合物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b790/11678921/3c42b0046fbc/plants-13-03586-g001.jpg

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