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Pinocembrin-7-Glucoside (P7G) Reduced Postharvest Blue Mold of Navel Orange by Suppressing Penicillium italicum Growth

机译:Pinocembrin-7-葡萄糖苷(P7G)通过抑制意大利青霉菌的生长减少了脐橙的采后蓝霉病

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摘要

The current study aimed to examine the in vitro and in vivo antifungal potential of pinocembrin-7-glucoside (P7G). P7G is an antifungal flavanone glycoside isolated from Vahl. fruit against , a causative pathogen of blue mold disease in citrus fruit, and this study elucidates its possible action mechanism. P7G had a prominent mycelial growth inhibitory activity against , with an observed half maximal effective concentration, minimum inhibitory concentration and minimum fungicidal concentration of 0.08, 0.2, and 0.8 g/L, respectively. The data from the in vivo test show that P7G significantly reduced blue mold symptoms and disease development of in artificially inoculated “Newhall” navel orange. Compared to the control, increases in the cell membrane permeability of supernatant and decreases in the intracellular constituent (e.g., soluble protein, reducing sugar, and total lipid) contents of mycelia were identified, supporting scanning electron microscopy and transmission electron microscopy observations. Furthermore, a marked decline in both chitin and glucanase contents of mycelia treated with P7G was induced by increasing its related degrading enzyme activities, suggesting that the cell wall structure was destroyed. The current study indicated that P7G may be a novel alternative for reducing blue mold by suppressing mycelial growth of via a cell membrane/wall-targeting mechanism.
机译:当前的研究旨在检查pinocembrin-7-葡萄糖苷(P7G)的体外和体内抗真菌潜力。 P7G是从Vahl分离的抗真菌黄烷酮糖苷。柑橘果实中有一种蓝色霉菌病的致病病原体,该研究阐明了其可能的作用机理。 P7G对的具有明显的菌丝生长抑制活性,观察到的一半最大有效浓度,最小抑菌浓度和最小杀真菌浓度分别为0.08、0.2和0.8 g / L。体内试验的数据表明,P7G显着减少了人工接种的“ Newhall”脐橙的蓝霉症状和疾病发展。与对照相比,鉴定了菌丝体的上清液的细胞膜通透性增加和细胞内成分(例如,可溶性蛋白,还原糖和总脂质)含量降低,这支持了扫描电子显微镜和透射电子显微镜的观察。此外,通过增加其相关的降解酶活性,诱导了用P7G处理的菌丝体的几丁质和葡聚糖酶含量均显着下降,表明细胞壁结构被破坏。当前的研究表明,P7G可能是通过抑制经由细胞膜/壁靶向机制的菌丝体生长来减轻蓝霉病的新选择。

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