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首页> 外文期刊>Frontiers in Microbiology >Phytic Acid Enhances Biocontrol Activity of Rhodotorula mucilaginosa against Penicillium expansum Contamination and Patulin Production in Apples
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Phytic Acid Enhances Biocontrol Activity of Rhodotorula mucilaginosa against Penicillium expansum Contamination and Patulin Production in Apples

机译:植酸可增强苹果斜纹红球菌对苹果斜纹青霉的污染和棒曲霉素生产的生物防治活性。

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The effect of Rhodotorula mucilaginosa in combination with phytic acid (PA) on blue mold decay and patulin contamination of apples was investigated. Results from this study show that different concentrations of PA were effective in reducing the disease incidence of apples and that PA at concentration of 4 μmol/mL, decreased the incidence of blue mold decay in apples from 86.1 to 62.5%, and showed higher control efficacy compared to untreated, control fruit during storage at 20°C. However, R. mucilaginosa combined with PA (4 μmol/mL) showed better control efficacy of blue mold decay than R. mucilaginosa used as single treatment, the disease incidence was reduced to 62.5% and lesion diameter on apples was reduced to 16.59 cm. In in vitro experiments, the addition of PA enhanced the biocontrol effect of R. mucilaginosa against the growth of Penicillium expansum and reduced patulin level when compared with either R. mucilaginosa or PA used separately. R. mucilaginosa together with PA, improved the inhibition of patulin production in wounded apples, decreasing the content of patulin by 89.6% compared to the control, under experimental conditions. Both R. mucilaginosa and R. mucilaginosa in combination with PA degraded patulin in vitro . In conclusion, the appropriate combination of R. mucilaginosa and PA may provide an effective biocontrol method for reducing postharvest decay of apples.
机译:研究了红假单胞菌与植酸(PA)联合使用对苹果蓝霉菌腐烂和棒曲霉素污染的影响。这项研究的结果表明,不同浓度的PA可以有效降低苹果的发病率,浓度为4μmol/ mL的PA可以将苹果中的蓝霉变的发生率从86.1降低到62.5%,并且显示出更高的防治效果与未处理的对照水果相比,在20°C的贮藏期间。然而,与单药治疗相比,粘菌与PA(4μmol/ mL)联合使用显示出更好的蓝霉病防治效果,病害发生率降低至62.5%,苹果的病斑直径降低至16.59 cm。在体外实验中,与单独使用黏液粘菌或PA相比,加入PA可以增强黏液粘菌对扩展青霉的生物防治作用,并降低展青霉素水平。在实验条件下,粘菌红霉菌与PA一起改善了受伤苹果中棒曲霉素的抑制作用,与​​对照组相比,棒曲霉素的含量降低了89.6%。 R. mucilaginosa和R. mucilaginosa与PA联合体外降解patulin。综上所述,适当结合黏液红锈菌和PA可以为减少苹果采后腐烂提供有效的生物防治方法。

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