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Effect of Cinnamaldehyde and Citral Combination on Transcriptional Profile Growth Oxidative Damage and Patulin Biosynthesis of Penicillium expansum

机译:肉桂醛和柠檬醛组合对扩展青霉的转录特征生长氧化损伤和Patulin生物合成的影响

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摘要

Penicillium expansum, as a main postharvest pathogen of fruits, can secrete patulin (PAT), causing fruit decay and health problems. In this study, the antifungal test, SEM (scanning electron microscope) observation, transcriptional profile, PAT biosynthesis, and physiological characters of P. expansum exposed to cinnamaldehyde and citral combination (Cin/Cit) were evaluated. Cin/Cit could inhibit the mycelial growth and spore germination of P. expansum in a dose-dependent manner. Besides, Cin/Cit caused spores and mycelia wrinkled and depressed by SEM observation. Gene expression profiles of P. expansum were conducted by RNA sequencing (RNA-seq) in the presence or absence of Cin/Cit treatment. A total of 1713 differentially expressed genes (DEGs) were obtained, including 793 down-regulated and 920 up-regulated genes. Most of the DEGs participated in the biosynthesis of secondary metabolites, amino acid metabolism, and oxidation-reduction process, etc. Cin/Cit induced the dysfunction of the mitochondrial membrane, causing the potential influence on energy metabolism and reactive oxidative species production. The changes of superoxide dismutase (SOD) and catalase (CAT) activities combing with the increase of hydrogen peroxide content indicated the oxidative stress on P. expansum induced by Cin/Cit, which corresponded well with the transcriptional results. Moreover, both the RNA-seq data and the qRT-PCR showed the remarkable down-regulation of genes included in the PAT biosynthetic pathway under the Cin/Cit treatment. These findings provided more useful information about the antifungal mechanism of Cin/Cit against P. expansum at molecular and gene levels and suggested that Cin/Cit is a potential candidate to control P. expansum.
机译:扩张性青霉作为水果收获后的主要病原体,会分泌棒曲霉素(PAT),从而导致水果腐烂和健康问题。在这项研究中,评估了抗真菌试验,SEM(扫描电子显微镜)观察,转录谱,PAT生物合成以及暴露于肉桂醛和柠檬醛组合物(Cin / Cit)的膨胀假单胞菌的生理特性。 Cin / Cit可以剂量依赖性的方式抑制扩张疟原虫的菌丝体生长和孢子萌发。另外,通过SEM观察,Cin / Cit引起孢子和菌丝体起皱和抑制。在存在或不存在Cin / Cit处理的情况下,通过RNA测序(RNA-seq)进行扩展的毕赤酵母的基因表达谱。总共获得1713个差异表达基因(DEG),包括793个下调基因和920个上调基因。大多数DEG参与了次级代谢产物的生物合成,氨基酸代谢和氧化还原过程等。Cin/ Cit引起线粒体膜功能障碍,对能量代谢和反应性氧化物质的产生产生潜在影响。超氧化物歧化酶(SOD)和过氧化氢酶(CAT)活性的变化与过氧化氢含量的增加相结合,表明Cin / Cit诱导的广P香的氧化应激与转录结果非常吻合。此外,RNA-seq数据和qRT-PCR均显示在Cin / Cit处理下,PAT生物合成途径中所含基因的显着下调。这些发现提供了有关Cin / Cit在分子和基因水平上对扩张性疟原虫的抗真菌机制的更有用的信息,并表明Cin / Cit是控制扩张性疟原虫的潜在候选者。

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