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Phloridzin promotes the growth of Fusarium moniliforme (Fusarium verticillioides)

机译:Phloridzin促进了镰刀菌Moniliforme的生长(镰刀菌镰刀菌铁纤维素)

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Apple replant disease (ARD) has been reported from all major fruit-growing regions of the world, and is often caused by biotic (pathogen fungi) and abiotic (phenolic compounds) factors. However, how phenolic compounds affect pathogen fungi is not yet fully understood. The aims of this study were to investigate whether the Fusarium moniliforme (F. moniliforme, a soil-borne pathogen of apple) could be labeled with fluorescent silicon carbide (SiC) quantum dots for a long-term tracing, and to observe the effect of phloridzin on the growth and conidia morphology of F. moniliforme with the help of fluorescence labeling with SiC quantum dots. The phloridzin was set to three concentrations (0 mM, 0.5 mM and 1.0 mM). Results showed that F. moniliforme could be labeled with SiC quantum dots and that the fluorescence in the mycelium could be observed for at least 40 days. The fluorescent images during the labeling process showed that F. moniliforme growth and division were slower when there was no phloridzin. The growth and division of F. moniliforme were fast with the help of phloridzin, and the growth and division were faster in the 1.0 mM phloridzin than in the 0.5 mM phloridzin. These results suggested that SiC quantum dots could successfully label F. moniliforme for a long-term tracing, and phloridzin could promote the growth and conidia division of E moniliforme under the experimental concentration. (C) 2016 Elsevier B.V. All rights reserved.
机译:苹果重新疾病(ARD)曾据报道世界上所有主要的果实增长地区,通常由生物(病原体真菌)和非生物(酚类化合物)因子引起。然而,酚类化合物如何影响病原体真菌尚未完全理解。本研究的目的是探讨镰刀菌Moniliforme(F. moniliforme,苹果的土壤传播病原体)是否可以用荧光碳化硅(SiC)量子点标记为长期跟踪,并观察效果用SiC量子点荧光标记的荧光标记荧光标记的F. moniliforme的生长和Catidia形态。将phloridzin设定为三种浓度(0mm,0.5mm和1.0mm)。结果表明,F. moniliforme可以用SiC量子点标记,并且可以观察到菌丝体中的荧光至少40天。在标记过程中的荧光图像表明,当没有氟氮时,F. moniliforme生长和分裂较慢。 F. moniliforme的生长和分裂在氟氮的帮助下快速,并且在1.0mM氯辛中的生长和分裂比在0.5mM ploridzin中更快。这些结果表明,SiC量子点可以成功地标记术术,用于长期追踪,并且氟化素可以在实验浓度下促进E moniliforme的生长和分析。 (c)2016年Elsevier B.v.保留所有权利。

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