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Antifungal activity of β-carbolines on Penicillium digitatum and Botrytis cinerea

机译:β-咔啉类药物对指状青霉和灰葡萄孢的抗真菌活性

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摘要

β-carbolines (βCs) are alkaloids widely distributed in nature that have demonstrated antimicrobial properties. Here, we tested in vitro six βCs against Penicillium digitatum and Botrytis cinerea, causal agents of postharvest diseases on fruit and vegetables. Full aromatic βCs (harmine, harmol, norharmane and harmane) exhibited a marked inhibitory effect on conidia germination at concentrations between 0.5 and 1 mM, while dihydro-βCs (harmalina and harmalol) only caused germination delay. Harmol showed the highest inhibitory effect on both fungal pathogens. After 24 h of exposure to 1 mM harmol, conidia revealed a severe cellular damage, exhibiting disorganized cytoplasm and thickened cell wall. Harmol antimicrobial effect was fungicidal on B. cinerea, while it was fungistatic on P. digitatum. Conidia membrane permeabilization was detected in treatments with harmol at sub-inhibitory and inhibitory concentrations, for both pathogens. In addition, residual infectivity of P. digitatum on lemons and B. cinerea on blueberries was significantly reduced after exposure to this alkaloid. It also inhibited mycelial growth, preventing sporulation at the highest concentration tested. These results indicate that harmol might be a promising candidate as a new antifungal molecule to control causal agents of fruit diseases.
机译:β-咔啉(βCs)是自然界中广泛分布的生物碱,已显示出抗菌性能。在这里,我们在体外测试了六种βCs来对抗指状青霉和灰葡萄孢,这是水果和蔬菜收获后疾病的致病因子。浓度为0.5至1 mM时,全芳香族βCs(harmine,harmol,norharmane和harmane)对分生孢子萌发具有明显的抑制作用,而二氢βCs(harmalina和harmalol)仅引起萌发延迟。 Harmol对两种真菌病原体均显示出最高的抑制作用。暴露于1 mM的harmol 24小时后,分生孢子显示出严重的细胞损伤,表现出杂乱的细胞质和增厚的细胞壁。 Harmol抗菌作用对灰葡萄孢菌具有杀真菌作用,而对数指疟原虫具有杀真菌作用。在亚抑菌和抑菌浓度下,对两种病原体均使用harmol处理时,可检测到分生孢子膜通透性。此外,暴露于该生物碱后,洋地黄假单胞菌对柠檬的残留感染性和蓝莓对灰葡萄孢的残留感染性显着降低。它也抑制了菌丝体的生长,在最高测试浓度下阻止了孢子形成。这些结果表明,作为控制水果病病原体的新型抗真菌分子,harmol有望成为有前途的候选者。

著录项

  • 来源
    《Food microbiology》 |2017年第4期|9-14|共6页
  • 作者单位

    Instituto Superior de Investigacions Biologicas (INSIBIO), CONICET-UNT, and Instituto de Quimica Biologica 'Bernabe Bloj', Facultad de Bioquimica, Quimica y Farmacia, UNT. Chacabuco 461, CP T4000ILI, San Miguel de Tucuman, Tucuman, Argentina;

    Instituto Superior de Investigacions Biologicas (INSIBIO), CONICET-UNT, and Instituto de Quimica Biologica 'Bernabe Bloj', Facultad de Bioquimica, Quimica y Farmacia, UNT. Chacabuco 461, CP T4000ILI, San Miguel de Tucuman, Tucuman, Argentina;

    IIB-INTECH (sede Chascomus), UNSAM-CONICET, Intendente Marino Km 8,2, CC 164, CP 7130, Chascomus, Buenos Aires, Argentina;

    IIB-INTECH (sede Chascomus), UNSAM-CONICET, Intendente Marino Km 8,2, CC 164, CP 7130, Chascomus, Buenos Aires, Argentina;

    Instituto Superior de Investigacions Biologicas (INSIBIO), CONICET-UNT, and Instituto de Quimica Biologica 'Bernabe Bloj', Facultad de Bioquimica, Quimica y Farmacia, UNT. Chacabuco 461, CP T4000ILI, San Miguel de Tucuman, Tucuman, Argentina;

    Instituto Superior de Investigacions Biologicas (INSIBIO), CONICET-UNT, and Instituto de Quimica Biologica 'Bernabe Bloj', Facultad de Bioquimica, Quimica y Farmacia, UNT. Chacabuco 461, CP T4000ILI, San Miguel de Tucuman, Tucuman, Argentina;

  • 收录信息 美国《科学引文索引》(SCI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Phytopathogens; Alkaloids; Harmol; Germination inhibition; Conidial membrane permeabilization; Infectivity;

    机译:植物病原体;生物碱;哈莫尔;发芽抑制;分生孢子膜透化;传染性;

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