Cerioni Luciana, Rapisarda Viviana Andrea, Hilal Mirna, Prado Fernando Eduardo, Rodríguez-Montelongo Luisa
Instituto de Química Biológica, Facultad de Bioquímica, Química y Farmacia, Universidad Nacional de Tucumán, Chacabuco 461, CP T4000ILI Tucumán, Argentina.
J Food Prot. 2009 Aug;72(8):1660-5. doi: 10.4315/0362-028x-72.8.1660.
Oxidizing compounds such as sodium hypochlorite (NaCIO) and hydrogen peroxide (H2O2) are widely used in food sanitization because of their antimicrobial effects. We applied these compounds and metals to analyze their antifungal activity against Penicillium digitatum, the causal agent of citrus green mold. The MICs were 300 ppm for NaClO and 300 mM for H2O2 when these compounds were individually applied for 2 min to conidia suspensions. To minimize the concentration of these compounds, we developed and standardized a sequential treatment for conidia that resulted in loss of viability on growth plates and loss of infectivity on lemons. The in vitro treatment consists of preincubation with 10 ppm of NaClO followed by incubation with 100 mM H2O2 and 6 mM CuSO4 (cupric sulfate). The combination of NaClO and H2O2 in the presence of CuSO4 produces a synergistic effect (fractional inhibitory concentration index of 0.36). The sequential treatment applied in situ on lemon peel 24 h after the fruit was inoculated with conidia produced a significant delay in the fungal infection. The in vitro treatment was effective on both imazalil-sensitive and imazalil-resistant strains of P. digitatum and Geotrichum candidum, the causal agent of citrus sour rot. However, this treatment inhibited 90% of mycelial growth for Penicillium italicum (citrus blue mold). These results indicate that sequential treatment may be useful for postharvest control of citrus fruit diseases.
次氯酸钠(NaClO)和过氧化氢(H2O2)等氧化性化合物因其抗菌作用而广泛用于食品消毒。我们应用这些化合物和金属来分析它们对柑橘绿霉病原菌指状青霉的抗真菌活性。当这些化合物分别作用于分生孢子悬浮液2分钟时,NaClO的最低抑菌浓度为300 ppm,H2O2为300 mM。为了尽量降低这些化合物的浓度,我们开发并标准化了一种针对分生孢子的序贯处理方法,该方法导致在生长平板上失去活力以及在柠檬上失去感染性。体外处理包括先用10 ppm的NaClO预孵育,然后用100 mM H2O2和6 mM硫酸铜(CuSO4)孵育。在CuSO4存在下,NaClO和H2O2的组合产生协同效应(分数抑制浓度指数为0.36)。在果实接种分生孢子24小时后,在柠檬皮上原位应用序贯处理可显著延迟真菌感染。体外处理对指状青霉的抑霉唑敏感和抑霉唑抗性菌株以及柑橘酸腐病原菌白色地霉均有效。然而,这种处理抑制了意大利青霉(柑橘青霉)90%的菌丝生长。这些结果表明,序贯处理可能对柑橘采后病害防治有用。