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Predictive Model for the Effect of Environmental Conditions on the Postharvest Development of Colletotrichum gloeosporioides Strains Isolated from Papaya (Carica papaya L.)

机译:环境条件对木瓜(CaricaPagaya L.)菌株对骨灰孢子孢子菌菌株采后发展的预测模型

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摘要

Colletotrichum species are the most important postharvest spoilage fungi of papaya fruit. The objective of this research was to evaluate the effect of temperature and relative humidity on growth rate and time for growth to become visible of five strains of Colletotrichum gloeosporioides isolated from papaya fruit in a complex medium. As a primary model, the radial growth rates were estimated using the Baranyi and Roberts model in papaya agar. The Solver MS Excel function was used to obtain the time to visible mycelium (t_ν). Secondary models obtained with the Rosso et al. cardinal model of inflection were applied to describe the effect of temperature on the growth rate (μ). The Arrhenius-Davey model was used to model t_ν. The obtained models seem to be satisfactory for describing both μ and t_v The relative humidity had an effect on μ and t_ν for all tested C. gloeosporioides isolates, but no model accurately described the behavior of the fungus. External validation of models was performed with papaya fruit. Growth models were developed with the same models used in vitro. The bias and the accuracy factors as indices for performance evaluation of predictive models in food microbiology as a function of temperature and RH were 1.22 and 1.33, respectively, for μ and 1.18 and 1.62, respectively, for t_ν indicating accurate predictions. The supply chain of papaya is complex and requires constant conditions, and poor conditions can result in damage to the fruit. Knowledge of the behavior of C. gloeosporioides on papaya fruit and applipation of the developed models in the supply chain will help to establish transport control strategies to combat these fungi. This research has contributed to development of the first models of growth for C. gloeosporioides in Mexico.
机译:Collettrichum物种是木瓜果实最重要的采后腐败真菌。该研究的目的是评估温度和相对湿度对生长速率和增长时间的影响,以便在复合介质中从番木瓜果实中分离的五种Collettrichum GroooSporioides可见。作为初级模型,使用Papaya琼脂的Baranyi和Roberts模型估计径向增长率。求解器MS Excel功能用于获得可见菌丝体(T_∞)的时间。用Rosso等人获得的辅助模型。施用红衣主教模型来描述温度对生长速率(μ)的影响。 Arrhenius-Davey模型用于模拟T_‖。所获得的模型似乎是令人满意的,用于描述μ和T_V相对湿度对μ和T_∞对所有测试的C. gloooosporioides分离株,但没有模型精确地描述真菌的行为。用木瓜果实进行模型的外部验证。通过体外使用的相同模型开发了生长模型。作为温度和RH的函数的用于食物微生物学的预测模型的性能评估的偏差和精度因子分别为1.22和1.33,分别为μ和1.18和1.62,用于表示精确的预测。番木瓜的供应链是复杂的并且需要恒定的条件,条件差可能导致水果损坏。了解C. GroooSporioides对木瓜果实和供应链中发达模型的潮力将有助于建立运输控制策略来打击这些真菌。该研究有助于在墨西哥C. Gloeosporioides的第一种增长模型的发展。

著录项

  • 来源
    《Journal of food protection》 |2020年第9期|1495-1504|共10页
  • 作者单位

    Tecnologico National de Mexico/Instituto Tecnologico de Tepic Av. Tecnologico #2595 C.P. 63175 Tepic Nayarit Mexico;

    Tecnologico National de Mexico/Instituto Tecnologico de Tepic Av. Tecnologico #2595 C.P. 63175 Tepic Nayarit Mexico;

    Instituto Tecnologico y de Estudios Superiores de Occidente Periferico Sur Manuel Gomez Morin #8585 C.P. 45604 Tlaquepaque Jalisco Mexico;

    Tecnologico National de Mexico/Instituto Tecnologico de Tepic Av. Tecnologico #2595 C.P. 63175 Tepic Nayarit Mexico;

    Instituto Politecnico National Centro de Biotecnologia Genomica Col. Narciso Mendoza Reynosa Tamaulipas Mexico;

    Centro de Investigaciones Biologicas del Noroeste. Av. Instituto Politecnico National 195 Playa Palo de Santa Rita Sur C.P. 23096 La Paz Baja California Sur Mexico;

    Tecnologico National de Mexico/Instituto Tecnologico de Tepic Av. Tecnologico #2595 C.P. 63175 Tepic Nayarit Mexico;

  • 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

    Carica papaya; Environmental conditions; Growth simulation; Postharvest disease;

    机译:卡里卡番木瓜;环境条件;增长模拟;采后疾病;

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