Penicillium Species Isolated From Cocoa, Coffee Beans, and Dried Cassava in Yogyakarta Indonesia and Their Ochratoxin Production

M. Moulia, Sigit Setyabudi, B. Salleh, E. Rahayu
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引用次数: 4

Abstract

The presence of Penicillium in cocoa and coffee beans, and dried cassava are detrimental due to its ability in ochratoxin A (OTA) production which carcinogenic and mutagenic to human. Objectives of this study were to isolate and identify Penicillium from cocoa, coffee beans and dried cassava in Yogyakarta by morphological and molecular characteristics, as well as to observe the ability of these isolates in OTA production on Yeast Extract Sucrose Agar (YES) medium. In this study, morphological characteristics were mainly based on the growth of isolates on identification media, while molecular characteristics were based on the similarity of PCR products using ITS4 and ITS5 as primers. OTA was detected by ELISA and UPLC methods. The result showed that 15 of 16 representative isolates obtained during this study were identified as Penicillium citrinum , one of the representative isolate from cocoa beans was identified as Penicillium paneum. Surprisingly, 13 among 15 of the obtained P. citrinum isolates from cocoa and coffee beans were positive in the production of OTA in YES medium, at the concentration of 4.64 to 25.26 µg/g media, while OTA was not detected in YES grown media by P. paneum and two isolates of P. citrinum from dried cassava. Conclusion of this study, the most found species Penicillium in cocoa and coffee beans were belong to P. citrinum which likely have a capability in the production of OTA.
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印尼日惹地区从可可、咖啡豆和干木薯中分离出的青霉菌及其赭曲霉毒素生产
青霉菌存在于可可豆、咖啡豆和干木薯中是有害的,因为它能够产生赭曲霉毒素A (OTA),对人类具有致癌性和诱变性。本研究的目的是通过形态学和分子特征从日惹的可可、咖啡豆和干木薯中分离和鉴定青霉菌,并观察这些分离株在酵母提取物蔗糖琼脂(YES)培养基上进行OTA生产的能力。在本研究中,形态特征主要基于分离株在鉴定培养基上的生长情况,而分子特征主要基于以ITS4和ITS5为引物的PCR产物的相似性。采用ELISA和UPLC检测OTA。结果表明,16株代表性分离物中有15株鉴定为柑橘青霉,1株鉴定为帕纳姆青霉。令人惊讶的是,从可可豆和咖啡豆中分离得到的15株柑橘卟卟菌中有13株在YES培养基中(浓度为4.64至25.26 μ g/g培养基)产生OTA呈阳性,而在YES培养基中,paneum和从干木薯中分离的两株柑橘卟卟菌未检测到OTA。本研究的结论是,在可可豆和咖啡豆中发现最多的青霉属属柑橘青霉属,可能具有生产OTA的能力。
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