Assessment of mycobiota in Thai pigmented rice: Insights into ochratoxin A and citrinin production by Aspergillus and Penicillium species

被引:2
作者
Chuaysrinule, Chananya [1 ]
Roopkham, Chanram [1 ]
Mahakarnchanakul, Warapa [2 ]
Maneeboon, Thanapoom [1 ]
机构
[1] Kasetsart Univ, Kasetsart Univ Res & Dev Inst KURDI, Sci Equipment & Res Div, Bangkok 10900, Thailand
[2] Kasetsart Univ, Fac Agroind, Dept Food Sci & Technol, Bangkok 10900, Thailand
关键词
Pigmented rice; Mycobiota; Mycotoxin; Mycotoxigenic fungi; Ochratoxin A; Citrinin; MYCOTOXIN CONTAMINATION; CEREAL; SAMPLES; MAIZE; FUNGI; IDENTIFICATION; NOMENCLATURE; MYCOFLORA; AFLATOXIN; EXPOSURE;
D O I
10.1016/j.jspr.2024.102323
中图分类号
Q96 [昆虫学];
学科分类号
摘要
Pigmented rice has gained interest for its nutritional and health benefits attributed to its bioactive compounds. Despite these advantages, the vulnerability of pigmented rice to mycotoxin contamination poses a major concern. This study examined the mycobiota of seven Thai pigmented rice varieties, with a focus on fungi capable of producing ochratoxin A (OTA) and citrinin. The study analyzed 110 pigmented rice samples and found that the Aspergillus section Aspergillus was predominant (50 - 82.35%), followed by Penicillium species (12.50 - 70.59%). One isolate of A. carbonarius from Aspergillus section Nigri (1/112) and two isolates from Aspergillus section Circumdati (2/61) - A. steynii and A. flocculosus - produced OTA. However, none of the Penicillium species produced OTA, though citrinin production was notable in P. citrinum (128/280). The study found that the Black Jasmine rice and Red Jasmine rice varieties were more susceptible to mycotoxin production, while the Luem Pua glutinous rice and Hom Nil rice varieties displayed more resistance to the accumulation of both mycotoxins. These findings should guide targeted strategies to mitigate mycotoxin risks and ensure the safety of pigmented rice in the food chain.
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页数:12
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共 70 条
[1]  
Abd El-Aziz ARM, 2013, J PURE APPL MICROBIO, V7, P45
[2]   Production of patulin and citrinin by penicillium expansum from British columbia (Canada) apples [J].
Abramson D. ;
Lombaert G. ;
Clear R.M. ;
Sholberg P. ;
Trelka R. ;
Rosin E. .
Mycotoxin Research, 2009, 25 (2) :85-88
[3]   OTA-producing fungi in foodstuffs: A review [J].
Amezqueta, S. ;
Schorr-Galindo, S. ;
Murillo-Arbizu, M. ;
Gonzalez-Penas, E. ;
Lopez de Cerain, A. ;
Guiraud, J. P. .
FOOD CONTROL, 2012, 26 (02) :259-268
[4]   Fumonisin and T-2 toxin production of Fusarium spp. isolated from complete feed and individual agricultural commodities used in shrimp farming [J].
Anukul, Nampeung ;
Maneeboon, Thanapoom ;
Roopkham, Chanram ;
Chuaysrinule, Chananya ;
Mahakarnchanakul, Warapa .
MYCOTOXIN RESEARCH, 2014, 30 (01) :9-16
[5]   Mycotoxin levels and incidence of mould in Turkish rice [J].
Aydin, Ali ;
Aksu, Harun ;
Gunsen, Ugur .
ENVIRONMENTAL MONITORING AND ASSESSMENT, 2011, 178 (1-4) :271-280
[6]   Phenolic Profile and Susceptibility to Fusarium Infection of Pigmented Maize Cultivars [J].
Bernardi, Jamila ;
Stagnati, Lorenzo ;
Lucini, Luigi ;
Rocchetti, Gabriele ;
Lanubile, Alessandra ;
Cortellini, Carolina ;
De Poli, Giovanni ;
Busconi, Matteo ;
Marocco, Adriano .
FRONTIERS IN PLANT SCIENCE, 2018, 9
[7]   Status of Bioactive Compounds from Bran of Pigmented Traditional Rice Varieties and Their Scope in Production of Medicinal Food with Nutraceutical Importance [J].
Bhat, Farhan Mohiuddin ;
Sommano, Sarana Rose ;
Riar, Charanjit Singh ;
Seesuriyachan, Phisit ;
Chaiyaso, Thanongsak ;
Prom-u-Thai, Chanakan .
AGRONOMY-BASEL, 2020, 10 (11)
[8]   Low occurrence of patulin- and citrinin-producing species isolated from grapes [J].
Bragulat, M. R. ;
Abarca, M. L. ;
Cabanes, F. J. .
LETTERS IN APPLIED MICROBIOLOGY, 2008, 47 (04) :286-289
[9]   Polyphasic taxonomy of Aspergillus section Aspergillus (formerly Eurotium), and its occurrence in indoor environments and food [J].
Chen, A. J. ;
Hubka, V. ;
Frisvad, J. C. ;
Visagie, C. M. ;
Houbraken, J. ;
Meijer, M. ;
Varga, J. ;
Demirel, R. ;
Jurjevic, Z. ;
Kubatova, A. ;
Sklenar, F. ;
Zhou, Y. G. ;
Samson, R. A. .
STUDIES IN MYCOLOGY, 2017, (88) :37-135
[10]   Black Barley as a Means of Mitigating Deoxynivalenol Contamination [J].
Choo, Thin Meiw ;
Vigier, Bernard ;
Savard, Marc E. ;
Blackwell, Barbara ;
Martin, Richard ;
Wang, Junmei ;
Yang, Jianming ;
Abdel-Aal, El-Sayed M. .
CROP SCIENCE, 2015, 55 (03) :1096-1103