Identification of aflatoxigenic fungi using polymerase chain reaction-based assay
As the aflatoxins represent a health-risk for humans because of their proven carcinogenicity, food-borne fungi that produce them as secondary metabolites, mainly Aspergillus flavus and Aspergillus parasiticus, have to be isolated and identified. The best argument for identifying problem fun...
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Faculty of Technology, Novi Sad
2014-01-01
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doaj-547fb2b50eb14a5396f858d0c21ed1372020-11-24T23:46:47ZengFaculty of Technology, Novi SadActa Periodica Technologica1450-71882014-01-0120144525926910.2298/APT1445259S1450-71881445259SIdentification of aflatoxigenic fungi using polymerase chain reaction-based assayŠošo Vladislava M.0Škrinjar Marija M.1Blagojev Nevena Т.2Vesković-Moračanin Slavica M.3Faculty of Technology, Novi SadFaculty of Technology, Novi SadFaculty of Technology, Novi SadInstitute of Meat Hygiene and Technology, BelgradeAs the aflatoxins represent a health-risk for humans because of their proven carcinogenicity, food-borne fungi that produce them as secondary metabolites, mainly Aspergillus flavus and Aspergillus parasiticus, have to be isolated and identified. The best argument for identifying problem fungi is that it indicates control points within the food system as part of a hazard analysis critical control point (HACCP) approach. This assumes there is a close link between fungus and toxin. Conventional methods for isolation and identification of fungi are time consuming and require admirably dedicated taxonomists. Hence, it is imperative to develop methodologies that are relatively rapid, highly specific and as an alternative to the existing methods. The polymerase chain reaction (PCR) facilitates the in vitro amplification of the target sequence. The main advantages of PCR is that organisms need not be cultured, at least not for a long time, prior to their detection, target DNA can be detected even in a complex mixture, no radioactive probes are required, it is rapid, sensitive and highly versatile. The gene afl-2 has been isolated and shown to regulate aflatoxin biosynthesis in A. flavus. Also, the PCR reaction was targeted against aflatoxin synthesis regulatory gene (aflR1) since these genes are nearly identical in A. flavus and A. parasiticus in order to indicate the possibility of detection of both the species with the same PCR system (primers/reaction). [Projekat Ministarstva nauke Republike Srbije, br. III46009]http://www.doiserbia.nb.rs/img/doi/1450-7188/2014/1450-71881445259S.pdfaflatoxigenic fungipolymerase chain reaction |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Šošo Vladislava M. Škrinjar Marija M. Blagojev Nevena Т. Vesković-Moračanin Slavica M. |
spellingShingle |
Šošo Vladislava M. Škrinjar Marija M. Blagojev Nevena Т. Vesković-Moračanin Slavica M. Identification of aflatoxigenic fungi using polymerase chain reaction-based assay Acta Periodica Technologica aflatoxigenic fungi polymerase chain reaction |
author_facet |
Šošo Vladislava M. Škrinjar Marija M. Blagojev Nevena Т. Vesković-Moračanin Slavica M. |
author_sort |
Šošo Vladislava M. |
title |
Identification of aflatoxigenic fungi using polymerase chain reaction-based assay |
title_short |
Identification of aflatoxigenic fungi using polymerase chain reaction-based assay |
title_full |
Identification of aflatoxigenic fungi using polymerase chain reaction-based assay |
title_fullStr |
Identification of aflatoxigenic fungi using polymerase chain reaction-based assay |
title_full_unstemmed |
Identification of aflatoxigenic fungi using polymerase chain reaction-based assay |
title_sort |
identification of aflatoxigenic fungi using polymerase chain reaction-based assay |
publisher |
Faculty of Technology, Novi Sad |
series |
Acta Periodica Technologica |
issn |
1450-7188 |
publishDate |
2014-01-01 |
description |
As the aflatoxins represent a health-risk for humans because of their proven
carcinogenicity, food-borne fungi that produce them as secondary metabolites,
mainly Aspergillus flavus and Aspergillus parasiticus, have to be isolated
and identified. The best argument for identifying problem fungi is that it
indicates control points within the food system as part of a hazard analysis
critical control point (HACCP) approach. This assumes there is a close link
between fungus and toxin. Conventional methods for isolation and
identification of fungi are time consuming and require admirably dedicated
taxonomists. Hence, it is imperative to develop methodologies that are
relatively rapid, highly specific and as an alternative to the existing
methods. The polymerase chain reaction (PCR) facilitates the in vitro
amplification of the target sequence. The main advantages of PCR is that
organisms need not be cultured, at least not for a long time, prior to their
detection, target DNA can be detected even in a complex mixture, no
radioactive probes are required, it is rapid, sensitive and highly versatile.
The gene afl-2 has been isolated and shown to regulate aflatoxin biosynthesis
in A. flavus. Also, the PCR reaction was targeted against aflatoxin synthesis
regulatory gene (aflR1) since these genes are nearly identical in A. flavus
and A. parasiticus in order to indicate the possibility of detection of both
the species with the same PCR system (primers/reaction). [Projekat
Ministarstva nauke Republike Srbije, br. III46009] |
topic |
aflatoxigenic fungi polymerase chain reaction |
url |
http://www.doiserbia.nb.rs/img/doi/1450-7188/2014/1450-71881445259S.pdf |
work_keys_str_mv |
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