Aspergillus section Flavi community structure in Zambia influences aflatoxin contamination of maize and groundnut

被引:44
作者
Kachapulula, Paul W. [1 ,2 ]
Akello, Juliet [3 ]
Bandyopadhyay, Ranajit [4 ]
Cotty, Peter J. [1 ,5 ]
机构
[1] Univ Arizona, Sch Plant Sci, Tucson, AZ 85721 USA
[2] Univ Zambia, Sch Agr Sci, POB 32379, Lusaka, Zambia
[3] IITA, Lusaka, Zambia
[4] IITA, PMB 5320, Ibadan, Nigeria
[5] Univ Arizona, USDA ARS, Sch Plant Sci, Tucson, AZ 85721 USA
基金
美国农业部;
关键词
Aspergillus; Flavi; Aflatoxin; Maize; Groundnuts; Zambia; VEGETATIVE COMPATIBILITY GROUPS; 3 AGROECOLOGICAL ZONES; UNITED-STATES; PARASITICUS; EXPOSURE; FUNGI; AREAS; CALIFORNIA; DIVERSITY; OUTBREAK;
D O I
10.1016/j.ijfoodmicro.2017.08.014
中图分类号
TS2 [食品工业];
学科分类号
0832 ;
摘要
Aflatoxins are cancer-causing, immuno-suppressive mycotoxins that frequently contaminate important staples in Zambia including maize and groundnut. Several species within Aspergillus section Flavi have been implicated as causal agents of aflatoxin contamination in Africa. However, Aspergillus populations associated with aflatoxin contamination in Zambia have not been adequately detailed. Most of Zambia's arable land is non-cultivated and Aspergillus communities in crops may originate in non -cultivated soil. However, relationships between Aspergillus populations on crops and those resident in non -cultivated soils have not been explored. Because characterization of similar fungal populations outside of Zambia have resulted in strategies to prevent aflatoxins, the current study sought to improve understanding of fungal communities in cultivated and non -cultivated soils and in crops. Crops (n = 412) and soils from cultivated (n = 160) and non -cultivated land (n = 60) were assayed for Aspergillus section Flavi from 2012 to 2016. The L-strain morphotype of Aspergillus f/ayus and A. parasiticus were dominant on maize and groundnut (60% and 42% of Aspergillus section Flavi, respectively). Incidences of A. flavus L-morphotype were negatively correlated with aflatoxin in groundnut (log y = 2.4990935 0.09966x, R-2 = 0.79, P = 0.001) but not in maize. Incidences of A. parasiticus partially explained groundnut aflatoxin concentrations in all agroecologies and maize aflatoxin in agroecology III (log y = 0.1956034 + 0.510379x, R-2 = 0.57, P < 0.001) supporting A. parasiticus as the dominant etiologic agent of aflatoxin contamination in Zambia. Communities in both non -cultivated and cultivated soils were dominated by A. parasiticus (69% and 58%, respectively). Aspergillus parasiticus from cultivated and non -cultivated land produced statistically similar concentrations of aflatoxins. Aflatoxin-producers causing contamination of crops in Zambia may be native and, originate from non -cultivated areas, and not be introduced with non-native crops such as maize and groundnut. Non -cultivated land may be an important reservoir from which aflatoxin-producers are repeatedly introduced to cultivated areas. The potential of atoxigenic members of the A. flavus-L morphotype for management of aflatoxin in Zambia is also suggested. Characterization of the causal agents of aflatoxin contamination in agroecologies across Zambia gives support for modifying fungal community structure to reduce the aflatoxin-producing potential.
引用
收藏
页码:49 / 56
页数:8
相关论文
共 35 条
[1]   Field efficacy of a mixture of atoxigenic Aspergillus flavus Link: Fr vegetative compatibility groups in preventing aflatoxin contamination in maize (Zea mays L.) [J].
Atehnkeng, J. ;
Ojiambo, P. S. ;
Cotty, P. J. ;
Bandyopadhyay, R. .
BIOLOGICAL CONTROL, 2014, 72 :62-70
[2]   Environmental distribution and genetic diversity of vegetative compatibility groups determine biocontrol strategies to mitigate aflatoxin contamination of maize by Aspergillus flavus [J].
Atehnkeng, Joseph ;
Donner, Matthias ;
Ojiambo, Peter S. ;
Ikotun, Babatunde ;
Augusto, Joao ;
Cotty, Peter J. ;
Bandyopadhyay, Ranajit .
MICROBIAL BIOTECHNOLOGY, 2016, 9 (01) :75-88
[3]   Distribution and toxigenicity of Aspergillus species isolated from maize kernels from three agro-ecological zones in Nigeria [J].
Atehrikeng, Joseph ;
Ojiambo, Peter S. ;
Donner, Matthias ;
Ikotun, T. ;
Sikora, Richard A. ;
Cotty, Peter J. ;
Bandyopadhyay, Ranajit .
INTERNATIONAL JOURNAL OF FOOD MICROBIOLOGY, 2008, 122 (1-2) :74-84
[4]   Aspergillus flavus and aflatoxin contamination of leguminous trees of the Sonoran Desert in Arizona [J].
Boyd, ML ;
Cotty, PJ .
PHYTOPATHOLOGY, 2001, 91 (09) :913-919
[5]  
Bunyolo A., 1995, Zambia Seed Technology Handbook, P19
[6]  
Cotty P. J., 2008, Mycotoxins: detection methods, management, public health and agricultural trade, P287, DOI 10.1079/9781845930820.0287
[7]   Influences of climate on aflatoxin producing fungi and aflatoxin contamination [J].
Cotty, Peter J. ;
Jaime-Garcia, Ramon .
INTERNATIONAL JOURNAL OF FOOD MICROBIOLOGY, 2007, 119 (1-2) :109-115
[8]   AFLATOXIN AND SCLEROTIAL PRODUCTION BY ASPERGILLUS-FLAVUS - INFLUENCE OF PH [J].
COTTY, PJ .
PHYTOPATHOLOGY, 1988, 78 (09) :1250-1253
[9]  
Cotty PJ, 1999, APPL ENVIRON MICROB, V65, P2264
[10]   COMPARISON OF 4 MEDIA FOR THE ISOLATION OF ASPERGILLUS-FLAVUS GROUP FUNGI [J].
COTTY, PJ .
MYCOPATHOLOGIA, 1994, 125 (03) :157-162