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Crop Science, ISSN 0011-183X, 03/2018, Volume 58, Issue 2, pp. 564 - 578
Fusarium ear rot [caused by Fusarium verticillioides (Sacc.) Nirenberg] is one of the most prevalent diseases of maize (Zea mays L.) worldwide, and has one of... 
QUANTITATIVE TRAIT LOCI | MULTIPLE FAMILIES | AGRONOMY | LINKAGE DISEQUILIBRIUM | FUMONISIN PRODUCTION | LINE CROSSES | ZEA-MAYS L | COMPLEX TRAITS | DISEASE RESISTANCE | PLANT-RESISTANCE | LEAF-BLIGHT
Journal Article
Crop Science, ISSN 0011-183X, 11/2013, Volume 53, Issue 6, pp. 2374 - 2383
Maize (Zea mays L.) susceptibility to ear rot by Aspergillus flavus (Link:Fr) and aflatoxin accumulation causes global economic and human health damage. Host... 
QUANTITATIVE TRAIT LOCI | EAR ROT | POPULATION | AGRONOMY | LINKAGE DISEQUILIBRIUM | ENVIRONMENT | GERMPLASM LINES | DIVERSITY | REGISTRATION | CONTRIBUTING RESISTANCE | SINGLE NUCLEOTIDE POLYMORPHISMS
Journal Article
Crop Science, ISSN 0011-183X, 09/2015, Volume 55, Issue 5, pp. 1857 - 1867
Contamination of maize (Zea mays L.) with aflatoxin, produced by the fungus Aspergillus flavus Link, has severe health and economic consequences. Efforts to... 
EAR ROT | POPULATION | AGRONOMY | KERNEL INFECTION | CORN | GERMPLASM LINE | REGISTRATION | IDENTIFICATION | MYCOTOXINS
Journal Article
Toxins, ISSN 2072-6651, 02/2018, Volume 10, Issue 2, p. 61
Many projects have identified candidate genes for resistance to aflatoxin accumulation or Aspergillus flavus infection and growth in maize using genetic... 
Maize | Aspergillus flavus | Aflatoxin | Zea mays L | Candidate genes | TRANSCRIPTION FACTORS | or enzymatic pathways that may have a significant effect on reducing fungal infection and | CHITINASES | thus making it difficult to determine which one(s) may be most relevant to pursue in breeding for improved resistance | Quantitative trait loci associated with resistance to Aspergillus flavus and | aflatoxin | or aflatoxin accumulation | IDENTIFICATION | maize | CONTRIBUTING RESISTANCE | PLATFORM | QUANTITATIVE TRAIT LOCI | DATABASE | candidate genes | or aflatoxin production can be quite large and are comprised of thousands of genes | TOXICOLOGY | ACCUMULATION | Many of the identified candidates genes offer clues to key metabolic and | PROTEINS | EXPRESSION | The authors examined maize mapping populations for association of polymorphisms within 195 candidate genes that may be involved in resistance | Nucleotide sequence | Genes | Genomics | Corn | Infections | Contamination | Accumulation | Gene sequencing | Annotations | Consolidation | Proteomics | Gene mapping | Deoxyribonucleic acid--DNA | Key Contribution | Quantitative trait loci associated with resistance to Aspergillus flavus and/or aflatoxin production can be quite large and are comprised of thousands of genes, thus making it difficult to determine which one(s) may be most relevant to pursue in breeding for improved resistance. The authors examined maize mapping populations for association of polymorphisms within 195 candidate genes that may be involved in resistance. Many of the identified candidates genes offer clues to key metabolic and/or enzymatic pathways that may have a significant effect on reducing fungal infection and/or aflatoxin accumulation
Journal Article
Crop Science, ISSN 0011-183X, 03/2018, Volume 58, Issue 2, pp. 529 - 539
Fall armyworm [ FAW, Spodoptera frugiperda (J. E. Smith)] and southwestern corn borer (SWCB, Diatraea grandiosella Dyar) are damaging insect pests of maize... 
LEPIDOPTERA-NOCTUIDAE | AGRONOMY | DIATRAEA | AFLATOXIN ACCUMULATION | MARKER-ASSISTED SELECTION | GENOMIC REGIONS | INFESTATION | GERMPLASM LINE | POPULATIONS | TROPICAL MAIZE | REGISTRATION
Journal Article
Crop Science, ISSN 0011-183X, 2015, Volume 55, Issue 4, pp. 1435 - 1436
Journal Article
South African Journal of Plant and Soil, ISSN 0257-1862, 04/2016, Volume 33, Issue 2, pp. 141 - 148
Maize (Zea mays L.) plays a dominant role in farming systems in sub-Saharan Africa (SSA). There has been a four-to-five-fold increase in the number of seed... 
maize seed | Zea mays | DNA fingerprinting | simple sequence repeat | open-pollinated varieties | Maize seed | Simple sequence repeat | Open-pollinated varieties
Journal Article
Crop Science, ISSN 0011-183X, 2017, Volume 57, Issue 3, pp. 1039 - 1041
Journal Article