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Aspergillus flavus infection induces transcriptional and physical changes in developing maize kernels.


ABSTRACT: Maize kernels are susceptible to infection by the opportunistic pathogen Aspergillus flavus. Infection results in reduction of grain quality and contamination of kernels with the highly carcinogenic mycotoxin, aflatoxin. To understanding host response to infection by the fungus, transcription of approximately 9000 maize genes were monitored during the host-pathogen interaction with a custom designed Affymetrix GeneChip® DNA array. More than 4000 maize genes were found differentially expressed at a FDR of 0.05. This included the up regulation of defense related genes and signaling pathways. Transcriptional changes also were observed in primary metabolism genes. Starch biosynthetic genes were down regulated during infection, while genes encoding maize hydrolytic enzymes, presumably involved in the degradation of host reserves, were up regulated. These data indicate that infection of the maize kernel by A. flavus induced metabolic changes in the kernel, including the production of a defense response, as well as a disruption in kernel development.

SUBMITTER: Dolezal AL 

PROVIDER: S-EPMC4117183 | biostudies-literature | 2014

REPOSITORIES: biostudies-literature

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Aspergillus flavus infection induces transcriptional and physical changes in developing maize kernels.

Dolezal Andrea L AL   Shu Xiaomei X   OBrian Gregory R GR   Nielsen Dahlia M DM   Woloshuk Charles P CP   Boston Rebecca S RS   Payne Gary A GA  

Frontiers in microbiology 20140731


Maize kernels are susceptible to infection by the opportunistic pathogen Aspergillus flavus. Infection results in reduction of grain quality and contamination of kernels with the highly carcinogenic mycotoxin, aflatoxin. To understanding host response to infection by the fungus, transcription of approximately 9000 maize genes were monitored during the host-pathogen interaction with a custom designed Affymetrix GeneChip® DNA array. More than 4000 maize genes were found differentially expressed at  ...[more]

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