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Infection with toxigenic and atoxigenic strains of Aspergillus flavus induces different transcriptional signatures in maize kernels

机译:用毒性毒素和毒素毒素的感染诱导玉米核中的不同转录特征

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摘要

The application of atoxigenic Aspergillus flavus strains in maize fields has been shown to be an effective strategy for controlling contamination of aflatoxins, potent carcinogens produced by the fungus. This study monitored the expression levels of 18 defense genes against toxigenic and atoxigenic A. flavus strains in developing maize kernels over a time course of 96 h after inoculation. A stronger upregulation of genes encoding pathogenesis-related proteins, oxidative stress-related proteins, transcriptional factors and lipoxygenases were observed in response to the atoxigenic strain. On the other side, this strain showed a significant enhanced growth in the later stages of infection, measured as copy number of the constitutive calmodulin gene. These results suggest that overexpression of maize-defense-associated genes observed in response to the atoxigenic strain could contribute to an aflatoxin reduction. The identification of genes significantly affecting the resistance to A. flavus or aflatoxin accumulation would accelerate the development of resistant cultivars.
机译:已经证明了玉米田地植物毒素的施用毒性菌株是控制黄金毒素污染,用真菌产生的有效致癌物的有效策略。该研究监测了在接种后96小时的时间过程中在发育玉米核中的18例防毒基因的表达水平。响应于毒物菌株,观察到编码有关病原相关蛋白质,氧化应激相关蛋白质,转录因子和脂氧基酶的更强的上调。在另一边,该菌株在感染后的后期阶段显示出显着的增强生长,测量为组成钙调蛋白基因的拷贝数。这些结果表明,响应于毒菌菌株观察到的玉米防御相关基因的过度表达可能有助于降低过敏毒素。鉴定显着影响对A的抗性或黄曲霉毒素积累的基因将加速抗性品种的发展。

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