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Comparative Histological and Transcriptional Analysis of Maize Kernels Infected with Aspergillus flavus and Fusarium verticillioides

机译:黄曲霉菌和小镰刀菌感染的玉米仁的比较组织学和转录分析

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摘要

Aspergillus flavus and Fusarium verticillioides infect maize kernels and contaminate them with the mycotoxins aflatoxin, and fumonisin, respectively. Genetic resistance in maize to these fungi and to mycotoxin contamination has been difficult to achieve due to lack of identified resistance genes. The objective of this study was to identify new candidate resistance genes by characterizing their temporal expression in response to infection and comparing expression of these genes with genes known to be associated with plant defense. Fungal colonization and transcriptional changes in kernels inoculated with each fungus were monitored at 4, 12, 24, 48, and 72 h post inoculation (hpi). Maize kernels responded by differential gene expression to each fungus within 4 hpi, before the fungi could be observed visually, but more genes were differentially expressed between 48 and 72 hpi, when fungal colonization was more extensive. Two-way hierarchal clustering analysis grouped the temporal expression profiles of the 5,863 differentially expressed maize genes over all time points into 12 clusters. Many clusters were enriched for genes previously associated with defense responses to either A. flavus or F. verticillioides. Also within these expression clusters were genes that lacked either annotation or assignment to functional categories. This study provided a comprehensive analysis of gene expression of each A. flavus and F. verticillioides during infection of maize kernels, it identified genes expressed early and late in the infection process, and it provided a grouping of genes of unknown function with similarly expressed defense related genes that could inform selection of new genes as targets in breeding strategies.
机译:黄曲霉和镰刀菌(Fusarium v​​erticillioides)感染玉米粒,并分别被霉菌毒素黄曲霉毒素和伏马菌素污染。由于缺乏已确定的抗性基因,很难实现玉米对这些真菌和霉菌毒素污染的遗传抗性。这项研究的目的是通过表征新的候选抗性基因,以表征它们对感染的反应时间表达,并将这些基因的表达与已知与植物防御相关的基因进行比较。在接种后第4、12、24、48和72小时(hpi)监测每种真菌接种的籽粒中的真菌定植和转录变化。在目测观察到真菌之前,玉米粒在4 hpi内对每种真菌都有差异基因表达,但当真菌定植更广泛时,在48至72 hpi之间有更多的基因差异表达。双向层次聚类分析将在所有时间点上的5,863个差异表达的玉米基因的时间表达谱分为12个类。许多簇丰富了以前与黄曲霉或网状拟南芥防御反应相关的基因。在这些表达簇中还存在缺乏注释或功能分类的基因。这项研究提供了一个全面的分析,在玉米粒感染过程中,每一个黄曲霉菌和黄萎病菌的基因表达,鉴定了在感染过程中早晚表达的基因,并提供了一组功能未知,防御力相似的基因。相关基因,这些基因可以指导选择新基因作为育种策略的靶标。

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