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首页> 外文期刊>Frontiers in Genetics >A Network Approach of Gene Co-expression in the Zea mays/ Aspergillus flavus Pathosystem to Map Host/Pathogen Interaction Pathways
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A Network Approach of Gene Co-expression in the Zea mays/ Aspergillus flavus Pathosystem to Map Host/Pathogen Interaction Pathways

机译:网络共同表达 Zea mays / flaperus flavus 病理系统的网络方法,以定位宿主/病原体相互作用途径

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摘要

A gene co-expression network (GEN) was generated using a dual RNA-seq study with the fungal pathogen Aspergillus flavus and its plant host Zea mays during the initial 3 days of infection. The analysis deciphered novel pathways and mapped genes of interest in both organisms during the infection. This network revealed a high degree of connectivity in many of the previously recognized pathways in Z. mays such as jasmonic acid, ethylene, and reactive oxygen species (ROS). For the pathogen A. flavus , a link between aflatoxin production and vesicular transport was identified within the network. There was significant interspecies correlation of expression between Z. mays and A. flavus for a subset of 104 Z. mays , and 1942 A. flavus genes. This resulted in an interspecies subnetwork enriched in multiple Z. mays genes involved in the production of ROS. In addition to the ROS from Z. mays , there was enrichment in the vesicular transport pathways and the aflatoxin pathway for A. flavus . Included in these genes, a key aflatoxin cluster regulator, AflS, was found to be co-regulated with multiple Z. mays ROS producing genes within the network, suggesting AflS may be monitoring host ROS levels. The entire GEN for both host and pathogen, and the subset of interspecies correlations, is presented as a tool for hypothesis generation and discovery for events in the early stages of fungal infection of Z. mays by A. flavus .
机译:在感染的最初3天中,利用真菌病原体黄曲霉及其植物寄主玉米进行了双重RNA-seq研究,生成了基因共表达网络(GEN)。该分析在感染过程中破译了两种生物中的新途径并绘制了目标基因。该网络揭示了在玉米。中许多先前公认的途径中的高度连通性,例如茉莉酸,乙烯和活性氧(ROS)。对于病原体黄曲霉,在网络中发现了黄曲霉毒素生产与水泡运输之间的联系。对于104个Z. mays和1942 A. flavus基因的一个子集,Z。mays和A. flavus之间的表达之间存在显着的种间相关性。这导致种间子网络富含参与生产ROS的多个玉米双歧杆菌基因。除玉米Z中的ROS外,黄曲霉的囊泡转运途径和黄曲霉毒素途径也有富集。这些基因中包括一个关键的黄曲霉毒素簇调节剂AflS,它与网络中多个产Z. mays ROS的基因共同调控,表明AflS可能正在监测宿主ROS的水平。寄主和病原体的整个GEN,以及种间相关性的子集,被提出作为一种工具,用于假说的产生和发现黄曲霉真菌感染玉米早期阶段的事件。

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