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首页> 外文期刊>BMC Genomics >Functional genomic analysis of constitutive and inducible defense responses to Fusarium verticillioides infection in maize genotypes with contrasting ear rot resistance
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Functional genomic analysis of constitutive and inducible defense responses to Fusarium verticillioides infection in maize genotypes with contrasting ear rot resistance

机译:功能型基因组学分析玉米基因型对镰刀菌感染的本构性和诱导型防御反应与相反的耳腐病抗性

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Background Fusarium verticillioides causes ear rot in maize (Zea mays L.) and accumulation of mycotoxins, that affect human and animal health. Currently, chemical and agronomic measures to control Fusarium ear rot are not very effective and selection of more resistant genotypes is a desirable strategy to reduce contaminations. A deeper knowledge of molecular events and genetic basis underlying Fusarium ear rot is necessary to speed up progress in breeding for resistance. Results A next-generation RNA-sequencing approach was used for the first time to study transcriptional changes associated with F. verticillioides inoculation in resistant CO441 and susceptible CO354 maize genotypes at 72?hours post inoculation. More than 100 million sequence reads were generated for inoculated and uninoculated control plants and analyzed to measure gene expression levels. Comparison of expression levels between inoculated vs. uninoculated and resistant vs. susceptible transcriptomes revealed a total number of 6,951 differentially expressed genes. Differences in basal gene expression were observed in the uninoculated samples. CO441 genotype showed a higher level of expression of genes distributed over all functional classes, in particular those related to secondary metabolism category. After F. verticillioides inoculation, a similar response was observed in both genotypes, although the magnitude of induction was much greater in the resistant genotype. This response included higher activation of genes involved in pathogen perception, signaling and defense, including WRKY transcription factors and jasmonate/ethylene mediated defense responses. Interestingly, strong differences in expression between the two genotypes were observed in secondary metabolism category: pathways related to shikimate, lignin, flavonoid and terpenoid biosynthesis were strongly represented and induced in the CO441 genotype, indicating that selection to enhance these traits is an additional strategy for improving resistance against F. verticillioides infection. Conclusions The work demonstrates that the global transcriptional analysis provided an exhaustive view of genes involved in pathogen recognition and signaling, and controlling activities of different TFs, phytohormones and secondary metabolites, that contribute to host resistance against F. verticillioides. This work provides an important source of markers for development of disease resistance maize genotypes and may have relevance to study other pathosystems involving mycotoxin-producing fungi.
机译:背景镰刀菌(Fusarium v​​erticillioides)会导致玉米(Zea mays L.)的耳腐和霉菌毒素的积累,从而影响人类和动物的健康。目前,控制镰刀菌耳腐的化学和农艺措施不是很有效,选择更具抗性的基因型是减少污染的理想策略。对镰刀菌腐烂的分子事件和遗传基础有更深入的了解对于加快抗性育种的进展是必要的。结果首次使用下一代RNA测序方法研究了在接种后72小时,与抗性CO441和易感性CO354玉米基因型中的网状镰刀菌接种相关的转录变化。已为接种和未接种的对照植物产生了超过一亿个序列读数,并进行了分析以测量基因表达水平。接种与未接种以及抗性与易感转录组之间的表达水平比较显示共有6951个差异表达基因。在未接种样品中观察到基础基因表达的差异。 CO441基因型表现出较高水平的基因表达,分布在所有功能类别上,尤其是那些与次级代谢类别有关的基因。接种细角镰孢菌后,两种基因型均观察到类似的反应,尽管抗性基因型的诱导幅度要大得多。该反应包括与病原体感知,信号传导和防御有关的基因的更高激活,包括WRKY转录因子和茉莉酸酯/乙烯介导的防御反应。有趣的是,在次级代谢类别中观察到了两种基因型之间表达的强烈差异:CO441基因型强烈代表并诱导了与sh草酸酯,木质素,类黄酮和萜类生物合成相关的途径,这表明选择增强这些性状是另一种策略改善了对网状弯曲杆菌感染的抵抗力。结论该工作表明,全局转录分析提供了与病原体识别和信号传导有关的基因的详尽视图,并控制了不同TF,植物激素和次生代谢产物的活性,从而有助于宿主抵抗网状拟南芥。这项工作为抗病玉米基因型的发展提供了重要的标志物,并且可能与研究涉及产真菌毒素的真菌的其他病理系统有关。

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