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首页> 外文期刊>Scientific reports. >Identification of Fusarium oxysporum f. sp. cubense tropical race 4 (Foc TR4) responsive miRNAs in banana root
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Identification of Fusarium oxysporum f. sp. cubense tropical race 4 (Foc TR4) responsive miRNAs in banana root

机译:牡蛎鉴定牡蛎F. sp。立方体热带比赛4(Foc TR4)在香蕉根中响应Mirnas

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The fungus, Fusarium oxysporum f. sp. cubense (Foc), is the causal agent of Fusarium wilt disease, which is the most serious disease affecting the whole banana industry. Although extensive studies have characterized many Foc-responsive genes in banana, the molecular mechanisms on microRNA level underlying both banana defense and Foc pathogenesis are not yet fully understood. In this study, we aimed to reveal the role of miRNA during banana-Foc TR4 interactions. Illumina sequencing was used to reveal the changes in small RNAome profiles in roots of Foc TR4-inoculated 'Tianbaojiao' banana (Musa acuminata cv. Tianbaojiao) in the early stages (i.e. 5?h, 10?h and 25?h post Foc TR4 inoculation, respectively). The expression of some differentially expressed (DE) miRNAs and their predicted target genes was studied by using quantitative real time PCR (qRT-PCR). Totally, 254 known miRNAs from 31 miRNA families and 28 novel miRNAs were identified. Differential expression analysis identified 84, 77 and 74 DE miRNAs at the three respective Foc TR4 infection time points compared with control healthy banana (CK). GO and KEGG analysis revealed that most of the predicted target genes of DE miRNAs (DET) were implicated in peroxisome, fatty acid metabolism, auxin-activated signaling pathway, sulfur metabolism, lignin metabolism and so on, and many known stress responsive genes were identified to be DETs. Moreover, expected inverse correlations were confirmed between some miRNA and their corresponding target genes by using qRT-PCR analysis. Our study revealed that miRNA play important regulatory roles during the banana-Foc TR4 interaction by regulating peroxidase, fatty acid metabolism, auxin signaling, sulfur metabolism, lignin metabolism related genes and many known stress responsive genes.
机译:真菌,镰刀菌孢子。 sp。 Cumenst(Foc)是镰刀菌枯萎病的因果因子,这是影响整个香蕉行业的最严重的疾病。虽然广泛的研究表征了香蕉中许多焦点响应基因,但尚未完全理解香蕉防御和归型疾病的MicroRNA水平的分子机制。在这项研究中,我们旨在揭示MiRNA在香蕉 - 焦谱TR4相互作用期间的作用。 Illumina测序用于揭示在早期阶段的Foc Tr4接种的'天宝胶鸡'香蕉(天宝胶胶型)中小RNA组谱的变化分别接种)。通过使用定量实时PCR(QRT-PCR)研究了一些差异表达(DE)miRNA及其预测的靶基因的表达。完全,鉴定了来自31个miRNA家族的254名麦芽群和28个新的miRNA。与对照健康香蕉(CK)相比,差异表达分析在三个相应的FOC TR4感染时间点处鉴定了84,77和74 de miRNA。 Go和Kegg分析显示,De miRNA(Det)的大多数预测的靶基因均涉及过氧化物组织,脂肪酸代谢,活泼的信号传导途径,硫代谢,木质素代谢等,并确定了许多已知的应激响应基因是decs。此外,通过使用QRT-PCR分析,在一些miRNA和它们相应的靶基因之间确认预期的逆相关性。我们的研究表明,MiRNA通过调节过氧化物酶,脂肪酸代谢,毒素信号传导,硫代谢,木质素代谢相关基因和许多已知的应激响应基因,在香蕉-Coc TR4相互作用中发挥着重要的调节作用。

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