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Transcriptome analysis of maize reveals potential key genes involved in the response to belowground herbivore Holotrichia parallela larvae feeding

机译:玉米的转录组分析揭示了涉及到地下草本食草的反应中的潜在关键基因 Holotrichia Parssiala 幼虫喂养

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The larvae of Holotrichia parallela , a destructive belowground herbivore, causes tremendous damages to maize plants. However, little is known if there are any defense mechanisms in maize roots to defend themselves against this herbivore. In the current research, we carried out RNA-sequencing to investigate the changes in gene transcription level in maize roots after H. parallela larvae infestation. A total of 644 up-regulated genes and 474 down-regulated genes was found. In addition, Gene ontology (GO) annotation analysis and Kyoto Encyclopedia of Genes and Genomes (KEGG) pathway analysis were performed. Weighted gene co-expression network analysis (WGCNA) indicated that peroxidase genes may be the hub genes that regulate maize defenses to H. parallela larvae attack. We also found 105 transcription factors, 44 hormone-related genes, and 62 secondary metabolism-related genes within differentially expressed genes (DEGs). Furthermore, the expression profiles of 12 DEGs from the transcriptome analysis were confirmed by quantitative real-time PCR experiments. This transcriptome analysis provides insights into the molecular mechanisms of the underground defense in maize roots to H. parallela larvae attack and will help to select target genes of maize for defense against belowground herbivory.
机译:Holotrichia Pararya的幼虫,一个破坏性的地下食草动物,导致玉米植物造成巨大损害。然而,如果玉米根部有任何防御机制,则众所周知的是,玉米根来捍卫这种食草动物。在目前的研究中,我们进行了RNA测序,以研究玉米根部在 H后的基因转录水平的变化。 Passparta Larvae侵扰。发现总共644个上调基因和474个下调基因。此外,还进行了基因本体(GO)注释分析和基因和基因组(KEGG)途径分析的京都百科全书。加权基因共表达网络分析(WGCNA)表明过氧化物酶基因可以是调节玉米防御的轮毂基因。 Pararatala Larvae攻击。我们还发现了105个转录因子,44个激素相关基因和62个次生代谢相关基因在差异表达基因(DEGS)中。此外,通过定量实时PCR实验证实了来自转录组分析的12次的表达谱。该转录组分析能够深入了解玉米根部的地下防御的分子机制至 h。 Passparta Larvae攻击并将有助于选择玉米的目标基因,以防止地下草食病。

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