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Glycolate oxidase gene family in Nicotiana benthamiana: genome-wide identification and functional analyses in disease resistance

机译:本氏烟草中的乙醇酸氧化酶基因家族:全基因组鉴定和抗病性的功能分析

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摘要

Glycolate oxidase (GOX)-dependent production of H2O2 in response to pathogens and its function in disease resistance are still poorly understood. In this study, we performed genome-wide identification of GOX gene family in Nicotiana benthamiana and analyzed their function in various types of disease resistance. Sixteen GOX genes were identified in N. benthamiana genome. They consisted of GOX and HAOX groups. All but two NbGOX proteins contained an alpha_hydroxyacid_oxid_FMN domain with extra 43–52 amino acids compared to that of FMN-dependent alpha-hydroxyacid oxidizing enzymes (NCBI-CDD cd02809). Silencing of three NbGOX family genes NbHAOX8, NbGOX1 and NbGOX4 differently affected resistance to various pathogens including Tobacco rattle virus, Xanthomonas oryzae pv. oryzae (Xoo) and Sclerotinia sclerotiorum. Effect of these genes on resistance to Xoo is well correlated with that on Xoo–responsive H2O2 accumulation. Additionally, silencing of these genes enhanced PAMP-triggered immunity as shown by increased flg22-elicited H2O2 accumulation in NbGOX-silenced plants. These NbGOX family genes were distinguishable in altering expression of defense genes. Analysis of mutual effect on gene expression indicated that NbGOX4 might function through repressing NbHAOX8 and NbGOX1. Collectively, our results reveal the important roles and functional complexity of GOX genes in disease resistance in N. benthamiana.
机译:对病原体响应的乙醇酸氧化酶(GOX)依赖的H2O2产生及其在抗病性中的功能仍知之甚少。在这项研究中,我们进行了本氏烟草中GOX基因家族的全基因组鉴定,并分析了它们在各种类型的抗病性中的功能。在本氏烟草基因组中鉴定出十六个GOX基因。他们由GOX和HAOX组组成。与FMN依赖的α-羟酸氧化酶(NCBI-CDD cd02809)相比,除两个NbGOX蛋白外,所有的NbGOX蛋白都包含具有额外43-52个氨基酸的alpha_hydroxyacid_oxid_FMN域。三个NbGOX家族基因NbHAOX8,NbGOX1和NbGOX4的沉默不同地影响了对各种病原体的抗性,其中包括烟草拨浪鼓病毒,米黄单胞菌(Xanthomonas oryzae pv)。稻(Xoo)和核盘菌核盘菌。这些基因对Xoo的抗性与对Xoo响应的H2O2积累的影响密切相关。此外,这些基因的沉默增强了PAMP触发的免疫力,如flb22引起的NbGOX沉默植物中H2O2积累的增加所表明的。这些NbGOX家族基因在改变防御基因的表达方面是可区分的。对基因表达的相互影响分析表明, NbGOX4 可能通过抑制 NbHAOX8 NbGOX1 发挥作用。总的来说,我们的结果揭示了 N GOX 基因在抗病性中的重要作用和功能复杂性。 benthamiana

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