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首页> 外文期刊>Journal of Experimental Botany >Overexpression of GmERF5, a new member of the soybean EAR motif-containing ERF transcription factor, enhances resistance to Phytophthora sojae in soybean
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Overexpression of GmERF5, a new member of the soybean EAR motif-containing ERF transcription factor, enhances resistance to Phytophthora sojae in soybean

机译:过表达GmERF5(一种包含大豆EAR基序的ERF转录因子的新成员)增强了大豆对大豆疫霉菌的抗性

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摘要

For the first time, GmERF5, the soybean [Glycine max (L.) Merr.] EAR-motif-containing ERF transcriptional repressor, is demonstrated to be involved in the response to Phytophthora sojae infection.Phytophthora root and stem rot of soybean [Glycine max (L.) Merr.], caused by Phytophthora sojae Kaufmann and Gerdemann, is a destructive disease throughout the soybean planting regions in the world. Here, we report insights into the function and underlying mechanisms of a novel ethylene response factor (ERF) in soybean, namely GmERF5, in host responses to P. sojae. GmERF5-overexpressing transgenic soybean exhibited significantly enhanced resistance to P. sojae and positively regulated the expression of the PR10, PR1-1, and PR10-1 genes. Sequence analysis suggested that GmERF5 contains an AP2/ERF domain of 58 aa and a conserved ERF-associated amphiphilic repression (EAR) motif in its C-terminal region. Following stress treatments, GmERF5 was significantly induced by P. sojae, ethylene (ET), abscisic acid (ABA), and salicylic acid (SA). The activity of the GmERF5 promoter (GmERF5P) was upregulated in tobacco leaves with ET, ABA, Phytophthora nicotianae, salt, and drought treatments, suggesting that GmERF5 could be involved not only in the induced defence response but also in the ABA-mediated pathway of salt and drought tolerance. GmERF5 could bind to the GCC-box element and act as a repressor of gene transcription. It was targeted to the nucleus when transiently expressed in Arabidopsis protoplasts. GmERF5 interacted with a basic helix-loop-helix transcription factor (GmbHLH) and eukaryotic translation initiation factor (GmEIF) both in yeast cells and in planta. To the best of our knowledge, GmERF5 is the first soybean EAR motif-containing ERF transcription factor demonstrated to be involved in the response to pathogen infection.
机译:首次证明了大豆[Glycine max(L.)Merr。] EAR基序的ERF转录阻遏物GmERF5参与了对大豆疫霉菌感染的反应。大豆[Phytophthora]根和茎腐病由大豆疫霉(Phytophthora sojae Kaufmann)和热德曼(Gerdemann)引起的[max(L.)Merr。]是全世界大豆种植地区的一种破坏性疾病。在这里,我们报告洞悉大豆中新的乙烯反应因子(ERF),即GmERF5,在对大豆疫霉的宿主反应中的功能和潜在机制。过度表达GmERF5的转基因大豆对大豆疫霉的抵抗力显着增强,并正向调节PR10,PR1-1和PR10-1基因的表达。序列分析表明,GmERF5在其C端区域包含58个氨基酸的AP2 / ERF域和一个保守的ERF相关两亲阻抑(EAR)基序。压力处理后,大豆疫霉,乙烯(ET),脱落酸(ABA)和水杨酸(SA)显着诱导了GmERF5。 GmERF5启动子(GmERF5P)的活性在ET,ABA,烟草疫霉菌,盐和干旱处理下的烟叶中被上调,这表明GmERF5不仅可以参与诱导的防御反应,而且还可以参与ABA介导的抗性途径。耐盐和耐旱。 GmERF5可以结合GCC-box元件并充当基因转录的阻遏物。当在拟南芥原生质体中瞬时表达时,它被靶向细胞核。 GmERF5在酵母细胞和植物中均与碱性螺旋-环-螺旋转录因子(GmbHLH)和真核翻译起始因子(GmEIF)相互作用。据我们所知,GmERF5是第一个包含大豆EAR基序的ERF转录因子,被证明参与病原体感染的反应。

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