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首页> 外文期刊>The New Phytologist >Arabidopsis EF-Tu receptor enhances bacterial disease resistance in transgenic wheat
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Arabidopsis EF-Tu receptor enhances bacterial disease resistance in transgenic wheat

机译:拟南芥EF-Tu受体增强转基因小麦的细菌抗病性

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摘要

Perception of pathogen (or microbe)-associated molecular patterns (PAMPs/MAMPs) by pattern recognition receptors (PRRs) is a key component of plant innate immunity. The Arabidopsis PRR EF-Tu receptor (EFR) recognizes the bacterial PAMP elongation factor Tu (EF-Tu) and its derived peptide elf18. Previous work revealed that transgenic expression of AtEFR in Solanaceae confers elf18 responsiveness and broad-spectrum bacterial disease resistance. In this study, we developed a set of bioassays to study the activation of PAMP-triggered immunity (PTI) in wheat. We generated transgenic wheat (Triticum aestivum) plants expressing AtEFR driven by the constitutive rice actin promoter and tested their response to elf18. We show that transgenic expression of AtEFR in wheat confers recognition of elf18, as measured by the induction of immune marker genes and callose deposition. When challenged with the cereal bacterial pathogen Pseudomonas syringae pv.oryzae, transgenic EFR wheat lines had reduced lesion size and bacterial multiplication. These results demonstrate that AtEFR can be transferred successfully from dicot to monocot species, further revealing that immune signalling pathways are conserved across these distant phyla. As novel PRRs are identified, their transfer between plant families represents a useful strategy for enhancing resistance to pathogens in crops.
机译:模式识别受体(PRR)对病原体(或微生物)相关分子模式(PAMP / MAMP)的感知是植物固有免疫力的关键组成部分。拟南芥PRR EF-Tu受体(EFR)识别细菌PAMP延伸因子Tu(EF-Tu)及其衍生的肽elf18。先前的工作表明,茄科中AtEFR的转基因表达赋予elf18反应性和广谱细菌疾病抗性。在这项研究中,我们开发了一套生物测定方法来研究小麦中PAMP触发的免疫(PTI)的激活。我们生成了由组成型水稻肌动蛋白启动子驱动的表达AtEFR的转基因小麦(Triticum aestivum)植物,并测试了其对elf18的反应。我们显示,AtEFR的转基因表达在小麦中赋予了elf18识别,通过免疫标记基因的诱导和call质沉积来测量。当受到谷物细菌性病原体丁香假单胞菌(Pseudomonas syringae pv.oryzae)攻击时,转基因EFR小麦品系具有减小的病斑大小和细菌繁殖。这些结果表明,AtEFR可以成功地从双子叶植物转移到单子叶植物物种,进一步揭示了免疫信号通路在这些遥远的门上都是保守的。随着新型PRR的发现,它们在植物家族之间的转移代表了增强作物对病原体抗性的有用策略。

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