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Function, Discovery, and Exploitation of Plant Pattern Recognition Receptors for Broad-Spectrum Disease Resistance
Annual Review of Phytopathology ( IF 9.1 ) Pub Date : 2017-08-04 00:00:00 , DOI: 10.1146/annurev-phyto-080614-120106
Freddy Boutrot 1 , Cyril Zipfel 1
Affiliation  

Plants are constantly exposed to would-be pathogens and pests, and thus have a sophisticated immune system to ward off these threats, which otherwise can have devastating ecological and economic consequences on ecosystems and agriculture. Plants employ receptor kinases (RKs) and receptor-like proteins (RLPs) as pattern recognition receptors (PRRs) to monitor their apoplastic environment and detect non-self and damaged-self patterns as signs of potential danger. Plant PRRs contribute to both basal and non-host resistances, and treatment with pathogen-/microbe-associated molecular patterns (PAMPs/MAMPs) or damage-associated molecular patterns (DAMPs) recognized by plant PRRs induces both local and systemic immunity. Here, we comprehensively review known PAMPs/DAMPs recognized by plants as well as the plant PRRs described to date. In particular, we describe the different methods that can be used to identify PAMPs/DAMPs and PRRs. Finally, we emphasize the emerging biotechnological potential use of PRRs to improve broad-spectrum, and potentially durable, disease resistance in crops.

中文翻译:


广谱抗病性植物模式识别受体的功能,发现和开发

植物不断地暴露于潜在的病原体和害虫中,因此具有先进的免疫系统来抵御这些威胁,否则这些威胁可能对生态系统和农业造成毁灭性的生态和经济后果。植物利用受体激酶(RKs)和受体样蛋白(RLP)作为模式识别受体(PRR)来监测其质外环境并检测非自我和受损自我模式作为潜在危险的迹象。植物PRRs促进了基础抗性和非宿主抗性,并且用植物PRR识别的病原体/微生物相关分子模式(PAMPs / MAMPs)或损伤相关分子模式(DAMPs)进行治疗可诱导局部和全身免疫。在这里,我们全面回顾了植物公认的已知PAMP / DAMP以及迄今为止描述的植物PRR。尤其是,我们描述了可用于识别PAMP / DAMP和PRR的不同方法。最后,我们强调了PRR在提高作物的广谱性和潜在的持久性抗病性方面新兴的生物技术潜力。

更新日期:2017-08-04
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