The Sainsbury Laboratory, University of East Anglia, Norwich, UK.
Plant Breeding, Wageningen University and Research, Wageningen, Netherlands.
Mol Plant Pathol. 2020 Nov;21(11):1502-1512. doi: 10.1111/mpp.12987. Epub 2020 Sep 15.
Potato late blight, caused by the oomycete pathogen Phytophthora infestans, significantly hampers potato production. Recently, a new Resistance to Phytophthora infestans (Rpi) gene, Rpi-amr1, was cloned from a wild Solanum species, Solanum americanum. Identification of the corresponding recognized effector (Avirulence or Avr) genes from P. infestans is key to elucidating their naturally occurring sequence variation, which in turn informs the potential durability of the cognate late blight resistance. To identify the P. infestans effector recognized by Rpi-amr1, we screened available RXLR effector libraries and used long read and cDNA pathogen-enrichment sequencing (PenSeq) on four P. infestans isolates to explore the untested effectors. Using single-molecule real-time sequencing (SMRT) and cDNA PenSeq, we identified 47 highly expressed effectors from P. infestans, including PITG_07569, which triggers a highly specific cell death response when transiently coexpressed with Rpi-amr1 in Nicotiana benthamiana, suggesting that PITG_07569 is Avramr1. Here we demonstrate that long read and cDNA PenSeq enables the identification of full-length RXLR effector families and their expression profile. This study has revealed key insights into the evolution and polymorphism of a complex RXLR effector family that is associated with the recognition by Rpi-amr1.
马铃薯晚疫病由卵菌病原体致病疫霉引起,严重阻碍了马铃薯的生产。最近,从野生茄属植物Solanum americanum 中克隆出了一个新的抗致病疫霉(Rpi)基因 Rpi-amr1。鉴定致病疫霉中相应的识别效应物(无毒或 Avr)基因对于阐明其自然发生的序列变异至关重要,而这反过来又为同源晚疫病抗性的潜在耐久性提供了信息。为了鉴定被 Rpi-amr1 识别的致病疫霉效应物,我们筛选了现有的 RXLR 效应物文库,并使用长读长和 cDNA 病原体富集测序(PenSeq)对四个致病疫霉菌株进行了测序,以探索未测试的效应物。使用单分子实时测序(SMRT)和 cDNA PenSeq,我们从致病疫霉中鉴定出 47 个高表达效应物,包括 PITG_07569,当它与 Rpi-amr1 在本氏烟中瞬时共表达时会引发高度特异性的细胞死亡反应,这表明 PITG_07569 是 AvrRpi-amr1。在这里,我们证明了长读长和 cDNA PenSeq 能够鉴定全长 RXLR 效应物家族及其表达谱。这项研究揭示了与 Rpi-amr1 识别相关的复杂 RXLR 效应物家族的进化和多态性的关键见解。