Endo‐1,4‐beta‐xylanase 1 (MoXYL1) secreted by Magnaporthe oryzae triggers defense responses and induces cell death in rice

转基因水稻 稻黄单胞菌 水稻 生物 病理系统 烟草 植物抗病性 茉莉酸 麦格纳波特 植物对草食的防御 病菌 微生物学 稻属 生物化学 格里斯麦格纳波特 基因 转基因 转基因作物
作者
Gihyun Lee,Cheol Woo Min,Ju Soon Yoo,Jeong Woo Jang,Jinmi Yoon,Lae‐Hyeon Cho,Yiming Wang,Jong‐Seong Jeon,Ravi Gupta,Sun Tae Kim
出处
期刊:Physiologia Plantarum [Wiley]
卷期号:176 (1) 被引量:2
标识
DOI:10.1111/ppl.14174
摘要

Abstract The rice blast fungus Magnaporthe oryzae devastates cultivated rice ( Oryza sativa L.), causing extensive crop losses. Despite being a major pathogen, information on this pathosystem, especially on the proteins associated with fungal pathogenicity and host defense response, is relatively scarce. Utilizing liquid chromatography‐mass spectrometry (LC–MS/MS), we identified 123 in planta‐ secreted M. oryzae proteins in rice leaves and screened for their cell death‐inducing activity. Biochemical characterization of these M. oryzae proteins revealed an endo‐1,4‐beta‐xylanase (MoXYL1), which induces cell death in Nicotiana benthamiana leaves and H 2 O 2 accumulation in rice suspension‐cultured cells. Transgenic rice plants (P DUF26 ::MoXYL1 ) expressing MoXYL1 driven by rice DOMAIN OF UNKNOWN FUNCTION PROTEIN 26 (DUF26) promoter enhanced expression of pathogen‐responsive and hormone‐related genes, and resistance to the M. oryzae and Cochliobolus miyabeanus . Data‐independent acquisition (DIA) MS‐based proteomics of wild‐type and P DUF26 ::MoXYL1 rice revealed 1,833 significantly modulated rice proteins upon M. oryz ae infection. Among these, 219 proteins showed a significant increased abundance exclusively in P DUF26 ::MoXYL1 transgenic rice, while 410 proteins showed increased abundance in both wild‐type and P DUF26 ::MoXYL1 . Notably, xylanase inhibitor proteins, pathogenesis‐related proteins, and other proteins associated with jasmonic acid biosynthesis exhibited increased abundance in response to M. oryzae . Based on these results, we proposed a putative signaling network induced by MoXYL1 and M. oryzae . In summary, our findings highlight the crucial role of MoXYL1 in inducing rice defense and in potentially enhancing rice disease resistance against fungal pathogens.

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