Lr34/Yr18/Sr57/Pm38 confers broad-spectrum resistance to fungal diseases via sinapyl alcohol transport for cell wall lignification in wheat
文献类型: 外文期刊
作者: Zhang, Yichen 1 ; Chen, Guang 1 ; Zang, Yiming 1 ; Bhavani, Sridhar 2 ; Bai, Bin 3 ; Liu, Wei 1 ; Zhao, Miaomiao 1 ; Cheng, Yikeng 1 ; Li, Shunda 1 ; Chen, Wei 1 ; Yan, Wenhao 1 ; Mao, Hailiang 1 ; Su, Handong 1 ; Singh, Ravi P. 1 ; Lagudah, Evans 4 ; Li, Qiang 1 ; Lan, Caixia 1 ;
作者机构: 1.Huazhong Agr Univ, Coll Plant Sci & Technol, Hubei Hongshan Lab, Natl Key Lab Crop Genet Improvement, 1 Shizishan St, Wuhan 430070, Hubei, Peoples R China
2.Int Maize & Wheat Improvement Ctr CIMMYT, Km 45,Carretera,Texcoco CP 56237E, Mexico City, Mexico
3.Gansu Acad Agr Sci, Wheat Res Inst, Lanzhou 730070, Gansu, Peoples R China
4.CSIRO Agr & Food, Canberra, ACT 2601, Australia
关键词: Lr34; adult plant resistance; disease resistance; lignin; TaCOMT-3B
期刊名称:PLANT COMMUNICATIONS ( 影响因子:11.6; 五年影响因子:11.8 )
ISSN: 2590-3462
年卷期: 2024 年 5 卷 12 期
页码:
收录情况: SCI
摘要: The widely recognized pleiotropic adult plant resistance gene Lr34 encodes an ATP-binding cassette transporter and plays an important role in breeding wheat for enhanced resistance to multiple fungal diseases. Despite its significance, the mechanisms underlying Lr34-mediated pathogen defense remain largely unknown. Our study demonstrates that wheat lines carrying the Lr34res allele exhibit thicker cell walls and enhanced resistance to fungal penetration compared to those without Lr34res. Transcriptome and metabolite profiling revealed that the lignin biosynthetic pathway is suppressed in lr34 mutants, indicating a disruption in cell wall lignification. Additionally, we discovered that lr34 mutant lines are hypersensitive to sinapyl alcohol, a major monolignol crucial for cell wall lignification. Yeast accumulation and efflux assays confirmed that the LR34 protein functions as a sinapyl alcohol transporter. Both genetic and virusinduced gene silencing experiments demonstrated that the disease resistance conferred by Lr34 can be enhanced by incorporating the TaCOMT-3B gene, which is responsible for the biosynthesis of sinapyl alcohol. Collectively, our findings provide novel insights into the role of Lr34 in disease resistance through mediating sinapyl alcohol transport and cell wall deposition, and highlight the synergistic effect of TaCOMT-3B and Lr34 against multiple fungal pathogens by mediating cell wall lignification in adult wheat plants.
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