A transposon-directed epigenetic change in ZmCCT underlies quantitative resistance to Gibberella stalk rot in maize

被引:106
作者
Wang, Chao [1 ]
Yang, Qin [1 ]
Wang, Weixiang [2 ]
Li, Yipu [1 ]
Guo, Yanling [1 ]
Zhang, Dongfeng [1 ]
Ma, Xuena [1 ]
Song, Wei [3 ]
Zhao, Jiuran [3 ]
Xu, Mingliang [1 ]
机构
[1] China Agr Univ, Natl Maize Improvement Ctr China, Beijing 100193, Peoples R China
[2] Beijing Univ Agr, Coll Plant Sci & Technol, Beijing Key Lab New Tech Agr Applicat, Beijing 102206, Peoples R China
[3] Beijing Acad Agr & Forestry Sci, Maize Res Ctr, Beijing 100097, Peoples R China
关键词
CACTA-like transposon; epigenetics; maize; quantitative resistance; stalk rot; DNA METHYLATION; POSTDOMESTICATION SPREAD; HISTONE MODIFICATIONS; GENE; CONSTANS; DOMESTICATION; DIVERSITY; INSERTION; ELEMENTS;
D O I
10.1111/nph.14688
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
A major resistance quantitative trait locus, qRfg1, significantly enhances maize resistance to Gibberella stalk rot, a devastating disease caused by Fusarium graminearum. However, the underlying molecular mechanism remains unknown. We adopted a map-basedcloning approach to identify the resistance gene at qRfg1 and examined the dynamic epigenetic changes during qRfg1-mediated maize resistance to the disease. A CCT domain-containing gene, ZmCCT, is the causal gene at the qRfg1 locus and a polymorphic CACTA-like transposable element (TE1) c. 2.4 kb upstream of ZmCCT is the genetic determinant of allelic variation. The non-TE1 ZmCCT allele is in a poised state, with predictive bivalent chromatin enriched for both repressive (H3K27me3/H3K9me3) and active (H3K4me3) histone marks. Upon pathogen challenge, this non-TE1 ZmCCT allele was promptly induced by a rapid yet transient reduction in H3K27me3/H3K9me3 and a progressive decrease in H3K4me3, leading to disease resistance. However, TE1 insertion in ZmCCT caused selective depletion of H3K4me3 and enrichment of methylated GC to suppress the pathogen-induced ZmCCT expression, resulting in disease susceptibility. Moreover, ZmCCT-mediated resistance to Gibberella stalk rot is not affected by photoperiod sensitivity. This chromatin-based regulatory mechanism enables ZmCCT to be more precise and timely in defense against F. graminearum infection.
引用
收藏
页码:1503 / 1515
页数:13
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