槲皮素
生物
转录组
基因
转录因子
发起人
类黄酮
耐旱性
抄写(语言学)
遗传变异
基因表达
调节器
驯化
遗传学
植物
转录调控
单核苷酸多态性
基因表达调控
生物化学
DNA测序
基因组DNA
植物生理学
单倍型
DNA
山奈酚
作者
Jing Wang,Wei Li,Dongqing Fan,Yuqi He,Yaliang Shi,Hao Lin,Marie‐Laure Fauconnier,Giorgia Purcaro,Muriel Quinet,Manon Genva,Kaixuan Zhang,Mengqi Ding,Meiliang Zhou
摘要
ABSTRACT Tartary buckwheat, valued for its nutritious and medicinal quercetin. Following two independent domestication events, distinct quercetin accumulation patterns have emerged between the southwestern (SL) and northern (NL) landrace populations. However, the genetic mechanisms underlying these metabolic divergences remain elusive. Here, we identified the transcription factor FtNAC2 through genome‐wide association study (GWAS) of quercetin content in 480 accessions of Tartary buckwheat. Haplotype analysis identified two single nucleotide polymorphisms (SNPs) in the FtNAC2 promoter that defined three major haplotypes, with higher promoter activity and gene expression observed in Hap2. Functional characterization revealed that FtNAC2 promotes quercetin accumulation in Tartary buckwheat hairy roots and potentially serves as a multifunctional regulator influencing both drought tolerance in buckwheat and seed size in Arabidopsis . Transcriptome co‐clustering and pull‐down mass spectrometry (MS) indicated FtNAC52 as a potential regulatory partner of FtNAC2 . DNA affinity purification sequencing (DAP‐seq) and quantitative reverse transcription PCR (qRT‐PCR) analyses demonstrated that FtNAC2 promoted quercetin biosynthesis by upregulating FtF3'H and FtF3'5'H genes. Collectively, our results elucidated how FtNAC2 influences quercetin content variation in Tartary buckwheat, providing molecular insights into the differential quercetin accumulation between cultivated populations.
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