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Natural variations of TaMYB7-A1 regulate PHS resistance and specify wheat geographic adaptation

Wang, H.; Wang, D.; Guo, Y.; Zhang, M.; Simmonds, J.; Zheng, Q.; Hou, J.; Liu, X.; Lin, X.; Bie, X.; Zhang, X.; Zhang, X.; Uauy, C.; Lu, F.; Chu, C.; Tian, Z.; Xiao, J.

2024-11-17 plant biology
10.1101/2024.11.15.623828 bioRxiv
Show abstract

Crop domestication tended to select against seed dormancy for uniform germination--raising risks of undesirable pre-harvest sprouting (PHS) -- but regulation of seed dormancy and PHS in wheat are grossly under-characterized. Here, we identified wheat PHS resistance loci by GWAS. TaMYB7-A1 confers PHS resistance by elevating ABA signaling and seed dormancy in grains. Three TaMYB7-A1 haplotypes (Hap-1/2/3) contrast in PHS resistance, with Gly23 and Gly92 crucial for binding to and activating TaABI5 in Hap-1/3. A MITE transposon in the TaMYB7-A1Hap-1 promoter likely recruited the TaAZF1-TaABI4 module to boost expression, resulting in strong PHS resistance. TaMYB7-A1Hap-1 originated from wild einkorn and was integrated into hexaploid wheat through introgression into wild emmer. Different haplotypes of TaMYB7-A1, in conjunction with alleles of other major PHS resistance genes, is pivotal in shaping wheats adaptability to rainfall conditions in China, US and Europe during the harvest season. Introduction of TaMYB7-A1Hap-1 into elite cultivars confers PHS resistance without yield defects. Thus, artificial and natural selection across diverse climates regions have collectively shaped wheat adaptation and enabled rational delivery of improved lines tailored to local cropping needs.

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