bioRxiv · 10.1101/2023.08.08.551183
Phenotypic variation in maize can be largely explained by genetic variation at transcription factor binding sites
Abstract
Comprehensive maps of functional variation at transcription factor (TF) binding sites (cis-elements) are crucial for elucidating how genotype shapes phenotype. Here we report the construction of a pan-cistrome of the maize leaf under well-watered and drought conditions. We quantified haplotype-specific TF footprints across a pan-genome of 25 maize hybrids and mapped over two-hundred thousand genetic variants (termed binding-QTL) linked to cis-element occupancy. Three lines of evidence support the functional significance of binding-QTL: i) they coincide with numerous known causative loci that regulate traits, including VGT1, Trehalase1, and the MITE transposon near ZmNAC111 under drought; ii) their footprint bias is mirrored between inbred parents and by ChIP-seq; iii) partitioning genetic variation across genomic regions demonstrates that binding-QTL capture the majority of heritable trait variation across [~]70% of 143 phenotypes. Our study provides a promising approach to make previously hidden cis-variation more accessible for genetic studies and multi-target engineering of complex traits.
Source connections
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Engelhorn, J., Snodgrass, S. J., Kok, A., Seetharam, A. S., Schneider, M., Kiwit, T., Singh, A., Banf, M., Khaipho-Burch, M., Runcie, D. E., Camargo, V. S., Torres-Rodriguez, J. V., Sun, G., Stam, M., Fiorani, F., Schnable, J. C., Bass, H. W., Hufford, M. B., Stich, B., Frommer, W. B., Ross-Ibarra, J., Hartwig, T.. 2023-08-09. Phenotypic variation in maize can be largely explained by genetic variation at transcription factor binding sites. https://doi.org/10.1101/2023.08.08.551183
Cite the original work for its findings. Save a collection to share your selection of sources.