The cellular and genetic basis of inflorescence divergence between maize and teosinte
Wang, Y.; Mao, R.; Liu, Y.; Guo, X.; Li, N.; Zhang, Q.; Cai, M.; Xie, P.; Wang, Y.; Luo, Y.; Ding, Q.; Wu, S.; Luo, E.; Ma, L.; Luo, Z.; Wei, T.; Liu, H.; Dai, M.; Qiu, F.; Xiao, Y.; Yang, X.; Jackson, D.; Zhang, Z.; Yan, J.; Ross-Ibarra, J.; Liu, L.; Yang, N.
Show abstract
The domestication of maize from teosinte involved dramatic remodeling of the ear, yet the cellular and genetic bases of this transformation remain unclear. Here, we generate a single-nucleus and spatial transcriptome atlas of developing maize and teosinte ears. Comparative analysis reveals divergence in cob-associated cell types, with enhanced cytokinin signaling and reduced growth-inhibitory signals collectively driving cob thickening and enlargement in maize. We further demonstrate that domestication expanded the spatial expression domain of key transcription factors in maize meristem cells, enhancing the potential for increasing kernel number. Additionally, we verified a major domestication gene, ZmSPD1, in which two nonsynonymous SNPs differentiate maize from teosinte and alter jasmonic acid (JA) levels in the ear, thereby suppressing spikelet abortion to effectively double kernel production. These findings provide a cell-resolved mechanistic framework for how cob architecture and kernel number were shaped during maize domestication, offering new insights into the formation of key agronomic traits.
Matching journals
The top 3 journals account for 50% of the predicted probability mass.
Similar papers in this journal
Similar papers in this journal
Similar papers in this journal
- Evolution of vascular plants through redeployment of ancient developmental regulators 97%
- Patronus is the elusive plant securin, preventing chromosome separation by antagonizing separase 95%
- Spatiotemporal control of PIWI compartmentalization by mitochondrial scaffolds defines pachytene piRNA pathway organization 95%
Similar papers in this journal
- NtLLG4-mediated unconventional polar exocytosis of NtPPME1 coordinates cell wall rigidity and membrane dynamics to control pollen tube integrity 96%
- Mesoglea biogenesis reveals a cryptic aboral valve for pressure regulation in cnidarian morphogenesis 95%
- Decoding the molecular logic of rapidly evolving ZAD zinc-finger proteins in Drosophila 95%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.