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A spatially resolved multiomic single-cell atlas of soybean development.

Xuan ZhangZiliang LuoAlexandre P MarandHaidong YanHosung JangSohyun BangJohn P MendietaMark A A MinowRobert J Schmitz
Published in: bioRxiv : the preprint server for biology (2024)
Cis -regulatory elements (CREs) precisely control spatiotemporal gene expression in cells. Using a spatially resolved single-cell atlas of gene expression with chromatin accessibility across ten soybean tissues, we identified 103 distinct cell types and 303,199 accessible chromatin regions (ACRs). Nearly 40% of the ACRs showed cell-type-specific patterns and were enriched for transcription factor (TF) motifs defining diverse cell identities. We identified de novo enriched TF motifs and explored conservation of gene regulatory networks underpinning legume symbiotic nitrogen fixation. With comprehensive developmental trajectories for endosperm and embryo, we uncovered the functional transition of the three sub-cell types of endosperm, identified 13 sucrose transporters sharing the DOF11 motif that were co-up-regulated in late peripheral endosperm and identified key embryo cell-type specification regulators during embryogenesis, including a homeobox TF that promotes cotyledon parenchyma identity. This resource provides a valuable foundation for analyzing gene regulatory programs in soybean cell types across tissues and life stages.
Keyphrases
  • single cell
  • gene expression
  • transcription factor
  • rna seq
  • cell therapy
  • high throughput
  • dna methylation
  • dna damage
  • cell death
  • genome wide
  • minimally invasive
  • pregnant women
  • social media
  • cell cycle arrest
  • cell fate