Spatial transcriptomics identifies distinct domains regulating yield-related traits of the wheat ear
Qu, Y.; Tan, C.; Yang, L.; Pasquariello, M.; Alabdullah, A. K.; Sun, S.; Iqbal, M.; Salamon, J.; Boden, S.
Show abstract
Cereal inflorescences are complex, highly ordered structures composed of grain-producing florets that form within specialised branches called spikelets. The spikelets of wheat are arranged in two alternating rows along a central rachis, in a pattern determined during early reproductive development. While several genes that control spikelet development have been identified, the molecular processes that regulate their morphology and the formation of supporting structures, such as meristems and the rachis, remain poorly understood. Here, we used spatial transcriptomics to investigate the dynamic transcriptional landscape of a wheat inflorescence during spikelet development. We identified two spatially distinct regions that regulate spikelet architecture, including a primordium region characterised by RAMOSA2 activity, and a boundary region that expresses ALOG1 and known regulators of bract suppression. Developmental assays indicate that spikelets differentiate from meristematic regions, which is accompanied by formation of central vascular regions of the rachis and inflorescence base that express genes controlling spikelet number. The combined spatial transcriptome and genetic data reveal key regulators of spikelet development, including target genes for improving spikelet number and yield.
Matching journals
The top 2 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Dicer-like 5 deficiency confers temperature-sensitive male sterility in maize 97%
- COMPOSITUM 1 (COM1) contributes to the architectural simplification of barley inflorescence via meristem identity signals 96%
- Fertilization-induced synergid cell death by RALF12-triggered ROS production and ethylene signaling 96%
Similar papers in this journal
- Imputation integrates single-cell and spatial gene expression data to resolve transcriptional networks in barley shoot meristem development 98%
- The dynamic and diverse nature of parenchyma cells in the Arabidopsis root during secondary growth 96%
- Stomatal regulators are co-opted for seta development in the astomatous liverwort Marchantia polymorpha 96%
Similar papers in this journal
- Unique and distinct identities and functions of leaf phloem cells revealed by single cell transcriptomics 97%
- Transcriptional activation of auxin biosynthesis drives developmental reprogramming of differentiated cells 96%
- Establishing Physalis as a new Solanaceae model system enables genetic reevaluation of the inflated calyx syndrome 94%
Similar papers in this journal
- S1 basic leucine zipper transcription factors shape plant architecture by controlling C/N partitioning to apical and lateral organs 96%
- An AINTEGUMENTA phospho-switch controls bilateral stem cell activity during secondary growth 96%
- Arabidopsis uses a molecular grounding mechanism and a biophysical circuit breaker to limit floral abscission signaling 96%
"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.