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Updated: Mar 20, 2026

Identification of the Genes Involved in Stomatal Development via Epidermal Phenotype Scoring
Published on: January 20, 2023
The plastic stomatal development in grasses and its implications in crop improvement
1Key Laboratory of Gene Editing for Breeding, Key Laboratory of Cell Activities and Stress Adaptations, Gansu Province Ministry of Education, School of Life Sciences, Lanzhou University, Lanzhou, Gansu Province, 730000, China.
Grass-specific stomatal development is key for improving crop drought tolerance and water use efficiency (WUE). Understanding these four-celled stomata and their regulators enables precision breeding for resilient cereal crops.
Area of Science:
- Plant Science
- Genetics
- Agricultural Science
Background:
- Cereal crops (Poaceae) are vital for global food security.
- Improving crop environmental adaptability, especially drought tolerance and water use efficiency (WUE), is a major research focus.
- Stomata are crucial for plant gas exchange and water loss, making them targets for genetic modification.
Purpose of the Study:
- To review recent advances in understanding grass-specific stomatal development mechanisms.
- To highlight the distinct four-celled stomatal complexes in grasses compared to other plants.
- To identify key regulators and multi-omics approaches for optimizing stomatal traits in cereal crops.
Main Methods:
- Review of current literature on grass stomatal development.
- Analysis of species-specific stomatal patterning and environmental plasticity.
- Examination of key regulatory genes (e.g., bHLH transcription factors) and multi-omics strategies (scRNA-seq, ST, GWAS, AI).
Main Results:
- Grasses exhibit unique four-celled stomata with distinct vein-proximal patterning.
- Stomatal density shows plasticity in response to environmental factors like CO2, drought, temperature, and light.
- Key regulators, particularly bHLH transcription factors, are identified for controlling stomatal development stages.
Conclusions:
- Understanding grass-specific stomatal development is essential for enhancing crop resilience.
- Genetic manipulation of stomatal traits offers potential for improving WUE and drought resistance.
- Multi-omics and AI approaches accelerate the discovery of novel regulators for precision breeding of drought-resilient cereal crops.
Related Concept Videos
Plant Breeding and Biotechnology
Regulation of Transpiration by Stomata
Adaptations that Reduce Water Loss
Plant Tissue Culture
Responses to Drought and Flooding
Seed Structure and Early Development of the Sporophyte

