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September 5, 20252 citationsOpen Access

Single-cell-level response to drought in Sorghum bicolor reveals novel targets for improving water use efficiency

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MSMatt StataSGSharon GreenblumYYYuko Yoshinaga

Key Points

  • Drought exposure significantly alters gene expression across various cell types in sorghum bicolor, indicating a unified molecular response.
  • Major cell types analyzed include mesophyll, bundle sheath, epidermal, vascular, and stomatal cells, all showing pronounced drought effects.
  • Single-nucleus RNA sequencing served as the primary method, allowing for detailed transcriptional analysis under different water conditions.
  • These results support enhanced understanding of sorghum's drought adaptation and propose potential targets for bioengineering improved water usage.

Abstract

Increasing drought threatens global agriculture, especially in water-limited regions. Sorghum bicolor, a drought-tolerant C4 grass, is a promising bioenergy crop for cultivation on marginal lands, yet its molecular drought responses remain poorly understood. To uncover single-cell-level transcriptional responses to drought, we performed single-nucleus RNA sequencing on mature sorghum leaves under well-watered and drought conditions. We identified major cell types and analyzed differential gene expression across mesophyll, bundle sheath, epidermal, vascular, and stomatal cells. Surprisingly, drought effects on transcriptomes exceeded differences due to cell identity, revealing a shared response across cell types. We leveraged this convergence to identify candidate regulators of drought-responsive gene expression. These findings advance our understanding of sorghum drought adaptation and offer new targets for engineering enhanced water use efficiency in bioenergy crops.

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Cite This Study

Stata et al. (2025) studied this question.

synapsesocial.com/papers/68bb42142b87ece8dc95851fhttps://doi.org/10.1101/2025.08.28.671794
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