The DREB2C.L-IAGLU module contributes to long-term heat stress via sugar metabolism in cucumber
Xiao Ma, Chuang Li, Yong Yuan, Xitong Zhong, Yafei Huang, Jiacai Chen, Yan Geng, Yuyan Li, Zhaoyang Zhou, Ming Xin, Xiaolan Zhang, Jianyu Zhao

TL;DR
This study identifies a gene module in cucumbers that helps plants resist long-term heat stress by regulating sugar metabolism and maintaining leaf health.
Contribution
The study reveals a novel gene regulatory module (DREB2C.L-IAGLU) involved in heat tolerance through sugar metabolism in cucumber.
Findings
CsIAGLU is upregulated in heat-tolerant cucumber genotypes and is crucial for heat resistance.
CsDREB2C.L activates CsIAGLU to maintain sugar levels and leaf greening under heat stress.
Loss of CsIAGLU function increases heat sensitivity and disrupts stomatal and chlorophyll regulation.
Abstract
Cucumber is an important vegetable crop with thermophilic but heat-sensitive growth characteristics. Heat stress threatens cucumber growth and development, leading to a decline in both quality and yield. However, the evaluation system and molecular mechanism of long-term heat tolerance remain unclear. Here, an evaluation system in response to long-term heat stress was established, and chlorophyll a content and catalase (CAT) activity were identified as key evaluation indices for determining the heat tolerance of cucumber seedlings. Transcriptomic and physiological analyses revealed that sugar metabolism played a pivotal role in the heat response. Notably, the expression of CsIAGLU (Indoleacetic Acid glucosyltransferase) was significantly upregulated in heat-tolerant genotype PS76, whereas it was not induced in the heat-sensitive genotype PWRG. Loss of function of CsIAGLU by gene editing…
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Taxonomy
TopicsPlant responses to water stress · Plant nutrient uptake and metabolism · Plant Stress Responses and Tolerance
