PubMed · 42425197
Comparative transcriptomic and physiological analyses uncover key regulatory pathways associated with drought tolerance in wheat.
Abstract
Drought severely limits wheat yield, yet its molecular basis remains incompletely understood. We compared a drought-tolerant line (A25) and a drought-sensitive line (A8) under water deficit across three developmental stages using physiological assays and transcriptomics. A25 exhibited stronger osmotic adjustment and antioxidant defense, with higher proline accumulation and enhanced activities of ascorbate peroxidase, catalase, and other ROS-scavenging enzymes. RNA-seq revealed distinct drought-responsive expression patterns, with differentially expressed genes enriched in MAPK signaling and ABA-dependent pathways. ABA-responsive genes were more abundant and strongly induced in A25, suggesting enhanced ABA signal transduction as a key mechanism. Weighted gene co-expression network analysis identified a drought-associated purple module positively correlated with physiological resistance, from which six hub genes (MAPKKK17, Avr9/Cf-9, RPPL1, RGA1, UBC28, AGPs5) were highlighted as potential regulators. Collectively, coordinated activation of ABA signaling and MAPK cascades, mediated by these hub genes, underlies the robust drought tolerance of A25, providing promising molecular targets for wheat breeding and improvement.
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Yongwei Jin, Junjie Han, Chunsheng Wang, Zexing Zhang, Xianning Chen, Zhenlong Wang, Zhun Zhao, Zhong Wang, Yueqiang Zhang. 2026-07-09. Comparative transcriptomic and physiological analyses uncover key regulatory pathways associated with drought tolerance in wheat.. https://doi.org/10.1016/j.ygeno.2026.111287
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