Aug 2026· Plants· Vol 15, pp. 2415· 0 citations· 43 references
Medicine
TL;DR
Investigation of the biological roles and underlying molecular mechanisms of the TaNCED1 gene in wheat under drought stress treatment demonstrated that TaNCED1 overexpression significantly enhanced wheat drought tolerance, whereas the knockout mutants clearly reduced the drought resistance.
Abstract
The ABA signaling pathway is essential for plant growth, development, and responses to diverse abiotic stresses. 9-cis-epoxycarotenoid dioxygenases (NCEDs) are key functional enzymes involved in this pathway. In the present study, we investigated the biological roles and underlying molecular mechanisms of the TaNCED1 gene in wheat under drought stress treatment, using two materials: TaNCED1-overexpressing transgenic wheat plants and the nced1 knockout mutants. Phenotypic and physiological results demonstrated that TaNCED1 overexpression significantly enhanced wheat drought tolerance, whereas the knockout mutants clearly reduced the drought resistance. Mechanistically, TaNCED1 positively modulates wheat drought tolerance by maintaining higher leaf relative water content (RWC), accumulating more soluble sugars and proline, and reducing malondialdehyde (MDA) accumulation and electrolytic leakage. Moreover, the catalase (CAT) activity accumulated to higher levels exclusively under drought stress, and this antioxidant enzyme serves as a core mediator of drought tolerance conferred by TaNCED1 overexpression. Transcriptomic profiling of drought-challenged transgenic and WT plants further confirmed that TaNCED1 initiates a suite of stress-responsive regulatory cascades and robustly upregulates key drought resistance genes in wheat.
The findings elucidate the biological function of TaGATA5 in the wheat drought stress response and provide a valuable genetic resource for breeding drought-tolerant wheat varieties.
Jie Xiang, Jin-Ping Wang, Lijia Li et al.· Plant Science· 0 citations
Findings suggest that GhMYC5 serves as a positive regulator in cotton drought stress response, with its regulatory mechanism closely associated with ABA, JA, and MAPK signaling pathways.
Xing-Yue Zhong, Rui Huang, Ai-Xia Han et al.· Plant physiology and biochem...· 0 citations
Rice (Oryza sativa L.) is a major staple food crop worldwide. Drought stress induced by extreme weather severely limits its growth and yield. Proteins containing domains of unknown function (DUF) play important roles in plant stress responses, but their regulatory mechanisms remain largely unclear. In this study, we de...
Drought stress severely constrains global maize productivity. Although ethylene (ETH)-responsive transcription factors play key roles in plant stress adaptation, the functional mechanism of ZmEIL2 in drought tolerance remains poorly understood. Here, transgenic maize lines with ZmEIL2 overexpressing (OE) and ZmEIL2 kno...
Yue Li, Yan-Jun Zhang, Xu-Sheng Qi et al.· Frontiers in Plant Science· 0 citations
Soybean is the most crucial oilseed and plant-protein crop worldwide, yet its yield is frequently threatened by salinity and drought stress. In this study, the chitinase gene AcCHI was cloned from the highly stress-tolerant plant Atriplex canescens and heterologously overexpressed in soybean to generate stable T3 homoz...
Findings identify NtMYB78 as a positive regulator of salt tolerance that integrates stress responsive transcriptional reprogramming with physiological protection and modulation of lignin deposition.
Jia-Yan Lin, Hao Chen, Wen-Cai Li et al.· Plant physiology and biochem...· 0 citations
We use cookies to run the site and, with your consent, for analytics and to show ads.
See our Cookie Policy.