Aug 2026· Molecular Biotechnology· 0 citations· 145 references
Medicine
TL;DR
It is proposed that sulfur metabolism should be viewed as a dynamic resource allocation network rather than a linear assimilation pathway, to help identify regulatory variants that improve sulfur-use efficiency, stress resilience, immunity, and grain quality without compromising yield stability.
Evidence from functional genomics studies demonstrates that sulfur metabolism is closely integrated with redox signaling, stress tolerance, and plant immunity, which supports a view of sulfur metabolism as a dynamic regulatory network rather than a linear nutrient‐assimilation pathway.
F. Rauf, Hakim Zamir, Hussam Ahmad et al.· Plant Direct· 0 citations
It is demonstrated that the conserved sulfate starvation transcriptional response across Arabidopsis, tomato, rice, and Setaria is limited to only seven genes, and these findings indicate that the S starvation response is deeply embedded within primary plant metabolism.
Suvajit Basu, Inken Thiemann, S. Timm et al.· The Plant Journal· 0 citations
Sulfur availability is a major modulator of iron-responsive phenotypic, transcriptional, and metabolic traits in durum wheat and provides a systems-level framework for future functional studies of Fe/S crosstalk.
E. Coppa, Mutsumi Watanabe, Moez Maghrebi et al.· New Phytologist· 0 citations
Improved understanding of how sulfate transport systems function in halophytes is improved and provides a foundation for future research on sulfur-mediated stress tolerance in plants.
Yingyi Yu, Ming-Hua Luo, Yan Leng et al.· Biology· 0 citations
Nine SiMGT genes (SiMGT1–SiMGT9) are identified through comprehensive genome-wide screening and offer candidate genes and molecular markers for future functional studies and the genetic improvement of foxtail millet.
Jincheng Yu, Haojie Guo, Jinyu Wang et al.· Frontiers in Plant Science· 0 citations
These findings demonstrate that GmHMGR6 enhances soybean salt tolerance through coordinated regulation of nitrogen metabolism, nodulation, and photosynthetic performance.