CLC gene family in Solanum lycopersicum: genome-wide identification, expression, and evolutionary analysis of tomato in response to salinity and Cd stress
作者:Jun Ma, Shan Li, Shah Zaman, Ali Anwar · 发表于:Frontiers in Plant Science · 年份:2025 · DOI:10.3389/fpls.2025.1547723 · 被引用次数:5 · 研究领域:Plant Stress Responses and Tolerance、Photosynthetic Processes and Mechanisms、Aluminum toxicity and tolerance in plants and animals
Introduction Chloride channels (CLCs) play critical roles in anion transport, stress adaptation, and ion homeostasis in plants. Whereas their genomic wide indentification and functional divergence in tomato ( Solanum lycopersicum ) remain largely unexplored. Methods and results In this study, we identified nine CLC genes in the tomato genome, classifying them into two evolutionarily distinct clades (Group I and II) based on phylogenetic analysis. Structural dissection revealed conserved transmembrane domains (9–12 TMDs) and motif patterns (e.g., motifs 3/7/9 in Group I), with SlCLC02 exhibiting the largest gene size (27,041 bp). Promoter analysis indicated the presence of key abiotic stress-responsive cis-elements (ABRE, MYB, MYC), aligning with the pronounced transcriptional dynamics of SlCLCs under salinity stress. Notably, qRT-PCR analysis demonstrated that most SlCLC genes (particularly SlCLC05 , an ortholog to AtCLC-g ) exhibited rapid upregulation within 1-4 hours followed by downregulation in roots under salinity treatment, suggesting early stress signaling roles. Likewise, preliminary expression profiling under cadmium stress further identified specific induction of SlCLC07 , proposing gene-specific roles in heavy metal detoxification. Strikingly, SlCLC09 lacked collinearity with Arabidopsis/potato homologs, implying lineage-specific diversification. Discussion These findings elucidate the SlCLC family’s structural diversity, evolutionary constraints, and stress-respo...