DOI: 10.1021/acs.jafc.6c09642 ISSN: 0021-8561

Multi-Stage Transcriptomics Reveals TF- and lncRNA-Mediated Regulatory Networks Governing Glyphosate Resistance in Cyperus rotundus

Shiqin Zhao, Lamei Wu, Tianbo Liu, Yanxuan Lu, Hui Zhao, Hailin Cai, Min Liu, Zhanghui Liu, Lianyang Bai, Zi Luo, Lang Pan

Abstract

Glyphosate resistance in Cyperus rotundus, a globally invasive weed, is increasingly threatening crop production, yet its molecular mechanisms remain unclear. Here, we performed multi-stage RNA sequencing of tubers from glyphosate-resistant and -susceptible populations across three developmental stages to investigate the transcriptional dynamics underlying resistance. Differential expression analysis revealed extensive stage-specific transcriptional reprogramming, with the strongest divergence at the III developmental stage. Integrating constitutive and stage-dependent expression patterns identified 34 high-confidence candidate resistance-associated genes. Co-expression and regulatory network analyses uncovered coordinated transcriptional modules involving WRKY, NAC, ERF, MYB, bHLH, and ARF transcription factors together with multiple long non-coding RNAs. Notably, all allelic copies of ABCC8 were consistently up-regulated in glyphosate-resistant plants, validated by RT-qPCR, and occupied a central position in the resistance regulatory network, suggesting multilayered regulation of detoxification. These findings demonstrate that glyphosate resistance in C. rotundus is a developmentally coordinated, multilayered non-target-site resistance process.