Environmental ScienceBiologyChemistry

Yubo Yuan, Yangyang Chen, Lisha Luo, Yuanyuan Jia, K. Qi, Zhihua Xie, Hao Yin, Shaoling Zhang, Xiao Wu

2026.1.1GENOMICS

DOI: 10.1016/j.ygeno.2026.111195

tlooto Summary

The authors' results provide an informative insight to the molecular regulatory network by which MeJA treatment changes the primary metabolism in pears, providing a theoretical basis for improving fruit quality during storage.

Abstract

BACKGROUND Methyl jasmonate (MeJA) regulates plant development and reproductive processes and significantly influences metabolism. Pears are important economic fruits, but there is still limited research on the changes in primary metabolites in pears after MeJA treatment, and their molecular mechanisms are not yet clear.

RESULTS This study employed GC-TOF-MS to analyze primary metabolite changes in the peel and flesh of 'Nanguo' pears after MeJA treatment. The results showed that 174 and 156 metabolites were detected in the peel and flesh respectively, from which 7 and 2 differentially altered metabolites were subsequently screened out. We analysed the combined whole-transcriptome data and constructed relevant competitive endogenous RNA (ceRNA) and miRNA-target transcription factor regulatory networks for each differentially expressed compound.

CONCLUSIONS Our results provide an informative insight to the molecular regulatory network by which MeJA treatment changes the primary metabolism in pears, providing a theoretical basis for improving fruit quality during storage.

Citation format

YUAN, Yubo, et al. GC-TOF-MS-based metabolomic and whole-transcriptomic analyses reveal the molecular mechanism of primary metabolite changes in pear fruit after methyl jasmonate treatment. GENOMICS, 2026, 118(2): 111195.