ArticleInternational journal of molecular sciences2022
The Integration of Metabolomics and Transcriptomics Provides New Insights for the Identification of Genes Key to Auxin Synthesis at Different Growth Stages of Maize.
Article in International journal of molecular sciences, 2022. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 8 papers.
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8 citing papers in PubMed, 12 citations in OpenAlex.
- Integrated metabolomics and transcriptomics analysis of flavonoids in different parts of Houttuynia cordata.BMC genomics · 2026Article
- Differential Analysis of IAA Anabolism Pathway Based on Bacillus cereus, Bacillus subtilis and Bacillus safensis Genome.Environmental microbiology reports · 2026Article
- From development to yield: genetic and molecular regulation of agronomic traits in maize seeds.Frontiers in plant science · 2026Review
- Biocontrol of pistachio gummosis using encapsulated Pseudomonas chlororaphis VUPF5.International microbiology : the official journal of the Spanish Society for Microbiology · 2025Article
- Metabolomic Profiling Identifies Key Metabolites and Defense Pathways inInternational journal of molecular sciences · 2025Article
- Roles of auxin pathways in maize biology.Journal of experimental botany · 2023Review
- Unraveling the Guardians of Growth: A Comprehensive Analysis of thePlants (Basel, Switzerland) · 2023Article
- Comparison of the transcriptome and metabolome of wheat (Frontiers in plant science · 2023Article
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7 authors at 1 institution in 1 country.
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No grant is acknowledged in the PubMed record.
Abstract
As a staple food crop, maize is widely cultivated worldwide. Sex differentiation and kernel development are regulated by auxin, but the mechanism regulating its synthesis remains unclear. This study explored the influence of the growth stage of maize on the secondary metabolite accumulation and gene expression associated with auxin synthesis. Transcriptomics and metabonomics were used to investigate the changes in secondary metabolite accumulation and gene expression in maize leaves at the jointing, tasseling, and pollen-release stages of plant growth. In total, 1221 differentially accumulated metabolites (DAMs) and 4843 differentially expressed genes (DEGs) were screened. KEGG pathway enrichment analyses of the DEGs and DAMs revealed that plant hormone signal transduction, tryptophan metabolism, and phenylpropanoid biosynthesis were highly enriched. We summarized the key genes and regulatory effects of the tryptophan-dependent auxin biosynthesis pathways, giving new insights into this type of biosynthesis. Potential MSTRG.11063 and MSTRG.35270 and MSTRG.21978 genes in auxin synthesis pathways were obtained. A weighted gene co-expression network analysis identified five candidate genes, namely
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