19 results on '"Wen, Weiwei"'
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2. The natural variance of Arabidopsis secondary metabolism on extended darkness
3. Metabolomic and genome-wide association studies drive genetic dissection and gene mining in tea plant
4. Characterization of novel loci controlling seed oil content in Brassica napus by marker metabolite-based multi-omics analysis
5. Integrating multiomics data accelerates elucidation of plant primary and secondary metabolic pathways
6. Transcription factor CsESE3 positively modulates both jasmonic acid and wax biosynthesis in citrus
7. Population genomics of Zea species identifies selection signatures during maize domestication and adaptation
8. The metabolic changes that effect fruit quality during tomato fruit ripening
9. Mass spectrometry-based metabolomics: a guide for annotation, quantification and best reporting practices
10. Multiomics-based dissection of citrus flavonoid metabolism using a Citrus reticulata × Poncirus trifoliata population
11. Genome assembly of wild tea tree DASZ reveals pedigree and selection history of tea varieties
12. Lipidomic and transcriptomic analysis reveals reallocation of carbon flux from cuticular wax into plastid membrane lipids in a glossy “Newhall” navel orange mutant
13. Integrated transcriptomic and metabolomic analyses of a wax deficient citrus mutant exhibiting jasmonic acid-mediated defense against fungal pathogens
14. Heparanase expression correlates with poor survival in oral mucosal melanoma
15. Central Carbon Metabolism in Marine Bacteria Examined with a Simplified Assay for Dehydrogenases
16. The strategy and potential utilization of temperate germplasm for tropical germplasm improvement: a case study of maize (Zea mays L.)
17. Detection of genetic integrity of conserved maize (Zea mays L.) germplasm in genebanks using SNP markers
18. Population structure and association mapping on chromosome 7 using a diverse panel of Chinese germplasm of rice (Oryza sativa L.)
19. Experimental validation of inter-subspecific genetic diversity in rice represented by the differences between the DNA sequences of ‘Nipponbare’ and ‘93-11’
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