29 results on '"Pires, Nuno D."'
Search Results
2. BATLAS: Deconvoluting Brown Adipose Tissue
3. Human brown adipose tissue is phenocopied by classical brown adipose tissue in physiologically humanized mice
4. VisualR: a novel and scalable solution for assessing visual function using virtual reality
5. Single-gene resolution of diversity-driven overyielding in plant genotype mixtures
6. Single-gene resolution of diversity-driven overyielding in plant genotype mixtures
7. Single-gene resolution of diversity-driven overyielding in plant genotype mixtures
8. Identification of Parent-of-Origin-Dependent QTLs Using Bulk-Segregant Sequencing (Bulk-Seq)
9. Genetic dissection of the miR-200–Zeb1 axis reveals its importance in tumor differentiation and invasion
10. Increasing plant group productivity through latent genetic variation for cooperation
11. Single-gene resolution of diversity-driven community overyielding
12. Increasing plant group productivity through latent genetic variation for cooperation
13. Increasing plant group productivity through latent genetic variation for cooperation
14. The Polycomb group protein MEDEA controls cell proliferation and embryonic patterning in Arabidopsis
15. ThePolycombgroup protein MEDEA controls cell proliferation and embryonic patterning inArabidopsis
16. The Polycomb group protein MEDEA controls cell proliferation and embryonic patterning in Arabidopsis
17. Author Correction: Human brown adipose tissue is phenocopied by classical brown adipose tissue in physiologically humanized mice
18. Increasing plant group productivity through latent genetic variation for cooperation
19. Increasing plant group productivity through latent genetic variation for cooperation
20. Genetic dissection of the miR-200–Zeb1 axis reveals its importance in tumor differentiation and invasion
21. Identification of parent-of-origin-dependent QTLs using bulk-segregant sequencing (Bulk-Seq)
22. Seed evolution: parental conflicts in a multi-generational household
23. Quantitative Genetics Identifies Cryptic Genetic Variation Involved in the Paternal Regulation of Seed Development
24. A subunit of the oligosaccharyltransferase complex is required for interspecific gametophyte recognition in Arabidopsis
25. Quantitative genetics identifies cryptic genetic variation involved in the paternal regulation of seed development
26. A subunit of the oligosaccharyltransferase complex is required for interspecific gametophyte recognition in Arabidopsis
27. Quantitative Genetics Identifies Cryptic Genetic Variation Involved in the Paternal Regulation of Seed Development
28. Identification of parent-of-origin-dependent QTLs using bulk-segregant sequencing (Bulk-Seq)
29. Identification of Parent-of-Origin-Dependent QTLs Using Bulk-Segregant Sequencing (Bulk-Seq).
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