Melina Prado
Affiliation confirmed via AI analysis of OpenAlex, ORCID, and web sources.
Postdoctoral Fellow
Also affiliated: Universidade de São Paulo (1968–2025); National Universities Commission (1961); Fundação de Estudos Agrários Luiz de Queiroz (2024); Governo do Estado do Rio Grande do Sul (1962); Instituto Superior de Ciências e Tecnologia de Moçambique (1962); Hospital Universitário da Universidade de São Paulo (2024); Ministry of Agriculture, Livestock, and Food Supply (1961)
Postdoc Researcher
Research Areas
Biomedical Subjects
Links
Biography and Research Information
OverviewAI-generated summary
Melina Prado's research focuses on the genetic basis of plant disease resistance, particularly in raspberry (Rubus genus) populations. Her work involves constructing and characterizing interspecific raspberry hybrid panels to identify traits related to late leaf rust resistance and adaptation to tropical environments. Prado investigates the application of genomic selection methods for breeding programs, examining factors such as germplasm introduction, training set composition, and genetic optimization algorithms to improve prediction accuracy. Her publications also extend to optimizing multi-environment trials using climate-soil prediction models and exploring multi-omics analyses to understand plant stress responses, as demonstrated in studies on soybean under drought and rust infection. Prado has a h-index of 5 with 19 publications and 105 citations.
Metrics
- h-index: 5
- Publications: 19
- Citations: 106
Selected Publications
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Additional file 7 of Integrative multi-omics analysis reveals stress-specific molecular architectures in soybean under drought and rust infection (2026)
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Additional file 8 of Integrative multi-omics analysis reveals stress-specific molecular architectures in soybean under drought and rust infection (2026)
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Additional file 2 of Integrative multi-omics analysis reveals stress-specific molecular architectures in soybean under drought and rust infection (2026)
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Additional file 2 of Integrative multi-omics analysis reveals stress-specific molecular architectures in soybean under drought and rust infection (2026)
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Additional file 8 of Integrative multi-omics analysis reveals stress-specific molecular architectures in soybean under drought and rust infection (2026)
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Additional file 1 of Integrative multi-omics analysis reveals stress-specific molecular architectures in soybean under drought and rust infection (2026)
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Additional file 1 of Integrative multi-omics analysis reveals stress-specific molecular architectures in soybean under drought and rust infection (2026)
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Additional file 5 of Integrative multi-omics analysis reveals stress-specific molecular architectures in soybean under drought and rust infection (2026)
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Additional file 9 of Integrative multi-omics analysis reveals stress-specific molecular architectures in soybean under drought and rust infection (2026)
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Additional file 9 of Integrative multi-omics analysis reveals stress-specific molecular architectures in soybean under drought and rust infection (2026)
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Additional file 4 of Integrative multi-omics analysis reveals stress-specific molecular architectures in soybean under drought and rust infection (2026)
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Additional file 5 of Integrative multi-omics analysis reveals stress-specific molecular architectures in soybean under drought and rust infection (2026)
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Additional file 6 of Integrative multi-omics analysis reveals stress-specific molecular architectures in soybean under drought and rust infection (2026)
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Additional file 4 of Integrative multi-omics analysis reveals stress-specific molecular architectures in soybean under drought and rust infection (2026)
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Additional file 7 of Integrative multi-omics analysis reveals stress-specific molecular architectures in soybean under drought and rust infection (2026)
Collaboration Network
Top Collaborators
- Integrative Multi-Omics Analysis Reveals Stress-Specific Molecular Architectures in Soybean under Drought and Rust Infection
- Integrative Multi-Omics Analysis Reveals Stress-Specific Molecular Architectures in Soybean under Drought and Rust Infection
- Integrative Multi-Omics Analysis Reveals Stress-Specific Molecular Architectures in Soybean under Drought and Rust Infection
- Integrative Multi-Omics Analysis Reveals Stress-Specific Molecular Architectures in Soybean under Drought and Rust Infection
- Integrative Multi-Omics Analysis Reveals Stress-Specific Molecular Architectures in Soybean under Drought and Rust Infection
- Integrative Multi-Omics Analysis Reveals Stress-Specific Molecular Architectures in Soybean under Drought and Rust Infection
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