Rede Mineira

1.
FERREIRA, MARCO AURELIO; SILVA, FREDY D.A. ; REIS, PEDRO A.B. ; FONTES, ELIZABETH P.B. . Decoding the Senses: A New Player in Plant-Virus Dynamics Unveiled. Molecular Plant, v. 1, p. 1, 2025.

2.
FERREIRA, MARCO AURÉLIO; TEIXEIRA, RUAN M. ; BRUSTOLINI, OTÁVIO J. B. ; SAIA, THAINÁ F. F. ; JEAN-BAPTISTE, JAMES ; RIBEIRO, NATHALIA G. A. ; BREVES, SÂMERA S. ; SAMPAIO, FELLIPE R. ; SANTOS, EULÁLIO G. D. ; LEON, BORYS A. ; OLIVEIRA, CELIO C. ; DUARTE, CHRISTIANE E. M. ; LIMA, LUCAS L. ; OLIVEIRA, LEANDRO L. ; RAMOS, HUMBERTO J. O. ; REIS, PEDRO A. B. ; FONTES, ELIZABETH P. B. . The immune NIK1/RPL10/LIMYB signaling module regulates photosynthesis and translation under biotic and abiotic stresses.. Nature Communications, v. 16, p. 1-31, 2025.

3.
GUTEMBERG DIAS DOS SANTOS, EULÁLIO ; RODRIGUES DA SILVA JÚNIOR, NEILIER ; FERREIRA, MARCO AURÉLIO ; DE PAULA ALVES PINTO, IAN ; DA SILVA BONJOUR, MONIQUE ; PEREIRA VIDIGAL, PEDRO MARCUS ; BATISTA FONTES, ELIZABETH PACHECO ; ALMEIDA OLIVEIRA, MARIA GORETI ; OLIVEIRA RAMOS, HUMBERTO JOSUÉ . Differential gene expression reprogramming in the midgut of Anticarsia gemmatalis (Lepidoptera: Noctuidae) triggered by an SKTI-derivative tripeptide protease inhibitor compared to the natural SKTI protein. EUROPEAN JOURNAL OF ENTOMOLOGY, v. 122, p. 119-136, 2025.

4.
RODRIGUES, JULIANO MENDONÇA ; COUTINHO, FLAVIANE SILVA ; DE PAULA ALVES PINTO, IAN ; FERREIRA, MARCO AURÉLIO ; RAMOS, JULIANA ROCHA LOPES SOARES ; DE ALMEIDA OLIVEIRA, MARIA GORETI ; FONTES, ELIZABETH PACHECO BATISTA ; DE OLIVEIRA RAMOS, HUMBERTO JOSUÉ . BiP-overexpressing soybean shows differential hypersensitivity response (HR) altering protein and metabolite profiles involved in the plant defense. Plant Physiology Reports, v. x, p. 1-19, 2023.

5.
SILVA, JOSE CLEYDSON F. ; FERREIRA, MARCO AURÉLIO ; CARVALHO, THALES F. M. ; SILVA, FABYANO F. ; DE A. SILVEIRA, SABRINA ; BROMMONSCHENKEL, SERGIO H. ; FONTES, ELIZABETH P. B. . RLPredictiOme, a Machine Learning-Derived Method for High-Throughput Prediction of Plant Receptor-like Proteins, Reveals Novel Classes of Transmembrane Receptors. INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES, v. 23, p. 12176, 2022.