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Pedro Paulo Augusto Fabiano Arantes Pereira Barreto

CV Lattes ResearcherID

Universidade Estadual de Campinas (UNICAMP). Centro de Biologia Molecular e Engenharia Genética (CBMEG)  (Institutional affiliation for the last research proposal)
Birthplace: Brazil

Pedro is bachelor in Biotechnology, industrial modality, for the Federal University of São Carlos (UFSCar) and finished in 2009. He has been an intern and cientific initiation student for 2 years at UFSCar and for 6 monts at Food Engineering College (FEA) of State University of Campinas (UNICAMP). Currently is a ph.D in Genetics and Molecular biology and undergraduate in Economic Sciences, both at UNICAMP. His phD thesis is being developed at Molecular Biology and Genetic Engineering Center (CBMEG) under the orientation of Prof. Dr. Paulo Arruda. The current academic research is focused on the mechanism of mitochondrial-nuclear communication and its relationship with stress response in plants. (Source: Lattes Curriculum)

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Scientific publications resulting from Research Grants and Scholarships under the grantee's responsibility (4)

(References retrieved automatically from Web of Science and SciELO through information on FAPESP grants and their corresponding numbers as mentioned in the publications by the authors)

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BARRETO, PEDRO; YASSITEPE, JULIANA E. C. T.; WILSON, ZOE A.; ARRUDA, PAULO. Mitochondrial Uncoupling Protein 1 Overexpression Increases Yield in Nicotiana tabacum under Drought Stress by Improving Source and Sink Metabolism. FRONTIERS IN PLANT SCIENCE, v. 8, . Web of Science Citations: 4. (14/17634-5)

ARRUDA, PAULO; BARRETO, PEDRO. Lysine Catabolism Through the Saccharopine Pathway: Enzymes and Intermediates Involved in Plant Responses to Abiotic and Biotic Stress. FRONTIERS IN PLANT SCIENCE, v. 11, . Web of Science Citations: 1. (14/17634-5, 16/23218-0)

BARRETO, PEDRO; OKURA, VAGNER; PENA, IZABELLA A.; MAIA, RENATO; MAIA, IVAN G.; ARRUDA, PAULO. Overexpression of mitochondrial uncoupling protein 1 (UCP1) induces a hypoxic response in Nicotiana tabacum leaves. Journal of Experimental Botany, v. 67, n. 1, p. 301-313, . Web of Science Citations: 4. (12/00235-5, 14/17634-5, 14/24183-0)

BARRETO, PEDRO; OKURA, VAGNER KATSUMI; PENA NESHICH, IZABELLA AGOSTINHO; MAIA, IVAN DE GODOY; ARRUDA, PAULO. Overexpression of UCP1 in tobacco induces mitochondrial biogenesis and amplifies a broad stress response. BMC PLANT BIOLOGY, v. 14, . Web of Science Citations: 21. (12/00126-1, 12/00235-5)

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