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Daniela Costa

Postdoctoral Researcher

Research Interests

  • Plant pathology
  • Plant microbial communities
  • Bio-based solutions to avoid crop loss

Education

  • PhD in Biology, Universidade do Minho, Braga, Portugal (2021)
  • MSc I Plant Molecular Biology, Biotechnology and Bioentrepreneurship, Universidade do Minho, Braga, Portugal (2016)
  • BSc in Applied Biology, Universidade do Minho, Braga, Portugal (2013)
  • Costa, D., Tavares, R.M., Baptista, P. and Lino-Neto, T., 2022. The influence of bioclimate on soil microbial communities of cork oak. BMC microbiology22(1), p.163.
  • Costa, D., Ramos, V., Tavares, R.M., Baptista, P. and Lino-Neto, T., 2022. Phylogenetic analysis and genetic diversity of the xylariaceous ascomycete Biscogniauxia mediterranea from cork oak forests in different bioclimates. Scientific Reports12(1), p.2646.
  • Castro, J., Costa, D., Tavares, R.M., Baptista, P. and Lino-Neto, T., 2022. Olive fungal epiphytic communities are affected by their maturation stage. Microorganisms10(2), p.376.
  • Costa, D., Fernandes, T., Martins, F., Pereira, J.A., Tavares, R.M., Santos, P.M., Baptista, P. and Lino-Neto, T., 2021. Illuminating Olea europaea L. endophyte fungal community. Microbiological Research245, p.126693.
  • Costa, D., Tavares, R.M., Baptista, P. and Lino-Neto, T., 2020. Cork oak endophytic fungi as potential biocontrol agents against Biscogniauxia mediterranea and Diplodia corticolaJournal of Fungi6(4), p.287.
  • Giampetruzzi, A., Baptista, P., Morelli, M., Cameirão, C., Lino Neto, T., Costa, D., ... & Saldarelli, P., 2020. Differences in the endophytic microbiome of olive cultivars infected by Xylella fastidiosa across seasons. Pathogens9(9), p.723.
  • Reis, F., Soares-Castro, P., Costa, D., Tavares, R.M., Baptista, P., Santos, P.M. and Lino-Neto, T., 2019. Climatic impacts on the bacterial community profiles of cork oak soils. Applied soil ecology143, pp.89-97.
  • Costa, D., Tavares, R.M., Baptista, P. and Lino-Neto, T., 2018. Diversity of fungal endophytic community in Quercus suber L. under different climate scenarios.
  • Magalhães, A.P., Verde, N., Reis, F., Martins, I., Costa, D., Lino-Neto, T., Castro, P.H., Tavares, R.M. and Azevedo, H., 2016. RNA-Seq and gene network analysis uncover activation of an ABA-dependent signalosome during the cork oak root response to drought. Frontiers in Plant Science6, p.1195.