Zobrazeno 1 - 10
of 15
pro vyhledávání: '"Patricia M B Fernandes"'
Autor:
Marcella Silva Vieira, Rafael Lara Rezende Cabral, Luíza Favaratto, Laiane Silva Maciel, André da Silva Xavier, Francisco Murilo Zerbini, Patricia M. B. Fernandes
Publikováno v:
SynBio, Vol 2, Iss 3, Pp 267-284 (2024)
Plant viral diseases constitute a major contributor to agricultural production losses, significantly impacting the economies of exporting countries by more than USD 30 billion annually. Understanding and researching the biology and genomics of viruse
Externí odkaz:
https://doaj.org/article/5ffcc11e04bd4406b08ac05b9b0895ea
Autor:
Paolla M V Abreu, Clicia G Gaspar, David S Buss, José A Ventura, Paulo C G Ferreira, Patricia M B Fernandes
Publikováno v:
PLoS ONE, Vol 9, Iss 7, p e103401 (2014)
MicroRNAs are implicated in the response to biotic stresses. Papaya meleira virus (PMeV) is the causal agent of sticky disease, a commercially important pathology in papaya for which there are currently no resistant varieties. PMeV has a number of un
Externí odkaz:
https://doaj.org/article/8edecac300884fd7a6eef9a4b1146f93
Autor:
Ane Catarine Tosi Costa, Lisa Schneper, Mariano Russo, A. Alberto R. Fernandes, James R. Broach, Patricia M. B. Fernandes
Publikováno v:
Fermentation, Vol 10, Iss 8, p 395 (2024)
While the transcriptional responses of yeast cells to a variety of individual stress conditions have been extensively studied, their responses to sequential stress conditions are less well understood. In this study, we present a comparative analysis
Externí odkaz:
https://doaj.org/article/0cb753542c8346498e01ab34f4321b2e
Autor:
Julia B. Merchán-Gaitán, João H. L. Mendes, Lucas E. C. Nunes, David S. Buss, Silas P. Rodrigues, Patricia M. B. Fernandes
Publikováno v:
Viruses, Vol 16, Iss 1, p 47 (2023)
At least 20,000 plant species produce latex, a capacity that appears to have evolved independently on numerous occasions. With a few exceptions, latex is stored under pressure in specialized cells known as laticifers and is exuded upon injury, leadin
Externí odkaz:
https://doaj.org/article/a42aac79b66d4834abf26818374bdc75
Autor:
Ane Catarine Tosi Costa, Mariano Russo, A. Alberto R. Fernandes, James R. Broach, Patricia M. B. Fernandes
Publikováno v:
Fermentation, Vol 9, Iss 2, p 195 (2023)
During the fermentation process, yeast cells face different stresses, and their survival and fermentation efficiency depend on their adaptation to these challenging conditions. Yeast cells must tolerate not only a single stress but also multiple simu
Externí odkaz:
https://doaj.org/article/f73a7da5f0bb4cdcb9d41f35c605e4e9
Autor:
Marlonni Maurastoni, Tathiana F. Sá Antunes, Emanuel F. M. Abreu, Simone G. Ribeiro, Angela Mehta, Marcio M. Sanches, Wagner Fontes, Elliot W. Kitajima, Fabiano T. Cruz, Alexandre M. C. Santos, Jose A. Ventura, Ana C. M. M. Gomes, F. Murilo Zerbini, Patricia Sosa-Acosta, Fábio C. S. Nogueira, Silas P. Rodrigues, Francisco J. L. Aragão, Anna E. Whitfield, Patricia M. B. Fernandes
Publikováno v:
Viruses, Vol 15, Iss 2, p 541 (2023)
Papaya sticky disease is caused by the association of a fusagra-like and an umbra-like virus, named papaya meleira virus (PMeV) and papaya meleira virus 2 (PMeV2), respectively. Both viral genomes are encapsidated in particles formed by the PMeV ORF1
Externí odkaz:
https://doaj.org/article/69fde7d4990a403fa50f6adabcaff5c6
Autor:
Tatiana, Domitrovic, Fernando L, Palhano, Christina, Barja-Fidalgo, Martha, DeFreitas, Marcos T D, Orlando, Patricia M B, Fernandes
Publikováno v:
FEMS Yeast Research. 22
Publikováno v:
Microbiology (Reading, England). 143(3)
Publikováno v:
FEMS Microbiology Letters. 152:17-21
Mutants Saccharomyces cerevisiae deleted on the trehalose-6-phosphate synthase gene (tps1) and their parental wild-type cells were submitted to hydrostatic pressure in the range of 0-200 MPa. Experimental evidence showed that viability for both strai
Publikováno v:
Brazilian Journal of Microbiology, Vol 40, Iss 1, Pp 122-124 (2009)
Papaya meleira virus (PMeV) is the causal agent of papaya (Carica papaya L.) sticky disease, which has been detected through analysis of its double-stranded RNA (dsRNA) genome from plant latex. In this work we demonstrate that PMeV dsRNA is protected