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Dive into the research topics where Maiza Alves Lopes is active.

Publication


Featured researches published by Maiza Alves Lopes.


Journal of Microbiology and Biotechnology | 2017

Trametes villosa lignin peroxidase (TvLiP): genetic and molecular characterization.

Rita Terezinha de Oliveira Carneiro; Maiza Alves Lopes; Marília Lordêlo Cardoso Silva; Verônica da Silva Santos; Volnei Brito de Souza; Aurizangela Oliveira de Sousa; Carlos Priminho Pirovani; Maria Gabriela Bello Koblitz; Raquel Guimaraes Benevides; Aristóteles Góes-Neto

White-rot basidiomycetes are the organisms that decompose lignin most efficiently, and Trametes villosa is a promising species for ligninolytic enzyme production. There are several publications on T. villosa applications for lignin degradation regarding the expression and secretion of laccase and manganese peroxidase (MnP) but no reports on the identification and characterization of lignin peroxidase (LiP), a relevant enzyme for the efficient breakdown of lignin. The object of this study was to identify and partially characterize, for the first time, gDNA, mRNA, and the corresponding lignin peroxidase (TvLiP) protein from T. villosa strain CCMB561 from the Brazilian semiarid region. The presence of ligninolytic enzymes produced by this strain grown in inducer media was qualitatively and quantitatively analyzed by spectrophotometry, qPCR, and dye fading using Remazol Brilliant Blue R. The spectrophotometric analysis showed that LiP activity was higher than that of MnP. The greatest LiP expression as measured by qPCR occurred on the 7th day, and the ABSA medium (agar, sugarcane bagasse, and ammonium sulfate) was the best that favored LiP expression. The amplification of the TvLiP gene median region covering approximately 50% of the T. versicolor LPGIV gene (87% identity); the presence of Trp199, Leu115, Asp193, Trp199, and Ala203 in the translated amplicon of the T. villosa mRNA; and the close phylogenetic relationship between TvLiP and T. versicolor LiP all indicate that the target enzyme is a lignin peroxidase. Therefore, T. villosa CCMB561 has great potential for use as a LiP, MnP, and Lac producer for industrial applications.


Fungal Biology | 2008

Use of response surface methodology to examine chitinase regulation in the basidiomycete Moniliophthora perniciosa

Maiza Alves Lopes; Dayane Santos Gomes; Maria Gabriela Bello Koblitz; Carlos Priminho Pirovani; Julio Cezar M. Cascardo; Aristóteles Góes-Neto; Fabienne Micheli


Molecular BioSystems | 2012

Transcriptomics and systems biology analysis in identification of specific pathways involved in cacao resistance and susceptibility to witches' broom disease

Braz Tavares Hora Junior; Joice de Faria Poloni; Maiza Alves Lopes; Cristiano Villela Dias; Karina Peres Gramacho; Ivan Schuster; Xavier Sabau; Julio Cezar M. Cascardo; Sônia Marli Zingaretti Di Mauro; Abelmon Gesteira; Diego Bonatto; Fabienne Micheli


Genetics and Molecular Research | 2010

Expression analysis of transcription factors from the interaction between cacao and Moniliophthora perniciosa (Tricholomataceae)

Maiza Alves Lopes; B.T. Hora Junior; Cristianao Villela Dias; G.C. Santos; Karina Peres Gramacho; Julio Cezar M. Cascardo; Abelmon Gesteira; Fabienne Micheli


Fungal Genetics and Biology | 2016

Mycelial development preceding basidioma formation in #Moniliophthora perniciosa# is associated to chitin, sugar and nutrient metabolism alterations involving autophagy

Dayane Santos Gomes; Maiza Alves Lopes; Sara Pereira Menezes; Lidiane Figueredo Ribeiro; Cristiano Villela Dias; Bruno Silva Andrade; Raildo Mota de Jesus; Acassia Benjamin Leal Pires; Aristóteles Góes-Neto; Fabienne Micheli


Revista de Ciências Médicas e Biológicas | 2017

Danos cromossômicos e alterações nucleares em células esfoliadas do epitélio gengival de indivíduos com periodontite crônica moderada

Ronaldo Carvalho Silva; Murilo Araújo Neris; Maiza Alves Lopes; Eneida de Moraes Marcílio Cerqueira; José Roberto Cardoso Meireles


Archive | 2010

Caracterização bioquimica e molecular de quitinases de #Crinipellis perniciosa#

Maiza Alves Lopes; Dayane Santos Gomes; Sténio Santos Carvalho; Acassia Benjamin Leal Pires; Carlos Priminho Pirovani; Abelmon Gesteira; Karina Peres Gramacho; Maria Gabriela Bello Koblitz; Aristóteles Góes-Neto; Fabienne Micheli


Archive | 2009

Análise da expressão gênica da sintase da quitina (MpCHS), das quitinases (MpCHIT1 e MpCHIT2) e do gene de autofagia (MpATG8) de moniliophthora perniciosa em sistema artificial (bolachas)

Dayane Santos Gomes; Cristiano Villela Dias; Acassia Benjamin Leal Pires; Maiza Alves Lopes; Julio Cezar M. Cascardo; Aristóteles Góes-Neto; Fabienne Micheli


Archive | 2007

Expressão diferencial dos fatores de transcrição da interação #Theobroma cacao-Moniliophthora perniciosa# : [Resumo]

Glaucea Cabral Santos; Maiza Alves Lopes; Abelmon Gesteira; Karina Peres Gramacho; Julio Cezar M. Cascardo; Fabienne Micheli


Archive | 2007

Quitinases de #Moniliophthora perniciosa#, o agente causal da doença vassoura de bruxa do cacau: bons alvosn para o controle da doença : [Resumo]

Dayane Santos Gomes; Maiza Alves Lopes; Carlos Priminho Pirovani; Maria Gabriela Bello Koblitz; Julio Cezar M. Cascardo; Aristóteles Góes-Neto; Fabienne Micheli

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Abelmon Gesteira

Empresa Brasileira de Pesquisa Agropecuária

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Aristóteles Góes-Neto

Universidade Federal de Minas Gerais

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Maria Gabriela Bello Koblitz

State University of Feira de Santana

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Cristiano Villela Dias

State University of Feira de Santana

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Aristóteles Góes Neto

State University of Feira de Santana

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Bruno Silva Andrade

State University of Feira de Santana

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Diego Bonatto

Universidade Federal do Rio Grande do Sul

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