Development of a bacterium resistant to high salinity through exploration of biological components (2024)
- Authors:
- USP affiliated authors: GUAZZARONI, MARÍA EUGENIA - FFCLRP ; SIMONE, CAMILA MARQUES DE - FMRP ; SIQUEIRA, GUILHERME MARCELINO VIANA DE - FMRP
- Unidades: FFCLRP; FMRP
- Subjects: GENÔMICA; BEBIDAS; FILOGENIA; PROBIÓTICOS; METABOLISMO
- Keywords: Synthetic biology; Saline stress; Genetic circuit; Bioeconomy
- Agências de fomento:
- Language: Português
- Imprenta:
- Publisher: Sociedade Brasileira de Genética (SBG)
- Publisher place: Ribeirão Preto
- Date published: 2024
- Source:
- Título: Resumos (e-Book )
- Conference titles: International Congress of the Brazilian Genetics Society - CBG
-
ABNT
SIMONE, Camila Marques de e SIQUEIRA, Guilherme Marcelino Viana de e GUAZZARONI, Maria Eugenia. Development of a bacterium resistant to high salinity through exploration of biological components. 2024, Anais.. Ribeirão Preto: Sociedade Brasileira de Genética (SBG), 2024. Disponível em: https://www.sbg.org.br/admin/files/book/book_bcovOe2cEJzf.pdf. Acesso em: 13 fev. 2026. -
APA
Simone, C. M. de, Siqueira, G. M. V. de, & Guazzaroni, M. E. (2024). Development of a bacterium resistant to high salinity through exploration of biological components. In Resumos (e-Book ). Ribeirão Preto: Sociedade Brasileira de Genética (SBG). Recuperado de https://www.sbg.org.br/admin/files/book/book_bcovOe2cEJzf.pdf -
NLM
Simone CM de, Siqueira GMV de, Guazzaroni ME. Development of a bacterium resistant to high salinity through exploration of biological components [Internet]. Resumos (e-Book ). 2024 ;[citado 2026 fev. 13 ] Available from: https://www.sbg.org.br/admin/files/book/book_bcovOe2cEJzf.pdf -
Vancouver
Simone CM de, Siqueira GMV de, Guazzaroni ME. Development of a bacterium resistant to high salinity through exploration of biological components [Internet]. Resumos (e-Book ). 2024 ;[citado 2026 fev. 13 ] Available from: https://www.sbg.org.br/admin/files/book/book_bcovOe2cEJzf.pdf - Alternate routes to acetate tolerance lead to varied isoprenol production from mixed carbon sources in Pseudomonas putida
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