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Master's Dissertation
DOI
https://doi.org/10.11606/D.42.2010.tde-25032010-154734
Document
Author
Full name
Thatiane Teixeira Mendonça
Institute/School/College
Knowledge Area
Date of Defense
Published
São Paulo, 2010
Supervisor
Committee
Silva, Luiziana Ferreira da (President)
Taciro, Marilda Keico
Torres, Bayardo Baptista
Title in Portuguese
Avaliação do potencial de Burkholderia sacchari produzir o copolimero biodegradável poli(3-hidroxibutirato-co-3-hidroxihexanoato) [P(3HB-co-3HHX)].
Keywords in Portuguese
Burkholderia sacchari
Ácidos orgânicos
P(3HB-co-3HHx)
Plímeros biodegradáveis
Polihidroxialcanoatos.
Abstract in Portuguese
A capacidade de B. sacchari acumular poli-3-hidroxibutirato-co-3-hidroxihexanoato (P3HB-co-3HHx) foi confirmada, com até 2 mol% de 3HHx no PHA total (<10% do 3HHx máximo teórico a partir do ácido), indicando flexibilidade da PHA sintase por substratos, porém alta eficiência nas vias catabólicas do hexanoato. Análise da estabilidade térmica do PHA indicou uma temperatura de degradação reduzida, compatível com a presença de unidades 3HHx. Mutantes incapazes de crescer em ácido hexanóico foram obtidos com UV e transposon mini-Tn5, que ainda acumulavam 3HHx a partir de hexanoato mas com redução na capacidade do acúmulo de 3HB e 3HHx. Foram construídos recombinantes abrigando o gene phaB (codificador de 3-cetoacil-CoA redutase) de Ralstonia eutropha ou phaJ1 e phaJ2 (codificadores de enoil-CoA hidratases R-específicas) de Pseudomonas aeruginosa. A expressão de phaB ou phaJ1 aumentou a canalização de 3HB para a PHA sintase, apesar de não aumentar as frações de 3HHx. Monômeros de 3HHx e 3HO foram detectados a partir de ácidos butírico e octanóico, respectivamente.
Title in English
Evaluating the potential of Burkholderia sacchari to produce the biodegradable copolymer poly (3-hydroxybutirate-co-3-hydroxyhexanoate).
Keywords in English
Burkholderia sacchari
Biodegradable polymers
Organic acids
P(3HB-co-3HHx)
Polyhydroxyalkanoates
Abstract in English
The ability of B. sacchari to accumulate poly-3-hydroxybutyrate-co-3-hydroxyhexanoate (P3HB-co-3HHx) from glucose and hexanoic acid was confirmed. 3HHx content was up to 2 mol% of PHA (<10% of the maximum theoretical 3HHx from the acid), indicating a substrate flexibility of B. sacchari PHA synthase, but high efficiency of hexanoate catabolic pathways. Thermal stability analysis of the copolymer indicated a reduced degradation temperature compatible with 3HHx units. Mutants unable to grow on hexanoic acid were obtained with UV and mini-Tn5 transposon. They still accumulated 3HHx from hexanoate, but the ability to accumulate 3HB and 3HHx was reduced. Recombinants harboring the Ralstonia eutropha phaB (encoding 3-ketoacyl-CoA reductase) and Pseudomonas aeruginosa phaJ1 and phaJ4 genes (encoding R-specific enoyl-CoA hydratases) were constructed. Expression of both phaB and phaJ1 increased the channeling of 3HB to the PHA synthase, despite no increase on 3HHx fraction was observed. 3HHx and 3HO monomers were detected from butyric and octanoic acids, respectively.
 
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Publishing Date
2010-03-29
 
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