• JoomlaWorks Simple Image Rotator
  • JoomlaWorks Simple Image Rotator
  • JoomlaWorks Simple Image Rotator
  • JoomlaWorks Simple Image Rotator
  • JoomlaWorks Simple Image Rotator
  • JoomlaWorks Simple Image Rotator
  • JoomlaWorks Simple Image Rotator
  • JoomlaWorks Simple Image Rotator
  • JoomlaWorks Simple Image Rotator
  • JoomlaWorks Simple Image Rotator
 
  Bookmark and Share
 
 
Mémoire de Maîtrise
DOI
https://doi.org/10.11606/D.42.2015.tde-26082015-142939
Document
Auteur
Nom complet
Juliano Cherix
Unité de l'USP
Domain de Connaissance
Date de Soutenance
Editeur
São Paulo, 2015
Directeur
Jury
Silva, Luiziana Ferreira da (Président)
Baldini, Regina Lúcia
Fernandes, Andrea Balan
Titre en portugais
Avaliação de genes para o catabolismo de xilose e seu potencial para geração de bioprodutos.
Mots-clés en portugais
Burkholderia sacchari
P3HB
Polihidroxialcanoatos
Via isomerase
Xilose
Xilose isomerase
Resumé en portugais
A xilose é um dos principais componentes dos materiais lignocelulósicos, os quais são de grande interesse para produção de bioprodutos como etanol e polihidroxialcanoatos (PHA). Visando melhorar o consumo de xilose em Burkholderia sacchari, uma grande produtora de PHA, os seguintes genes codificadores de xilose isomerase foram nela inseridos e avaliados: xylABs, xylABc, xylAPl, xylABp e xylABx, respectivamente de B. sacchari, B. cenocepacia, Photorhabdus luminescens, B. phymatum e B. xenovorans. Foi ainda sintetizado o gene de B. sacchari (xylA*) no qual foram inseridas modificações descritas na literatura como capazes de aumentar o consumo de xilose em outros organismos. As linhagens recombinantes de B. sacchari abrigando os genes xylABs e xylA* tiveram um aumento de aproximadamente 30%, e aquelas abrigando os genes xylABp e xylABx de 23%, no consumo de xilose quando comparadas com a linhagem controle. Essas quatro linhagens recombinantes foram aquelas que conseguiram produzir maior quantidade de P3HB, aproximadamente 70% a mais do que linhagem controle.
Titre en anglais
Evaluation of xylose catabolism genes and their potential for the generation of bioproducts.
Mots-clés en anglais
Burkholderia sacchari
Isomerase pathway
P3HB
Polyhydroxyalkanoates
Xylose
Xylose isomerase
Resumé en anglais
Xylose is a major component of lignocellulosic materials, which are of great interest for the production of bio-products, such as ethanol and polyhydroxyalkanoates (PHA). To improve the consumption of xylose in Burkholderia sacchari, a major PHA producer, the following genes, encoding xylose isomerase, were introduced in these bacteria: xylABs, xylABc, xylAPl, xylABp and xylABx, respectively from B. sacchari, B. cenocepacia, Photorhabdus luminescens, B. phymatum e B. xenovorans. The gene of B. sacchari (xylA*) was also synthesized with several modifications described in the literature as able to increase the consumption of xylose in other organisms. Recombinant strains harboring B. sacchari xylABs and xylA* gene had an increase of approximately 30% in the xylose consumption compared to the control strain, and those harboring xylABx and xylABp gene an increase of 23%. These four recombinant strains were those that were able to produce more P3HB, approximately 70% more than the control strain.
 
AVERTISSEMENT - Regarde ce document est soumise à votre acceptation des conditions d'utilisation suivantes:
Ce document est uniquement à des fins privées pour la recherche et l'enseignement. Reproduction à des fins commerciales est interdite. Cette droits couvrent l'ensemble des données sur ce document ainsi que son contenu. Toute utilisation ou de copie de ce document, en totalité ou en partie, doit inclure le nom de l'auteur.
Date de Publication
2015-08-28
 
AVERTISSEMENT: Apprenez ce que sont des œvres dérivées cliquant ici.
Tous droits de la thèse/dissertation appartiennent aux auteurs
CeTI-SC/STI
Bibliothèque Numérique de Thèses et Mémoires de l'USP. Copyright © 2001-2024. Tous droits réservés.