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Turning BacTERia into factories of BIOdegradable PLASTICS

Projektbeschreibung

Entwicklung biologisch abbaubarer Kunststoffe aus Bakterien

Ziel des Projekts BterBioPlastics ist die Entwicklung biologisch abbaubarer Materialien zur Reduzierung der weltweiten Umweltbelastung. Alternativen aus der bakteriellen Fermentation sind kostenintensiv und das Produktionsniveau ist niedrig. Das Projekt plant, Fachwissen über RNA-Regulatoren für die Forschung zur Kunststoffherstellung mit den ungiftigen Bakterien Sinorhizobium meliloti und Pseudomonas putida zu nutzen. Das Projekt wird außerdem Pilotstrategien der Fermentierung und metabolischen Modulation untersuchen, um das Niveau der Produktion von Biokunststoffen zu erhöhen, und mit Biokunststoff-Experten zusammenarbeiten. Das Projekt wird dabei helfen, die berufliche Unabhängigkeit von Forschern im Bereich der synthetischen Biologie und Mikrobendomestizierung zu fördern, und dem industriellen Sektor eine natürliche und biologisch abbaubare Kunststoffvariante bieten.

Ziel

Plastics are littering our environment, contributing to health problems and it is urgent to find sustainable alternatives. Polyhydroxyalkanoates (PHAs) are natural (not synthetic) and non-toxic polyesters and can be derived from bacterial fermentation. However, the amount produced is low for the demand, costs for production are high and non-competitive when compared to plastics from crude oil. Therefore, it is urgent to overcome this limiting factor by increasing the production of biodegradable bioplastics. This proposal is promising and can impact our everyday life through innovative ways to increase production and versatility of bio-based degradable plastics. Herein, I propose to improve the production of different kinds of PHAs through two chassis: Sinorhizobium meliloti, and Pseudomonas putida, both recognized as safe (GRAS status) and able to grow in fermenters. First, I aim to use the gained knowledge during my PhD training in small RNA regulators (sRNAs) in S. meliloti, as well as the expertise of my host group in RNA-mediated regulation of gene expression and RNases, to improve the production of one kind of PHA in the first chassis. Second, I will implement transcriptome analysis of P. putida and generate synthetic sRNAs as an innovative vector for the control of key enzymes involved in PHA production in the second chassis. Finally, pilot fermentations and metabolic modulation strategies will upscale and upgrade the bioplastics accumulated in both organisms (collaborating with world experts in bioplastics: short-stay and secondment) and connect us to the non-academic sector. This multidisciplinary project will be broadly advertised to different audiences. I will acquire new knowledge, transferrable skills, training and collaborations. This will prompt my career to international levels in synthetic biology and domestication of microbes as bio-alternative for relevant industrial purposes. In the end, I will be prepared to become an independent scientist.

Aufforderung zur Vorschlagseinreichung

H2020-WF-2018-2020

Andere Projekte für diesen Aufruf anzeigen

Unterauftrag

H2020-WF-01-2018

Koordinator

UNIVERSIDADE NOVA DE LISBOA
Netto-EU-Beitrag
€ 147 815,04
Adresse
CAMPUS DE CAMPOLIDE
1099 085 Lisboa
Portugal

Auf der Karte ansehen

Region
Continente Área Metropolitana de Lisboa Área Metropolitana de Lisboa
Aktivitätstyp
Higher or Secondary Education Establishments
Links
Gesamtkosten
€ 147 815,04