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Production of polyhydroxybutyrate (PHB) of high and ultra-high molecular weight by Azotobacter vinelandii in batch and fed-batch cultures

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논문

Production of polyhydroxybutyrate (PHB) of high and ultra-high molecular weight by Azotobacter vinelandii in batch and fed-batch cultures

학술지

Journal of chemical technology and biotechnology

저자명

Castillo, Tania; Flores, Celia; Segura, Daniel; Espí n, Guadalupe; Sanguino, Jonathan; Cabrera, Eliseo; Barreto, Jasmí n; Dí az‐ Barrera, Alvaro; Peñ a, Carlos

초록

<P><B>Abstract</B></P><P><B>BACKGROUND</B></P><P>Polyhydroxybutyrate (PHB) is a biopolymer with thermo&#8208;mechanical properties like those of plastics produced by the petrochemical industry. These properties are improved in PHBs of high or ultra&#8208;high weight average molecular weight. <I>Azotobacter vinelandii</I> OPNA is a potential producer of large quantities of PHB, having ultra&#8208;high molecular weight by fed&#8208;batch production strategies.</P><P><B>RESULTS</B></P><P>In batch and fed&#8208;batch cultures at different carbon&ndash;nitrogen molar ratios (10, 14 and 18), the OPNA strain produced PHB of high and ultra&#8208;high weight average molecular weight, with values between 2.3 and 6.6 MDa. In this strain, the weight average molecular weight was highly dependent on the initial carbon&ndash;nitrogen ratio, reaching the highest value (6.6 MDa) in batch cultures conducted with a carbon&ndash;nitrogen ratio of 18 and the lowest (2.3) with a carbon&ndash;nitrogen ratio of 10. On the other hand, using a two feeding&#8208;pulses fed&#8208;batch strategy, the highest global PHB volumetric productivity (0.56 g L<SUP>&minus;1</SUP> h<SUP>&minus;1</SUP>) and polymer concentration (27.6 g L<SUP>&minus;1</SUP>) were obtained.</P><P><B>CONCLUSION</B></P><P>The OPNA strain accumulated up to 80% of PHB of ultra&#8208;high molecular weight as a function of the initial carbon&ndash;nitrogen molar ratio. Using a simple fed&#8208;batch strategy of two feeding&#8208;pulses was possible to produce up to 27 g L<SUP>&minus;1</SUP> of PHB. &copy; 2016 Society of Chemical Industry</P>

발행연도

2017

발행기관

John WileySons, Ltd

ISSN

0268-2575

ISSN

1097-4660

92

7

페이지

pp.1809-1816

주제어

Fermentation; Biochemical engineering; Biodegradable; Industrial Microbiology

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논문; 2017-12-31

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