Instituto de Agronomia, Departamento de Solos, Universidade Federal Rural do Rio de Janeiro, BR 465, km 7-23890-000, Seropédica, RJ, Brasil.
Appl Biochem Biotechnol. 2011 Feb;163(4):473-84. doi: 10.1007/s12010-010-9055-4. Epub 2010 Sep 5.
The bacterial strains that are able to produce biopolymers that are applied in industrial sectors present a source of renewable resources. Some microorganisms are already applied at several industrial sectors, but the prospecting of new microbes must bring microorganisms that are feasible to produce interesting biopolymers more efficiently and in cheaper conditions. Among the biopolymers applied industrially, polyhydroxybutyrate (PHB) and exopolysaccharides (EPS) stand out because of its applications, mainly in biodegradable plastic production and in food industry, respectively. In this context, the capacity of bacteria isolated from pigeonpea root nodules to produce EPS and PHB was evaluated, as well as the cultural characterization of these isolates. Among the 38 isolates evaluated, the majority presented fast growth and ability to acidify the culture media. Regarding the biopolymer production, five isolates produced more than 10 mg PHB per liter of culture medium. Six EPS producing bacteria achieved more than 200 mg EPS per liter of culture medium. Evaluating different carbon sources, the PHB productivity of the isolate 24.6b reached 69% of cell dry weight when cultured with starch as sole carbon source, and the isolate 8.1c synthesized 53% PHB in dry cell biomass and more than 1.3 g L⁻¹ of EPS when grown using xylose as sole carbon source.
能够生产应用于工业领域的生物聚合物的细菌菌株是可再生资源的来源。一些微生物已经应用于多个工业领域,但寻找新的微生物必须带来更高效、更廉价生产有价值生物聚合物的微生物。在工业应用的生物聚合物中,聚羟基丁酸酯(PHB)和胞外多糖(EPS)因其应用而脱颖而出,分别主要用于可生物降解塑料的生产和食品工业。在这种情况下,评估了从豇豆根瘤中分离出的细菌生产 EPS 和 PHB 的能力,以及这些分离物的培养特性。在所评估的 38 个分离物中,大多数具有快速生长和酸化培养基的能力。关于生物聚合物的生产,有 5 个分离物每升培养基生产超过 10 毫克 PHB。有 6 株 EPS 产生菌每升培养物中产生超过 200 毫克 EPS。评估不同的碳源时,当以淀粉作为唯一碳源培养时,分离物 24.6b 的 PHB 生产力达到细胞干重的 69%,而分离物 8.1c 在以木糖作为唯一碳源生长时合成了 53%的 PHB 干细胞生物质和超过 1.3 克/升的 EPS。