Kouřilová Xenie, Schwarzerová Jana, Pernicová Iva, Sedlář Karel, Mrázová Kateřina, Krzyžánek Vladislav, Nebesářová Jana, Obruča Stanislav
Department of Food Chemistry and Biotechnology, Faculty of Chemistry, Brno University of Technology, Purkynova 118, 612 00 Brno, Czech Republic.
Department of Biomedical Engineering, Faculty of Electrical Engineering and Communication, Brno University of Technology, Technicka 12, 616 00 Brno, Czech Republic.
Microorganisms. 2021 Apr 24;9(5):909. doi: 10.3390/microorganisms9050909.
Actinobacteria belonging to the genus are known for their multi-extremophilic growth conditions-they are highly radiation-resistant, halotolerant, thermotolerant or even thermophilic. This work demonstrates that the members of the genus are capable of accumulating polyhydroxyalkanoates (PHA) since PHA-related genes are widely distributed among spp. whose complete genome sequences are available in public databases. Interestingly, all strains possess both class I and class III synthases (PhaC). We have experimentally investigated the PHA accumulation in two thermophilic species, and . The PHA content in both strains reached up to 50% of the cell dry mass, both bacteria were able to accumulate PHA consisting of 3-hydroxybutyrate and 3-hydroxyvalerate monomeric units, none other monomers were incorporated into the polymer chain. The capability of PHA accumulation likely contributes to the multi-extremophilic characteristics since it is known that PHA substantially enhances the stress robustness of bacteria. Hence, PHA can be considered as extremolytes enabling adaptation to extreme conditions. Furthermore, due to the high PHA content in biomass, a wide range of utilizable substrates, Gram-stain positivity, and thermophilic features, the species, in particular , could be also interesting candidates for industrial production of PHA within the concept of Next-Generation Industrial Biotechnology.
属于该属的放线菌以其多极端嗜性生长条件而闻名——它们具有高度抗辐射、耐盐、耐热甚至嗜热的特性。这项工作表明,该属的成员能够积累聚羟基脂肪酸酯(PHA),因为PHA相关基因广泛分布于公共数据库中可获得完整基因组序列的该属物种中。有趣的是,所有该属菌株都同时拥有I类和III类合酶(PhaC)。我们已经对两种嗜热物种进行了PHA积累的实验研究。两种菌株中的PHA含量均达到细胞干重的50%,两种细菌都能够积累由3-羟基丁酸酯和3-羟基戊酸酯单体单元组成的PHA,没有其他单体掺入聚合物链中。PHA积累的能力可能有助于其多极端嗜性特征,因为已知PHA能显著增强细菌的应激耐受性。因此,PHA可被视为使细菌适应极端条件的极端溶质。此外,由于生物质中PHA含量高、可利用底物范围广、革兰氏染色阳性以及嗜热特性,该属物种,特别是[具体物种名称未给出],在下一代工业生物技术概念下,也可能是PHA工业生产的有趣候选菌株。