School of Water Conservancy and Environment Engineering, Zhengzhou University, Zhengzhou 450002, China.
State Key Laboratory of Urban Water Resource and Environment, Harbin Institute of Technology, Harbin 150090, China.
Bioresour Technol. 2020 Jan;296:122369. doi: 10.1016/j.biortech.2019.122369. Epub 2019 Nov 5.
The suitable feeding strategy considering both substrate preference (enrichment stage) and flexible regulation (PHA accumulation stage) were investigated, respectively, based on intracellular polymers synthesis peculiarities of the three types of cultures (M-Ac, M-Pr and M-Bu), which were enriched correspondingly using acetic type, propionic type and butyric type substrate. Compared to M-Ac and M-Bu cultures, maximum PHA content (PHA) of M-Pr exhibited the most stable responses to varying fractions of propionic acid (f) of the substrate. The substrate composed of acetic acid and propionic acid (Mix-AP) demonstrated higher efficiency in regulation of polymer composition than that composed of butyric acid and propionic acid (Mix-BP). For the whole process of three-stage MC PHA production, propionic acid-dominated acidification products should be used for the long-term enrichment of PHA producers, and acidification products mainly composed of propionic and acetic acid are preferred considering the regulation of polymer composition in PHA accumulation stage.
分别基于三种培养物(M-Ac、M-Pr 和 M-Bu)的细胞内聚合物合成特点,研究了既能考虑基质偏好(富集阶段)又能灵活调节(PHA 积累阶段)的合适的喂养策略。这三种培养物分别用乙酸型、丙酸型和丁酸型基质进行富集。与 M-Ac 和 M-Bu 培养物相比,M-Pr 培养物的最大 PHA 含量(PHA)对基质中丙酸分数(f)的变化表现出最稳定的响应。由乙酸和丙酸组成的基质(Mix-AP)在调节聚合物组成方面比由丁酸和丙酸组成的基质(Mix-BP)更有效。对于三阶段 MC PHA 生产的整个过程,应该使用丙酸占主导的酸化产物来长期富集 PHA 产生菌,并且考虑到 PHA 积累阶段聚合物组成的调节,应该优先使用主要由丙酸和乙酸组成的酸化产物。