Higuchi-Takeuchi Mieko, Numata Keiji
Biomacromolecules Research Team, RIKEN Center for Sustainable Resource Science, Saitama, Japan.
Front Bioeng Biotechnol. 2019 May 28;7:118. doi: 10.3389/fbioe.2019.00118. eCollection 2019.
Polyhydroxyalkanoates (PHAs) are a family of biopolyesters that a variety of microorganisms accumulate as carbon and energy storage molecules under starvation conditions in the presence of excess carbon. Anoxygenic photosynthetic bacteria exhibit a variety of growth styles and high PHA production activity. Here, we characterized PHA production by four marine purple non-sulfur bacteria strains (, and ) under different growth conditions. Unlike the well-studied PHA-producing bacteria, nutrient limitation is not appropriate for PHA production in marine purple non-sulfur bacteria. We found that marine purple non-sulfur bacteria did not accumulate PHA under aerobic conditions in the presence of malate and pyruvate. Interestingly, PHA accumulation was observed upon the addition of acetate under aerobic conditions but was not observed upon the addition of reductants, suggesting that an acetate-dependent pathway is involved in PHA accumulation. Gene expression analysis revealed that the expression of isocitrate dehydrogenase in the tricarboxylic acid (TCA) cycle decreased under aerobic conditions and increased with the addition of acetate, indicating that TCA cycle activity is involved in PHA production under aerobic conditions. We also found that expression of PdhR, which belongs to the GntR family of transcription regulators, in was upregulated upon the addition of acetate. Taken together, the results show that the changes in the metabolic state upon the addition of acetate, possibly regulated by PdhR, are important for PHA production under aerobic conditions in marine purple non-sulfur bacteria.
聚羟基脂肪酸酯(PHA)是一类生物聚酯,在碳源过量且处于饥饿条件下,多种微生物会将其作为碳和能量储存分子进行积累。无氧光合细菌表现出多种生长方式且具有较高的PHA生产活性。在此,我们对四株海洋紫色非硫细菌菌株( 、 和 )在不同生长条件下的PHA生产特性进行了研究。与经过充分研究的PHA生产细菌不同,营养限制并不适合海洋紫色非硫细菌进行PHA生产。我们发现,在有氧条件下,当存在苹果酸和丙酮酸时,海洋紫色非硫细菌不会积累PHA。有趣的是,在有氧条件下添加乙酸盐时可观察到PHA积累,但添加还原剂时未观察到PHA积累,这表明乙酸盐依赖途径参与了PHA积累。基因表达分析显示,在有氧条件下,三羧酸(TCA)循环中的异柠檬酸脱氢酶表达下降,而添加乙酸盐后其表达增加,这表明TCA循环活性参与了有氧条件下的PHA生产。我们还发现,添加乙酸盐后, 中属于转录调节因子GntR家族的PdhR表达上调。综上所述,结果表明,添加乙酸盐后代谢状态的变化(可能受PdhR调控)对海洋紫色非硫细菌在有氧条件下的PHA生产至关重要。