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在光照异养条件下,海洋光合紫色硫细菌(Rhodovulum sulfidophilum)中与生长相关的聚羟基烷酸酯生物合成的最佳铁浓度。

Optimal iron concentrations for growth-associated polyhydroxyalkanoate biosynthesis in the marine photosynthetic purple bacterium Rhodovulum sulfidophilum under photoheterotrophic condition.

机构信息

Biomacromolecules Research Team, RIKEN Center for Sustainable Resource Science, Wako, Saitama, Japan.

出版信息

PLoS One. 2019 Apr 29;14(4):e0212654. doi: 10.1371/journal.pone.0212654. eCollection 2019.

Abstract

Polyhydroxyalkanoates (PHAs) are a group of natural biopolyesters that resemble petroleum-derived plastics in terms of physical properties but are less harmful biologically to the environment and humans. Most of the current PHA producers are heterotrophs, which require expensive feeding materials and thus contribute to the high price of PHAs. Marine photosynthetic bacteria are promising alternative microbial cell factories for cost-effective, carbon neutral and sustainable production of PHAs. In this study, Rhodovulum sulfidophilum, a marine photosynthetic purple nonsulfur bacterium with a high metabolic versatility, was evaluated for cell growth and PHA production under the influence of various media components found in previous studies. We evaluated iron, using ferric citrate, as another essential factor for cell growth and efficient PHA production and confirmed that PHA production in R. sulfidophilum was growth-associated under microaerobic and photoheterotrophic conditions. In fact, a subtle amount of iron (1 to 2 μM) was sufficient to promote rapid cell growth and biomass accumulation, as well as a high PHA volumetric productivity during the logarithmic phase. However, an excess amount of iron did not enhance the growth rate or PHA productivity. Thus, we successfully confirmed that an optimum concentration of iron, an essential nutrient, promotes cell growth in R. sulfidophilum and also enhances PHA utilization.

摘要

聚羟基脂肪酸酯(PHA)是一组天然的生物聚酯,在物理性质上类似于石油衍生的塑料,但对环境和人类的生物危害较小。目前大多数 PHA 生产者都是异养生物,它们需要昂贵的饲养材料,因此导致 PHA 的价格很高。海洋光合细菌是具有成本效益、碳中性和可持续生产 PHA 的有前途的替代微生物细胞工厂。在这项研究中,评估了具有高代谢多功能性的海洋光合紫色非硫细菌 Rhodovulum sulfidophilum 在先前研究中发现的各种培养基成分的影响下的细胞生长和 PHA 生产。我们评估了铁,使用柠檬酸铁作为细胞生长和高效 PHA 生产的另一个必需因素,并证实 R. sulfidophilum 中的 PHA 生产在微需氧和光异养条件下与生长相关。事实上,少量的铁(1 到 2 μM)足以促进对数生长期内快速的细胞生长和生物量积累,以及高的 PHA 比生产率。然而,过量的铁不会提高生长速率或 PHA 生产率。因此,我们成功地证实了必需营养素铁的最佳浓度可以促进 R. sulfidophilum 中的细胞生长,并且还可以增强 PHA 的利用。

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