首页> 外文期刊>International journal of hydrogen energy >Relationship between cell growth, hydrogen production and poly-β-hydroxybutyrate (PHB) accumulation by Rhodopseudomonas palustris WP3-5
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Relationship between cell growth, hydrogen production and poly-β-hydroxybutyrate (PHB) accumulation by Rhodopseudomonas palustris WP3-5

机译:假单胞菌WP3-5对细胞生长,产氢与聚-β-羟基丁酸(PHB)积累之间的关系

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Rhodopseudomonas palustris WP3-5 accumulated PHB in growth phase, and PHB could be utilized as another carbon and energy source when its content reached maximum value. Microorganism ceased growing when nitrogen source was exhausted, and used excessive energy to produce more hydrogen in the stationary phase. Rps. palustris WP3-5 could not synthesize PHB under low concentration of carbon source because substrate was degraded rapidly, and there were no difference of hydrogen production between wild-type strain and its PHB synthase-deficient mutant Rps. palustris M23. When concentration of carbon source was three times higher, cumulated hydrogen volume and substrate conversion efficiency of Rps. palustris WP3-5 were better than Rps. palustris M23. This result coincided with other experiments in different culture conditions. But when using malate as carbon source, Rps. palustris WP3-5 had lower substrate degrading rate and cumulated hydrogen volume, and PHB was not accumulated. Rps. palustris WP3-5 used most energy to produce hydrogen in the stationary phase and PHB content was below 10% cell dry weight, accounting for less than 5% of the substrate electrons utilized. This portion of energy might partially be redistributed to synthesize soluble microbial product (SMP). Therefore, the competition relationship between hydrogen production and PHB accumulation was insignificant.
机译:大红假单胞菌WP3-5在生长期积累PHB,当其含量达到最大值时,PHB可作为另一种碳和能源。当氮源耗尽时,微生物停止生长,并使用过多的能量在固定相中产生更多的氢。 Rps。 palustris WP3-5不能在低碳源下合成PHB,因为底物迅速降解,并且野生型菌株与其PHB合酶缺陷型突变Rps之间的产氢量没有差异。 palustris M23。当碳源浓度高三倍时,累积的氢气量和Rps的底物转化效率。 palustris WP3-5优于Rps。 palustris M23。该结果与不同培养条件下的其他实验相吻合。但是当使用苹果酸作为碳源时,Rps。 palustris WP3-5具有较低的底物降解率和累积的氢量,并且没有积累PHB。 Rps。 palustris WP3-5使用最多的能量在固定相中产生氢,PHB含量低于电池干重的10%,不到所用底物电子的5%。这部分能量可能会部分重新分配以合成可溶性微生物产物(SMP)。因此,制氢与PHB积累之间的竞争关系不明显。

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