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The effect of energy substrates on PHB accumulation of Acidiphilium cryptum DX1-1. | LitMetric

AI Article Synopsis

  • The study examines how glucose and sulfur affect the growth and PHB (polyhydroxybutyrate) production in the bacterium Acidiphilium cryptum DX1-1.
  • The researchers found that this strain can utilize sulfur for energy and CO2 from the atmosphere as a carbon source to accumulate PHB.
  • The presence of glucose enhances growth and increases the expression of genes related to PHB synthesis, indicating its potential for efficient PHB production without the need for light.

Article Abstract

The effect of glucose and elemental sulfur on the growth and PHB accumulation of Acidiphilium cryptum DX1-1 was investigated. Meanwhile, the differential expressions of 19 genes related with PHB accumulation, sulfur metabolism and carbon fixed in heterotrophy, phytotrophy and mixotrophy were studied by RT-qPCR. The results showed that strain DX1-1 could accumulate PHB with sulfur as the energy substance and atmospheric CO2 as carbon resource. Glucose could improve the growth of strain DX1-1 cultured in medium with sulfur as the energy substance, and almost all the key enzyme-encoding genes related with PHB, sulfur metabolism and carbon fixed were basically up-regulated. PHB polymerase (Arcy_3030), ribulose-bisphosphate carboxylase (Acry_0825), ribulose-phosphate-epimerase (Acry_0022), and cysteine synthase A (Acry_2560) played important role in PHB accumulation, the modified expression of which could influence the PHB yield. With CO2 as carbon resource, the main initial substance of PHB accumulation for strain DX1-1 was acetyl-CoA, instead of acetate with the glucose as the carbon resource. Because of accumulating PHB by fixed atmospheric CO2 while independent of light, A. cryptum DX1-1 may have specifically potential in production of PHB.

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Source
http://dx.doi.org/10.1007/s00284-013-0373-yDOI Listing

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