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在莱茵衣藻叶绿体中表达密码子优化的 hemH 和 lba 基因提高生物氢气产量。

Improved biohydrogen production with an expression of codon-optimized hemH and lba genes in the chloroplast of Chlamydomonas reinhardtii.

机构信息

Department of Biology, College of Life and Environmental Science, Shanghai Normal University, Shanghai, PR China.

出版信息

Bioresour Technol. 2011 Feb;102(3):2610-6. doi: 10.1016/j.biortech.2010.09.123. Epub 2010 Oct 8.

Abstract

According to the codon bias in the chloroplast genome of Chlamydomonas reinhardtii, the codon-optimized coding regions of both the ferrochelatase gene, hemH, from Bradyrhizobium japonicum and the leghemoglobin gene, lba, from Glycine max were synthesized de novo and transferred into the chloroplast of C. reinhardtii. The expression level of hemH-lba protein was improved by 6.8 folds in the codon-optimized transgenic alga compared with the non-optimized one under both normal and anaerobic conditions. H(2) yield was 22% and the respiration rate was 44% higher in the codon-optimized transgenic algal cultures than those of the non-optimized ones, and was 450% and 134% higher than those of the control cultures, respectively. The transcript levels of hydA1 and hydA2 in the hemH-lba transgenic alga were also more stable and higher than those of the control alga. These results demonstrate that codon optimization increased the expression level of hemH-lba protein in the chloroplast of C. reinhardtii and improved algal H(2) yield by enhancing the respiration rate resulting in low O(2) content in the medium and up regulation of the expression of hydA1 and hydA2 in cells, thereby confirming the potential of the utilization of leghemoglobins for H(2) production in green algae.

摘要

根据莱茵衣藻叶绿体基因组的密码子偏好性,对来自根瘤菌的亚铁螯合酶基因 hemH 和来自大豆的血红蛋白基因 lba 的密码子进行优化合成,并将其转入莱茵衣藻的叶绿体中。与非优化的转基因藻类相比,优化后的 hemH-lba 蛋白在正常和厌氧条件下的表达水平分别提高了 6.8 倍。与非优化的转基因藻类相比,优化后的转基因藻类的 H 2 产量分别提高了 22%和呼吸速率提高了 44%,与对照相比,分别提高了 450%和 134%。hemH-lba 转基因藻类中 hydA1 和 hydA2 的转录水平也比对照藻类更稳定和更高。这些结果表明,密码子优化提高了 hemH-lba 蛋白在莱茵衣藻叶绿体中的表达水平,并通过提高呼吸速率来提高藻类的 H 2 产量,从而导致培养基中低氧含量和细胞中 hydA1 和 hydA2 的表达上调,从而证实了血红蛋白在绿藻中生产 H 2 的潜力。

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