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球形红杆菌中叶绿素a合酶的克隆与异源表达。

Cloning and heterologous expression of chlorophyll a synthase in Rhodobacter sphaeroides.

作者信息

Ipekoğlu Emre M, Göçmen Koray, Öz Mehmet T, Gürgan Muazzez, Yücel Meral

机构信息

Department of Molecular Biology and Genetics, Middle East Technical University, Ankara, Turkey.

Department of Electrical and Computer Engineering, University of Toronto, Toronto, Canada.

出版信息

J Basic Microbiol. 2017 Mar;57(3):238-244. doi: 10.1002/jobm.201600580. Epub 2016 Nov 30.

Abstract

Rhodobacter sphaeroides is a purple non-sulfur bacterium which photoheterotrophically produces hydrogen from organic acids under anaerobic conditions. A gene coding for putative chlorophyll a synthase (chlG) from cyanobacterium Prochlorococcus marinus was amplified by nested polymerase chain reaction and cloned into an inducible-expression plasmid which was subsequently transferred to R. sphaeroides for heterologous expression. Induced expression of chlG in R. sphaeroides led to changes in light absorption spectrum within 400-700 nm. The hydrogen production capacity of the mutant strain was evaluated on hydrogen production medium with 15 mM malate and 2 mM glutamate. Hydrogen yield and productivity were increased by 13.6 and 22.6%, respectively, compared to the wild type strain. The results demonstrated the feasibility of genetic engineering to combine chlorophyll and bacteriochlorophyll biosynthetic pathways which utilize common intermediates. Heterologous expression of key enzymes from biosynthetic pathways of various pigments is proposed here as a general strategy to improve absorption spectra and yield of photosynthesis and hydrogen gas production in bacteria.

摘要

球形红细菌是一种紫色非硫细菌,它在厌氧条件下通过光异养作用从有机酸中产生氢气。通过巢式聚合酶链反应扩增了来自海洋原绿球藻的假定叶绿素a合酶(chlG)编码基因,并将其克隆到一个诱导表达质粒中,随后将该质粒转移到球形红细菌中进行异源表达。chlG在球形红细菌中的诱导表达导致400-700nm范围内的光吸收光谱发生变化。在含有15mM苹果酸和2mM谷氨酸的产氢培养基上评估突变菌株的产氢能力。与野生型菌株相比,氢气产量和产率分别提高了13.6%和22.6%。结果证明了基因工程结合利用共同中间体的叶绿素和细菌叶绿素生物合成途径的可行性。本文提出,来自各种色素生物合成途径的关键酶的异源表达是改善细菌光合作用吸收光谱和产率以及氢气产生的一般策略。

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