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单细胞红藻梅洛拉氏蓝细菌中质体和核编码的cbbX基因的分子系统发育与进化

Molecular phylogeny and evolution of the plastid and nuclear encoded cbbX genes in the unicellular red alga Cyanidioschyzon merolae.

作者信息

Fujita Kiyohito, Ehira Shigeki, Tanaka Kan, Asai Kei, Ohta Niji

机构信息

Department of Molecular Biology, Faculty of Science, Saitama University, Saitama-City, Japan.

出版信息

Genes Genet Syst. 2008 Apr;83(2):127-33. doi: 10.1266/ggs.83.127.

Abstract

The cbbX gene is generally encoded in proteobacterial genomes and red-algal plastid genomes. In this study, we found two distinct cbbX genes of Cyanidioschyzon merolae, a unicellular red alga, one encoded in the plastid genome and the other encoded in the cell nucleus. The phylogenetic tree inferred from cbbX genes and strongly conserved gene organization (rbcLS-cbbX) suggests that the plastid-encoded cbbX gene of C. merolae came from an ancestral proteobacterium by horizontal gene transfer. On the other hand, the nuclear-encoded cbbX gene of C. merolae was classified in another cluster together with the nucleomorph-encoded cbbX gene of Guillardia theta. Furthermore, expression of the two cbbX genes were regulated differently in response to extracellular CO(2) concentration. Our results imply that cbbX gene in the plastid genome was copied and transferred to the cell nucleus after horizontal gene transfer of RuBisCo operon from ancestral beta-proteobacteria at comparatively early stage, and that each cbbX evolved in different ways.

摘要

cbbX基因通常存在于变形菌门细菌基因组和红藻质体基因组中。在本研究中,我们发现单细胞红藻梅氏蓝纤维藻(Cyanidioschyzon merolae)有两个不同的cbbX基因,一个存在于质体基因组中,另一个存在于细胞核中。基于cbbX基因和高度保守的基因组织(rbcLS-cbbX)构建的系统发育树表明,梅氏蓝纤维藻质体编码的cbbX基因是通过水平基因转移从一种原始变形菌获得的。另一方面,梅氏蓝纤维藻细胞核编码的cbbX基因与嗜热四膜虫(Guillardia theta)核质体编码的cbbX基因归为另一类群。此外,这两个cbbX基因的表达对细胞外CO₂浓度的响应调控方式不同。我们的结果表明,在相对早期,质体基因组中的cbbX基因在RuBisCo操纵子从原始β-变形菌水平基因转移后被复制并转移到细胞核中,且每个cbbX基因以不同方式进化。

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