Sorrels Carla M, Proteau Philip J, Gerwick William H
Center for Marine Biomedicine and Biotechnology, Scripps Institution of Oceanography, University of California, San Diego, La Jolla, California 92093-0212, USA.
Appl Environ Microbiol. 2009 Jul;75(14):4861-9. doi: 10.1128/AEM.02508-08. Epub 2009 May 29.
Cyanobacteria are photosynthetic prokaryotes capable of protecting themselves from UV radiation through the biosynthesis of UV-absorbing secondary metabolites, such as the mycosporines and scytonemin. Scytonemin, a novel indolic-phenolic pigment, is found sequestered in the sheath, where it provides protection to the subtending cells during exposure to UV radiation. The biosynthesis of scytonemin is encoded by a previously identified gene cluster that is present in six cyanobacterial species whose genomes are available. A comparison of these clusters reveals that two major cluster architectures exist which appear to have evolved through rearrangements of large sections, such as those genes responsible for aromatic amino acid biosynthesis and through the insertion of genes that potentially confer additional biosynthetic capabilities. Differential transcriptional expression analysis demonstrated that the entire gene cluster is transcribed in higher abundance after exposure to UV radiation. This analysis helps delineate the cluster boundaries and indicates that regulation of this cluster is controlled by the presence or absence of UV radiation. The findings from an evolutionary phylogenetic analysis combined with the fact that the scytonemin gene cluster is distributed across several cyanobacterial lineages led to our proposal that the distribution of this gene cluster is best explained through an ancient evolutionary origin.
蓝细菌是光合原核生物,能够通过生物合成吸收紫外线的次生代谢产物(如菌孢素类氨基酸和 scytonemin)来保护自己免受紫外线辐射。Scytonemin 是一种新型吲哚酚类色素,存在于鞘中,在暴露于紫外线辐射时为下层细胞提供保护。Scytonemin 的生物合成由一个先前鉴定的基因簇编码,该基因簇存在于六个基因组已公布的蓝细菌物种中。对这些基因簇的比较表明,存在两种主要的基因簇结构,它们似乎是通过大片段的重排进化而来的,例如那些负责芳香族氨基酸生物合成的基因,以及通过插入可能赋予额外生物合成能力的基因。差异转录表达分析表明,整个基因簇在暴露于紫外线辐射后转录丰度更高。该分析有助于划定基因簇边界,并表明该基因簇的调控受紫外线辐射的有无控制。进化系统发育分析的结果,以及 scytonemin 基因簇分布在多个蓝细菌谱系中的事实,促使我们提出,这个基因簇的分布最好通过古老的进化起源来解释。