Singh Payal, Kumar Nilesh, Jethva Minesh, Yadav Saurabh, Kumari Pragati, Thakur Archana, Kushwaha Hemant Ritturaj
1Synthetic Biology and Biofuel, ternational Center for Genetic Engineering and Biotechnology (ICGEB), New Delhi, India.
2Department of Biotechnology, Hemwati Nandan Bahuguna Garhwal University, Srinagar Garhwal, Uttarakhand India.
Physiol Mol Biol Plants. 2018 Mar;24(2):315-324. doi: 10.1007/s12298-018-0504-9. Epub 2018 Feb 8.
Cyanobacteria are one of the ancient bacterial species occupying a variety of habitats with diverse metabolic preferences. RNA regulators like riboswitches play significant role in controlling the gene expression in prokaryotes. The taxonomic distribution of riboswitches suggests that they might be one of the oldest mechanisms of gene control system. In this paper, we analyzed the distribution of different riboswitch families in various cyanobacterial genomes. It was observed that only four riboswitch classes were abundant in cyanobacteria, B-element (Cob)/AdoCbl/AdoCbl-variant riboswitch being the most abundant. The analysis suggests that riboswitch mode of regulation is present in cyanobacterial species irrespective of their habitat types. A large number of unidentified genes regulated by riboswitches listed in this analysis indicate the wide range of targets for these riboswitch families. The analysis revealed a large number of genes regulated by riboswitches which may assist in elaborating the diversity among the cyanobacterial species.
蓝藻是古老的细菌物种之一,占据着各种具有不同代谢偏好的栖息地。像核糖开关这样的RNA调节因子在控制原核生物的基因表达中起着重要作用。核糖开关的分类分布表明它们可能是基因控制系统最古老的机制之一。在本文中,我们分析了不同核糖开关家族在各种蓝藻基因组中的分布。据观察,在蓝藻中只有四类核糖开关丰富,其中B元素(钴胺素)/腺苷钴胺素/腺苷钴胺素变体核糖开关最为丰富。分析表明,无论蓝藻物种的栖息地类型如何,核糖开关调节模式都存在。本分析中列出的大量受核糖开关调节的未鉴定基因表明这些核糖开关家族的靶标范围广泛。分析揭示了大量受核糖开关调节的基因,这可能有助于阐明蓝藻物种之间的多样性。