不同环境下蓝藻多样性评估:分子方法

K. Rai, R. Rai, Shilpi Singh, L. Rai
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引用次数: 0

摘要

蓝藻是一种光合微生物,在世界各地的各种环境条件下生存,从淡水和土壤到极端条件。除了它们的光合作用和固氮能力外,它们还能产生各种各样的分子,在制药和工业应用中具有很高的潜力。最近的研究表明,大多数蓝藻属于振荡菌目,Nostocales, Chroococcales和Synechococcales,已经被广泛表征。相比之下,那些属于Pleurocapsales, Chroococcidiopsales和Gloeobacterales的细菌在其分子多样性和相对生物活性方面仍未被探索。近几十年来,分子生物学技术通过精确绘制其在自然环境中的多样性,揭示了对各种原核生物(包括蓝藻)的作用和功能的宝贵见解。本文综述了分子技术在蓝藻多样性研究中的应用及其优势和局限性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Cyanobacterial Diversity Assessment Under Diverse Environments: A Molecular Approach
Cyanobacteria are photosynthetic microorganisms that inhabit diverse environmental conditions worldwide, ranging from freshwater and soil to extreme conditions. Apart from their photosynthesis and nitrogen-fixing abilities, they also produce a large variety of molecules with high potential in pharmaceutical and industrial applications. Recent investigations have elucidated that most of the cyanobacteria that belong to orders Oscillatoriales, Nostocales, Chroococcales, and Synechococcales have been extensively characterized. In contrast, those that belong to Pleurocapsales, Chroococcidiopsales, and Gloeobacterales remain unexplored in terms of their molecular diversity and relative bioactivity. In recent decades, molecular biology techniques have revealed valuable insights into the role and functions of various prokaryotes, including cyanobacteria, by precisely mapping their diversity in their natural environment. This review provides an overview of molecular techniquesandtheir advantages and limitations for studying cyanobacterial diversity.
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