Agha Ramsy, Quesada Antonio
Departamento de Biología, Universidad Autónoma de Madrid, C/Darwin, 2, Madrid 28049, Spain.
Toxins (Basel). 2014 Jun 23;6(6):1929-50. doi: 10.3390/toxins6061929.
Cyanobacterial oligopeptides comprise a wide range of bioactive and/or toxic compounds. While current research is strongly focused on exploring new oligopeptide variants and their bioactive properties, the biological role of these compounds remains elusive. Oligopeptides production abilities show a remarkably patchy distribution among conspecific strains. This observation has prompted alternative approaches to unveil their adaptive value, based on the use of cellular oligopeptide compositions as biomarkers of intraspecific subpopulations or chemotypes in freshwater cyanobacteria. Studies addressing the diversity, distribution, and dynamics of chemotypes in natural systems have provided important insights into the structure and ecology of cyanobacterial populations and the adaptive value of oligopeptides. This review presents an overview of the fundamentals of this emerging approach and its most relevant findings, and discusses our current understanding of the role of oligopeptides in the ecology of cyanobacteria.
蓝藻寡肽包含多种生物活性和/或有毒化合物。尽管目前的研究主要集中在探索新的寡肽变体及其生物活性特性,但这些化合物的生物学作用仍然难以捉摸。寡肽生产能力在同种菌株中呈现出明显的不均匀分布。这一观察结果促使人们采用替代方法来揭示它们的适应性价值,即利用细胞寡肽组成作为淡水蓝藻种内亚群或化学型的生物标志物。针对自然系统中化学型的多样性、分布和动态的研究,为蓝藻种群的结构和生态学以及寡肽的适应性价值提供了重要见解。本综述概述了这种新兴方法的基本原理及其最相关的发现,并讨论了我们目前对寡肽在蓝藻生态学中作用的理解。