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Species concepts and speciation factors in cyanobacteria, with connection to the problems of diversity and classification

机译:蓝细菌的物种概念和物种形成因子,与多样性和分类问题有关

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摘要

The cyanobacteria are the most important prokaryotic primary producers on Earth, inhabiting a great diversity of aquatic and terrestrial environments exposed to light. However, the evolutionary forces leading to their divergence and speciation remain largely enigmatic compared to macroorganisms due to their prokaryotic nature, including vast population sizes, and largely asexual reproduction. The advent of modern molecular techniques has facilitated an understanding of the important factors shaping cyanobacterial evolution, including horizontal gene transfer and homologous recombination. We review the forces shaping the evolution of cyanobacteria and discuss the role of cohesive forces on speciation. Further, while myriad species concepts and definitions are currently used, only a limited subset might be applied to cyanobacteria due to their asexual reproduction. Additionally, concepts based solely on phenotypes provide insufficient resolution. A monophyletic species concept which is universal may be ideal for cyanobacteria. Actual identification of the cyanobacteria is difficult due to cryptic diversity, lack of morphological variability, and frequent convergent evolutionary events. Thus, applied molecular techniques such as DNA barcoding will be useful for identifications of environmental samples. Lastly, we show that the real biodiversity of the cyanobacteria is widely underestimated, due in part to low sampling efforts, sensitivity to the molecular markers employed, and the species definitions employed by researchers. In conclusion, we anticipate a rapid increase in cyanobacterial taxa described and large revisions of the system in the future as scientists adopt a common approach to cyanobacterial systematics.
机译:蓝细菌是地球上最重要的原核初级生产者,居住在大量暴露于光的水生和陆地环境中。然而,由于它们的原核性质,包括庞大的种群规模和很大程度上是无性繁殖,导致其分化和物种形成的进化力与大生物相比仍然很大程度上是神秘的。现代分子技术的出现促进了对影响蓝细菌进化的重要因素的理解,包括水平基因转移和同源重组。我们审查了塑造蓝细菌进化的力量,并讨论了凝聚力对物种形成的作用。此外,尽管当前使用了无数种的概念和定义,但由于蓝细菌的无性繁殖,因此只能将有限的子集应用于蓝细菌。此外,仅基于表型的概念无法提供足够的分辨率。通用的单物种物种概念可能是蓝细菌的理想选择。由于隐秘的多样性,缺乏形态变异性以及频繁的趋同性进化事件,很难对蓝细菌进行实际鉴定。因此,诸如DNA条码之类的应用分子技术将对鉴定环境样品有用。最后,我们表明,蓝藻的真正生物多样性被低估了,部分原因是取样工作量少,对所用分子标记的敏感性以及研究人员所采用的物种定义。总之,随着科学家对蓝细菌系统学采用一种通用方法,我们预计所描述的蓝细菌类群将迅速增加,并在将来对该系统进行大规模修订。

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