G.K. Skryabin Institute of Biochemistry and Physiology of Microorganisms Pushchino Scientific Center for Biological Research of the Russian Academy of Sciences, Pushchino, Russia, 142290.
K.A. Timiryazev Institute of Plant Physiology Russian Academy of Sciences, Moscow, Russia, 127276.
Antonie Van Leeuwenhoek. 2024 Aug 19;117(1):113. doi: 10.1007/s10482-024-02008-1.
Despite the long research history on the genus Coelastrella, its species diversity and biotechnological potential have not been fully explored. For the first time, cluster analysis of morphological characteristics was done in the representatives of the said genus. The results obtained have shown that morphological similarity does not necessarily indicate a molecular genetic relationship. It the light of it, the taxonomic status of species can reliably be determined using specific DNA region, such as 18S-ITS1-5.8S-ITS2. The V4 and V9 regions of gene 18S rRNA are relatively conservative fragments which are not suitable for species identification. The ITS2 can be used as a "short barcode". Among the advanced machine methods for delimitation species, the most effective algorithm for distinguishing Coelastrella species was the Generalized Mixed Yule Coalescent (GMYC) method. This paper represented for the first time our comprehensive review of the works devoted to the analysis of the biotechnological potential of representatives of the genus Coelastrella and shows that fatty acid composition of the three main chemogroups within the studied genus differs. In the future, this may form the basis for predicting the composition of the fatty acid profile of new strains, which is important while searching for organisms with specified biotechnological properties. In conclusion, an integrative approach was employed to describe Coelastrella affinis sp. nov., a new species of the genus Coelastrella with high biotechnological potential. Also, a new description of C. thermophila var. astaxanthina comb. nov. was proposed.
尽管对 Coelastrella 属的研究历史悠久,但该属的物种多样性和生物技术潜力尚未得到充分探索。本文首次对该属的代表种进行了形态特征聚类分析。结果表明,形态相似性不一定表明分子遗传关系。因此,使用特定的 DNA 区域(如 18S-ITS1-5.8S-ITS2)可以可靠地确定物种的分类地位。基因 18S rRNA 的 V4 和 V9 区是相对保守的片段,不适合用于物种鉴定。ITS2 可以作为一种“短条形码”。在物种界限的先进机器方法中,区分 Coelastrella 物种最有效的算法是广义混合 Yule 合并(GMYC)方法。本文首次全面回顾了致力于分析 Coelastrella 属代表种的生物技术潜力的工作,结果表明,在所研究属的三个主要化学群中,脂肪酸组成存在差异。在未来,这可能为预测新菌株的脂肪酸谱组成奠定基础,这在寻找具有特定生物技术特性的生物时非常重要。总之,采用综合方法描述了具有高生物技术潜力的 Coelastrella 属新种 Coelastrella affinis sp. nov.。还提出了 C. thermophila var. astaxanthina comb. nov. 的新描述。