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异形胞糖脂表明石莼目蓝细菌的多系性。

Heterocyte glycolipids indicate polyphyly of stigonematalean cyanobacteria.

机构信息

Christian-Albrechts-University, Institute of Geosciences, Department of Organic Geochemistry, Kiel, Germany.

University of Montana, Division of Biological Sciences, Montana, USA.

出版信息

Phytochemistry. 2019 Oct;166:112059. doi: 10.1016/j.phytochem.2019.112059. Epub 2019 Jul 4.

Abstract

The cyanobacterial phylum is currently divided into five subsections (I-V), with the latter two containing no or false-branching (nostocalean) and true-branching (stigonematalean) cyanobacteria. Although morphological traits (such as cellular division and secondary branches) clearly separate both types of heterocytous cyanobacteria, molecular evidence indicates that stigonematalean cyanobacteria (Subsection V) do not form a monophyletic group but instead are interspersed and nested within the nostocalean cyanobacteria (Subsection IV). To further resolve the phylogeny of heterocytous cyanobacteria, we here analyzed the distribution of heterocyte glycolipids (HGs) in the true-branching cyanobacterium Stigonema ocellatum SAG 48.90 (type genus of Subsection V) and compared it with the HG inventory of other stigonematalean and nostocalean cyanobacteria. The most dominant HGs in S. ocellatum SAG 48.90 were 1-(O-hexose)-27-keto-3,25-octacosanediol (HG keto-diol) and 1-(O-hexose)-3,25,27-octacosanetriol (HG triol), which together constituted ca. 94% of all HGs. In addition, 1-(O-hexose)-3-keto-27-octacosanols (HG keto-ols), 1-(O-hexose)-3,27-octacosanediols (HG diols), 1-(O-hexose)-3-keto-27,29-triacontanediol (HG keto-diol) and 1-(O-hexose)-3,27,29-triacontanetriol (HG triol) occurred in minor abundances. Heterocyte glycolipids previously reported to be unique for stigonematalean cyanobacteria, i.e. 1-(O-hexose)-3,29,31-dotriacontanetriols (HG triols) and 1-(O-hexose)-3-keto-29,31-dotriacontanediols (HG keto-diols), were not detected in S. ocellatum SAG 48.90. Comparison of the HG distribution pattern with those of other heterocytous cyanobacteria indicated that S. ocellatum SAG 48.90 is most closely related to the nostocalean families Rivulariaceae and Scytonemataceae, which is complementary to reconstructed 16S rRNA gene sequence phylogenies. Our HG-based data thus provides evidence for the polyphyly of stigonematalean cyanobacteria, independent from molecular approaches, and points to the need for a critical re-evaluation of the current taxonomy of heterocytous cyanobacteria.

摘要

蓝藻门目前分为五个亚门(I-V),后两个亚门中没有或只有假分枝(念珠藻门)和真分枝(胶须藻门)的蓝藻。尽管形态特征(如细胞分裂和次生分枝)清楚地区分了这两种异形胞蓝藻,但分子证据表明,胶须藻门(亚门 V)并非单系群,而是与念珠藻门(亚门 IV)交织和嵌套在一起。为了进一步解析异形胞蓝藻的系统发育,我们分析了真分枝蓝藻胶须藻 SAG 48.90 (胶须藻门的模式属,亚门 V)中的异形胞糖脂(HGs)的分布,并将其与其他胶须藻门和念珠藻门蓝藻的 HG 目录进行了比较。S. ocellatum SAG 48.90 中最主要的 HG 是 1-(O-己糖)-27-酮-3,25-二十八烷二醇(HG keto-diol)和 1-(O-己糖)-3,25,27-二十八烷三醇(HG triol),它们共同构成了约 94%的所有 HG。此外,1-(O-己糖)-3-酮-27-二十八烷醇(HG keto-ols)、1-(O-己糖)-3,27-二十八烷二醇(HG diols)、1-(O-己糖)-3-酮-27,29-三十烷二醇(HG keto-diol)和 1-(O-己糖)-3,27,29-三十烷三醇(HG triol)的含量较少。以前被认为是胶须藻门蓝藻所特有的异形胞糖脂,即 1-(O-己糖)-3,29,31-三廿烷三醇(HG triols)和 1-(O-己糖)-3-酮-29,31-三廿烷二醇(HG keto-diols),在 S. ocellatum SAG 48.90 中并未检测到。将 HG 分布模式与其他异形胞蓝藻进行比较表明,S. ocellatum SAG 48.90 与念珠藻门的胶毛藻科和裂面科关系最密切,这与重建的 16S rRNA 基因序列系统发育一致。我们基于 HG 的数据为胶须藻门蓝藻的多系性提供了证据,这与分子方法无关,并指出需要对异形胞蓝藻的现行分类法进行批判性重新评估。

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