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首页> 外文期刊>Phycological Research >Morphological, biochemical and phylogenetic assessments of water-bloom-forming tropical morphospecies of Microcystis (Chroococcales, Cyanobacteria)
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Morphological, biochemical and phylogenetic assessments of water-bloom-forming tropical morphospecies of Microcystis (Chroococcales, Cyanobacteria)

机译:微囊藻形成水华的热带形态物种(球菌,蓝细菌)的形态,生化和系统发育评估

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摘要

Previous polyphasic analyses of five morphospecies of the water-bloom-forming cyanobacterial genus Microcystis, Microcystis aeruginosa (Kutzing) Lemmermann (=Microcystis aeruginosa (Kutzing) Kutzing), Microcystis ichthyoblabe Kutzing, Microcystis novacekii (Komrek) Compere, Microcystis viridis (A. Braun) Lemmermann, and Microcystis wesenbergii (Komarek) Komarek in Kondratieva, have shown them to be conspecific and they have been proposed to be included under the binomial Microcystis aeruginosa (Kutzing) Lemmermann. However, several morphospecies from tropical regions, such as Microcystis bengalensis Banerji, Microcystis panniformis Komarek, Komarkova-Legnerova, Sant'anna, Azevedo & Senna, Microcystis protocystis Crow, Microcystis pseudofilamentosa Crow, Microcystis ramosa Bharadwaya, and Microcystis robusta (Clark) Nygaard, have never been analyzed biochemically or phylogenetically; consequently, their taxonomic status is uncertain. To resolve this issue, we collected 57 strains of Microcystis from Vietnam for taxonomic analysis using a polyphasic approach. Strains were assigned to the six tropical morphospecies listed above or to four morphospecies with cosmopolitan distributions (M. aeruginosa, M. ichthyoblabe, M. novacekii, and M. wesenbergii). Several strains produced colony variants in different culture media; some of these variants had forms that overlapped with those of other morphospecies. Cell diameters varied widely between strains (2.69.3 mu m) and were unrelated to morphospecies discrimination criteria. Strains of the 10 morphospecies examined had similar fatty acid compositions and closely similar 16S rRNA gene sequences (>99.2% similar). Phylogenetic analyses using 16S rRNA gene and 16S23S internal transcribed spacer sequences did not identify any clear separations corresponding to morphospecies concepts or microcystin-producing abilities. Thus, the six tropical morphospecies (M. bengalensis, M. panniformis, M. protocystis, M. pseudofilamentosa, M. ramosa, and M. robusta) are not natural taxonomic units within the genus Microcystis and should be included under M. aeruginosa.
机译:以前对形成水华的蓝细菌属微囊藻,铜绿微囊藻(Kutzing)Lemmermann(=微囊藻铜绿菌(Kutzing)Kutzing),微囊藻ichthyoblabe Kutzing,微囊藻Novacekii(KomreisA。 )Lemmermann和Kondratieva的微囊藻wesenbergii(Komarek)Komarek已证明它们是同种的,并已提议将其纳入二项式铜绿微囊藻(Kutzing)Lemmermann中。但是,一些热带地区的形态物种,例如孟加拉微囊藻,印度微囊藻Komarek,Komarkova-Legnerova,Sant'anna,Azevedo和Senna,原生藻微囊藻,拟微丝藻微囊藻,虫微囊藻,和囊藻从未进行过生化或系统发育分析;因此,它们的分类地位是不确定的。为解决此问题,我们从越南收集了57株微囊藻菌株,以多相方法进行分类学分析。菌株被分配到上面列出的六个热带形态物种或具有世界性分布的四个形态物种(铜绿假单胞菌,ichthyoblabe菌,novacekii菌和wesenbergii菌)。几种菌株在不同的培养基中产生菌落变异。这些变体中的一些具有与其他形态物种重叠的形式。菌株之间的细胞直径差异很大(2.69.3微米),与形态学判别标准无关。检查的10个形态物种的菌株具有相似的脂肪酸组成和极为相似的16S rRNA基因序列(相似度> 99.2%)。使用16S rRNA基因和16S23S内部转录间隔区序列的系统发生分析未发现对应于形态学概念或微囊藻毒素生产能力的任何明确分离。因此,六个热带形态物种(孟加拉分枝杆菌,潘尼莫斯分枝杆菌,原孢子虫分枝杆菌,假丝状支丝菌,雷莫氏分枝杆菌和罗布斯分枝杆菌)不是微囊藻属中的自然分类单位,应包括在绿脓杆菌下。

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