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Polysaccharide biosynthesis-related genes explain phenotype-genotype correlation of Microcystis colonies in Meiliang Bay of Lake Taihu China

机译:多糖生物合成相关基因解释了太湖梅良湾微囊藻菌落的表型-基因型相关性

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摘要

The 16S rDNA, 16S-23S rDNA-ITS, cpcBA-IGS, mcy gene and several polysaccharide biosynthesis-related genes (epsL and TagH) were analyzed along with the identification of the morphology of Microcystis colonies collected in Lake Taihu in 2014. M. wesenbergii colonies could be distinguished directly from other colonies using espL. TagH divided all of the samples into two clusters but failed to distinguish different phenotypes. Our results indicated that neither morphology nor molecular tools including 16S rDNA, 16S-23S ITS and cpcBA-IGS could distinguish toxic and non-toxic species among the identified Microcystis species. No obvious relationship was detected between the phenotypes of Microcystis and their genotypes using 16S, 16S-23S and cpcBA-IGS, but polysaccharide biosynthesis-related genes may distinguish the Microcystis phenotypes. Furthermore, the sequences of the polysaccharide biosynthesis-related genes (espL and TagH) extracted from Microcystis scums collected throughout 2015 was analyzed. Samples dominated by M. ichthyoblabe (60–100%) and M. wesenbergii (60–100%) were divided into different clade by both espL and TagH, respectively. Therefore, it was confirmed that M. wesenbergii and M. ichthyoblabe could be distinguished by the polysaccharide biosynthesis-related genes (espL and TagH). This study is of great significance in filling the gap between classification of molecular biology and the morphological taxonomy of Microcystis.
机译:分析了16S rDNA,16S-23S rDNA-ITS,cpcBA-IGS,mcy基因和几种与多糖合成相关的基因(epsL和TagH),并鉴定了2014年在太湖收集的微囊藻菌落的形态。使用espL可以直接将wesenbergii菌落与其他菌落区分开。 TagH将所有样本分为两个簇,但未能区分不同的表型。我们的结果表明,形态学或分子工具(包括16S rDNA,16S-23S ITS和cpcBA-IGS)都无法在已鉴定的微囊藻物种中区分有毒和无毒物种。使用16S,16S-23S和cpcBA-IGS检测到微囊藻的表型与它们的基因型之间没有明显的关系,但是多糖生物合成相关基因可以区分微囊藻的表型。此外,分析了从2015年全年收集的微囊藻浮渣中提取的与多糖生物合成相关的基因(espL和TagH)的序列。 ichthyoblabe(60–100%)和 M占主导地位的样品。 wesenbergii (60-100%)分别通过 espL TagH 分为不同的进化枝。因此,证实了 M。 wesenbergii M。 ichthyoblabe 可以通过与多糖生物合成相关的基因( espL TagH )来区分。这项研究对于填补分子生物学分类与微囊藻的形态分类学之间的空白具有重要意义。

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