AbstractMolecular mechanism of interaction between the bloom-forming cyanobacterial species and attach'/> Metatranscriptomics analysis of cyanobacterial aggregates during cyanobacterial bloom period in Lake Taihu, China
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Metatranscriptomics analysis of cyanobacterial aggregates during cyanobacterial bloom period in Lake Taihu, China

机译:中国湖太湖蓝藻盛开时期蓝藻骨细菌骨细菌植物的MetaTranscriptomics分析

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AbstractMolecular mechanism of interaction between the bloom-forming cyanobacterial species and attached microbios within cyanobacterial aggregates has not been elucidated yet and understanding of which would help to unravel the cyanobacteria bloom-forming mechanism. In this study, we profiled the metabolically active community by high-throughput metatranscriptome sequencing from cyanobacterial aggregates during cyanobacterial bloom period in Lake Taihu, China. A total of 308 million sequences were obtained using the HiSeq 2500 sequencing platform, which provided a great sequence coverage to carry out the in-depth taxonomic classification, functional classification, and metabolic pathway analysis of the cyanobacterial aggregates. The results show that bacteria dominated in cyanobacterial aggregates, accounting for more than 96.66% of total sequences.Microcystiswas the most abundant genus, accounted for 26.80% of total assigned sequences at the genus level in cyanobacterial aggregates community; however,Proteobacteria(46.20%) was found to be as the most abundant active bacterial populations at the phylum level. More importantly, nitrogen, phosphonate, and phosphinate metabolism which associated with eutrophication were found in this study. Especially, the enzymes and organisms relating to denitrification and anammox of nitrogen metabolism, which reduced nitrogen concentration by reducing nitrate to nitrogen to inhibit the eutrophication, were first discovered in Lake Taihu during cyanobacterial bloom period. The present study provides a snapshot of metatranscriptome for cyanobacterial aggregates in Lake Taihu and demonstrates that cyanobacterial aggregates could play a key role in the nitrogen cycle in eutrophic water.]]>
机译:<![CDATA [ <标题>抽象 ara id =“par1”>盛开的蓝藻之间的相互作用的分子机制并且尚未阐明蓝藻聚集体中的附着微生物摩擦,并且了解,这将有助于解开蓝细菌盛开的形成机制。在这项研究中,我们通过在中国太湖湖中的蓝藻绽放期间由蓝藻聚集体的高通量MetaTransommom测序来分解代谢活性群落。使用Hiseq 2500测序平台获得总共30800万次序列,该平台提供了较大的序列覆盖率,以进行蓝藻聚集体的深入分类分类,功能分类和代谢途径分析。结果表明,细菌在蓝藻聚集体中占主导地位,占总序列的96.66%以上。<重点型=“斜体”>微囊体是最丰富的属,占本属综合分配序列的26.80%蓝藻聚集体群落中的水平;然而,<强调型=“斜体”>蛋白聚菌,发现植物(46.20%)被认为是门级最丰富的活性细菌群。更重要的是,在本研究中发现了与富营养化相关的氮,膦酸盐和膦酸盐代谢。特别是,通过将硝酸盐还原为氮以抑制富营养化的氮代谢与氮代谢有关的酶和生物,以南部的植物绽放期间首先在太湖中发现氮化以抑制富营养化。本研究提供了太湖中的蓝藻聚集体MetaTranscriptom组的快照,并证明了蓝藻聚集体可以在富营养化水中的氮循环中发挥关键作用。 ]]>

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