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首页> 外文期刊>MBio >The Trait Repertoire Enabling Cyanobacteria to Bloom Assessed through Comparative Genomic Complexity and Metatranscriptomics
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The Trait Repertoire Enabling Cyanobacteria to Bloom Assessed through Comparative Genomic Complexity and Metatranscriptomics

机译:特征曲目使蓝菌绽放通过比较基因组复杂性和MetaTransfriptomics评估

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摘要

Water bloom development due to eutrophication constitutes a case of niche specialization among planktonic cyanobacteria, but the genomic repertoire allowing bloom formation in only some species has not been fully characterized. We posited that the habitat relevance of a trait begets its underlying genomic complexity, so that traits within the repertoire would be differentially more complex in species successfully thriving in that habitat than in close species that cannot. To test this for the case of bloom-forming cyanobacteria, we curated 17 potentially relevant query metabolic pathways and five core pathways selected according to existing ecophysiological literature. The available 113 genomes were split into those of blooming (45) or nonblooming (68) strains, and an index of genomic complexity for each strain’s version of each pathway was derived. We show that strain versions of all query pathways were significantly more complex in bloomers, with complexity in fact correlating positively with strain blooming incidence in 14 of those pathways. Five core pathways, relevant everywhere, showed no differential complexity or correlations. Gas vesicle, toxin and fatty acid synthesis, amino acid uptake, and C, N, and S acquisition systems were most strikingly relevant in the blooming repertoire. Further, we validated our findings using metagenomic gene expression analyses of blooming and nonblooming cyanobacteria in natural settings, where pathways in the repertoire were differentially overexpressed according to their relative complexity in bloomers, but not in nonbloomers. We expect that this approach may find applications to other habitats and organismal groups.
机译:富营养化引起的水绽放发展构成了浮游生物中的基因专业化的情况,但仅在某些物种中允许盛开形成的基因组曲目尚未完全表征。我们假设特质的栖息地相关性引起其潜在的基因组复杂性,因此在栖息地的物种中,曲目中的特质将在这种栖息地茁壮成功地蓬勃发展,而不是在不能的近似物种。为了测试盛开的蓝藻的情况,我们策划了17个可能相关的查询代谢途径和根据现有的生态学文献选择的五种核心途径。可用的113基因组分为盛开(45)或非博组织(68)菌株的基因组,并衍生出每个途径的每个菌株的基因组复杂性指数。我们表明所有查询途径的应变版本在凸起中具有明显复杂的较大复杂性,其实于这些途径中的14个曲线中的应变涂布发病率正相关。五个核心途径,无处不在,显示出没有差异复杂性或相关性。气体囊泡,毒素和脂肪酸合成,氨基酸摄取和C,N和S采集系统在盛开的曲目中最引人注目地相关。此外,我们使用自然环境中的盛开和非博蓝色细胞的均衡和非博蓝细胞进行了验证了我们的研究结果,其中曲目中的途径根据盛开者的相对复杂性而差异过表达,但不在非金属中。我们预计这种方法可能会发现其他栖息地和有机体群体的应用。

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