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WHOLE GENOME COMPARISON OF SIX CROCOSPHAERA WATSONII STRAINS WITH DIFFERING PHENOTYPES

机译:六种不同表型的沃氏钩虫沃森氏菌全基因组比较

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摘要

Crocosphaera watsonii, a unicellular nitrogen-fixing cyanobacterium found in oligotrophic oceans, is important in marine carbon and nitrogen cycles. Isolates of C. watsonii can be separated into at least two phenotypes with environmentally important differences, indicating possibly distinct ecological roles and niches. To better understand the evolutionary history and variation in metabolic capabilities among strains and phenotypes, this study compared the genomes of six C. watsonii strains, three from each phenotypic group, which had been isolated over several decades from multiple ocean basins. While a substantial portion of each genome was nearly identical to sequences in the other strains, a few regions were identified as specific to each strain and phenotype, some of which help explain observed phenotypic features. Overall, the small-cell type strains had smaller genomes and a relative loss of genetic capabilities, while the large-cell type strains were characterized by larger genomes, some genetic redundancy, and potentially increased adaptations to iron and phosphorus limitation. As such, strains with shared phenotypes were evolutionarily more closely related than those with the opposite phenotype, regardless of isolation location or date. Unexpectedly, the genome of the type-strain for the species, C. watsonii WH8501, was quite unusual even among strains with a shared phenotype, indicating it may not be an ideal representative of the species. The genome sequences and analyses reported in this study will be important for future investigations of the proposed differences in adaptation of the two phenotypes to nutrient limitation, and to identify phenotype-specific distributions in natural Crocosphaera populations.
机译:在低营养性海洋中发现的河豚鳄(Crocosphaera watsonii)是一种单细胞固氮蓝细菌,在海洋碳和氮循环中很重要。沃森梭菌的分离物可以分为至少两种具有重要环境差异的表型,表明可能具有明显的生态作用和生态位。为了更好地了解菌株和表型之间的进化历史和代谢能力的差异,本研究比较了六个华氏梭菌菌株的基因组,每个表型组三个,它们是在数十年间从多个海盆中分离出来的。尽管每个基因组的大部分与其他菌株的序列几乎相同,但已鉴定出一些区域对每个菌株和表型具有特异性,其中一些区域有助于解释观察到的表型特征。总体而言,小细胞型菌株具有较小的基因组和相对的遗传能力损失,而大细胞型菌株的特征在于较大的基因组,某些遗传冗余以及潜在地增加的对铁和磷限制的适应性。这样,无论分离位置或日期如何,具有共有表型的菌株比具有相反表型的菌株在进化上更紧密相关。出乎意料的是,即使在具有共同表型的菌株中,该种的菌株华氏梭菌WH8501的基因组也是非常不寻常的,这表明它可能不是该物种的理想代表。这项研究中报道的基因组序列和分析对于未来研究两种表型适应养分限制的拟议差异以及鉴定天然鳄梨种群中表型特异性分布将具有重要意义。

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