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Depth-dependent transcriptomic response of diatoms during spring bloom in the western subarctic Pacific Ocean

机译:西北极太平洋春季开花过程中硅藻的深度依赖性转录组响应

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摘要

Diatoms play important roles in primary production and carbon transportation in various environments. Large-scale diatom bloom occurs worldwide; however, metabolic responses of diatoms to environmental conditions have been little studied. Here, we targeted the Oyashio region of the western subarctic Pacific where diatoms bloom every spring and investigated metabolic response of major diatoms to bloom formation by comparing metatranscriptomes between two depths corresponding to different bloom phases. Thalassiosira nordenskioeldii and Chaetoceros debilis are two commonly occurring species at the study site. The gene expression profile was drastically different between the surface (late decline phase of the bloom; 10 m depth) and the subsurface chlorophyll maximum (SCM, initial decline phase of the bloom; 30 m depth); in particular, both species had high expression of genes for nitrate uptake at the surface, but for ammonia uptake at the SCM. Our culture experiments using T. nordenskioeldii imitating the environmental conditions showed that gene expression for nitrate and ammonia transporters was induced by nitrate addition and active cell division, respectively. These results indicate that the requirement for different nitrogen compounds is a major determinant of diatom species responses during bloom maturing.
机译:硅藻在各种环境下的初级生产和碳运输中起着重要作用。世界范围内发生大规模的硅藻绽放。但是,对硅藻对环境条件的代谢反应的研究很少。在这里,我们针对的是每年春季硅藻盛开的西亚太平洋太平洋的Oyashio地区,并通过比较对应于不同开花阶段的两个深度之间的元转录组,研究了主要硅藻对开花形成的代谢反应。 Thalassiosira nordenskioeldii和Chaetoceros debilis是研究地点的两个常见物种。基因表达谱在表面(水华后期下降阶段;深度为10μm)和地下叶绿素最大值(SCM,水华初期下降阶段;深度为30μm)之间存在显着差异。尤其是,这两种物种在表面吸收硝酸盐的基因高表达,而在SCM吸收氨的基因高表达。我们使用仿制环境条件的诺氏锥虫的培养实验表明,硝酸盐和氨转运蛋白的基因表达分别由硝酸盐添加和活性细胞分裂诱导。这些结果表明,对不同氮化合物的需求是绽放成熟期间硅藻种类响应的主要决定因素。

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