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鉴定生存在海冰中的硅藻脆杆藻产生细胞外聚合物的代谢途径。

Identifying metabolic pathways for production of extracellular polymeric substances by the diatom Fragilariopsis cylindrus inhabiting sea ice.

机构信息

School of Biological Sciences, University of Essex, Wivenhoe Park, Colchester, CO4 3SQ, UK.

University of East Anglia, School of Environmental Sciences, Norwich Park, Norwich, NR4 7TJ, UK.

出版信息

ISME J. 2018 May;12(5):1237-1251. doi: 10.1038/s41396-017-0039-z. Epub 2018 Jan 18.

Abstract

Diatoms are significant primary producers in sea ice, an ephemeral habitat with steep vertical gradients of temperature and salinity characterizing the ice matrix environment. To cope with the variable and challenging conditions, sea ice diatoms produce polysaccharide-rich extracellular polymeric substances (EPS) that play important roles in adhesion, cell protection, ligand binding and as organic carbon sources. Significant differences in EPS concentrations and chemical composition corresponding to temperature and salinity gradients were present in sea ice from the Weddell Sea and Eastern Antarctic regions of the Southern Ocean. To reconstruct the first metabolic pathway for EPS production in diatoms, we exposed Fragilariopsis cylindrus, a key bi-polar diatom species, to simulated sea ice formation. Transcriptome profiling under varying conditions of EPS production identified a significant number of genes and divergent alleles. Their complex differential expression patterns under simulated sea ice formation was aligned with physiological and biochemical properties of the cells, and with field measurements of sea ice EPS characteristics. Thus, the molecular complexity of the EPS pathway suggests metabolic plasticity in F. cylindrus is required to cope with the challenging conditions of the highly variable and extreme sea ice habitat.

摘要

硅藻是海冰中重要的初级生产者,海冰是一种短暂存在的栖息地,其温度和盐度的垂直梯度很大,是冰基质环境的特征。为了应对多变而具有挑战性的条件,海冰硅藻产生富含多糖的细胞外聚合物质 (EPS),这些物质在附着、细胞保护、配体结合和作为有机碳源方面发挥着重要作用。在来自南大洋威德尔海和东南极地区的海冰中,存在着与温度和盐度梯度相对应的 EPS 浓度和化学成分的显著差异。为了重建硅藻 EPS 生产的第一条代谢途径,我们将关键的两极硅藻种脆杆藻暴露在模拟海冰形成的条件下。在 EPS 生产的不同条件下进行的转录组谱分析确定了大量的基因和不同的等位基因。它们在模拟海冰形成下的复杂差异表达模式与细胞的生理生化特性以及海冰 EPS 特征的现场测量相吻合。因此,EPS 途径的分子复杂性表明,为了应对高度变化和极端的海冰栖息地的挑战性条件,脆杆藻需要具有代谢可塑性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c1bb/5932028/9e4f1719afcb/41396_2017_39_Fig1_HTML.jpg

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