Using High-Sensitivity Lipidomics To Assess Microscale Heterogeneity in Oceanic Sinking Particles and Single Phytoplankton Cells

微尺度化学 脂类学 浮游植物 海洋雪 硅藻 海洋学 浮游生物 环境科学 环境化学 化学 生物 水柱 生态学 地质学 营养物 生物化学 数学教育 数学
作者
Jonathan E. Hunter,Helen F. Fredricks,Lars Behrendt,Uria Alcolombri,Shavonna M. Bent,Roman Stocker,Benjamin A. S. Van Mooy
出处
期刊:Environmental Science & Technology [American Chemical Society]
卷期号:55 (22): 15456-15465 被引量:10
标识
DOI:10.1021/acs.est.1c02836
摘要

Sinking particulate organic matter (POM) is a primary component of the ocean's biological carbon pump that is responsible for carbon export from the surface to the deep sea. Lipids derived from plankton comprise a significant fraction of sinking POM. Our understanding of planktonic lipid biosynthesis and the subsequent degradation of lipids in sinking POM is based on the analysis of bulk samples that combine many millions of plankton cells or dozens of sinking particles, which averages out natural heterogeneity. We developed and applied a nanoflow high-performance liquid-chromatography electrospray-ionization high-resolution accurate-mass mass spectrometry lipidomic method to show that two types of sinking particles─marine snow and fecal pellets─collected in the western North Atlantic Ocean have distinct lipidomes, providing new insights into their sources and degradation that would not be apparent from bulk samples. We pressed the limit of this approach by examining individual diatom cells from a single culture, finding marked lipid heterogeneity, possibly indicative of fundamental mechanisms underlying cell division. These single-cell data confirm that even cultures of phytoplankton cells should be viewed as mixtures of physiologically distinct populations. Overall, this work reveals previously hidden lipidomic heterogeneity in natural POM and phytoplankton cells, which may provide critical new insights into microscale chemical and microbial processes that control the export of sinking POM.

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