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开阔大洋真光层中不同深度光合作用生物群的可变碳同位素分馏。

Variable carbon isotope fractionation of photosynthetic communities over depth in an open-ocean euphotic zone.

机构信息

Department of Ocean Sciences, Rosenstiel School of Marine, Atmospheric, and Earth Science, University of Miami, Miami, FL 33149.

Faculty of Mathematics and Natural Sciences, Christian-Albrecht University of Kiel, Kiel SH 24118, Germany.

出版信息

Proc Natl Acad Sci U S A. 2024 Mar 5;121(10):e2304613121. doi: 10.1073/pnas.2304613121. Epub 2024 Feb 26.

Abstract

Marine particulate organic carbon (POC) contributes to carbon export, food webs, and sediments, but uncertainties remain in its origins. Globally, variations in stable carbon isotope ratios (δC values) of POC between the upper and lower euphotic zones (LEZ) indicate either varying aspects of photosynthetic communities or degradative alteration of POC. During summertime in the subtropical north Atlantic Ocean, we find that δC values of the photosynthetic product phytol decreased by 6.3‰ and photosynthetic carbon isotope fractionation (ε) increased by 5.6‰ between the surface and the LEZ-variation as large as that found in the geologic record during major carbon cycle perturbations, but here reflecting vertical variation in δC values of photosynthetic communities. We find that simultaneous variations in light intensity and phytoplankton community composition over depth may be important factors not fully accounted for in common models of photosynthetic carbon isotope fractionation. Using additional isotopic and cell count data, we estimate that photosynthetic and non-photosynthetic material (heterotrophs or detritus) contribute relatively constant proportions of POC throughout the euphotic zone but are isotopically more distinct in the LEZ. As a result, the large vertical differences in ε result in significant, but smaller, differences in the δC values of total POC across the same depths (2.7‰). Vertical structuring of photosynthetic communities and export potential from the LEZ may vary across current and past ocean ecosystems; thus, LEZ photosynthesis may influence the exported and/or sedimentary δC values of both phytol and total organic carbon and affect interpretations of ε over geologic time.

摘要

海洋颗粒有机碳 (POC) 促进了碳的输出、食物网和沉积物的形成,但它的起源仍存在不确定性。在全球范围内,上下透光带之间 POC 的稳定碳同位素比值 (δC 值) 的变化表明光合作用群落的不同方面,或者 POC 的降解变化。在北大西洋亚热带地区的夏季,我们发现光合作用产物植醇的 δC 值在表层和透光带之间下降了 6.3‰,光合作用碳同位素分馏 (ε) 增加了 5.6‰——这种变化之大与地质记录中重大碳循环扰动期间的变化相当,但这里反映的是光合作用群落 δC 值的垂直变化。我们发现,光照强度和浮游植物群落组成随深度的同时变化可能是共同的光合作用碳同位素分馏模型中没有充分考虑的重要因素。利用额外的同位素和细胞计数数据,我们估计,光合作用和非光合作用物质(异养生物或碎屑)在整个透光带中相对恒定的比例贡献 POC,但在透光带中同位素更为独特。因此,ε 的大垂直差异导致总 POC 在相同深度的 δC 值存在显著但较小的差异(2.7‰)。从当前和过去的海洋生态系统来看,光合作用群落的垂直结构和从透光带输出的潜力可能会有所不同;因此,透光带光合作用可能会影响植醇和总有机碳的输出和/或沉积 δC 值,并影响地质时间内对 ε 的解释。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/62f7/10927520/173f66cf0511/pnas.2304613121fig01.jpg

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