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共生珊瑚鹿角杯形珊瑚中光合作用驱动的碳同化的亚细胞研究。

Subcellular investigation of photosynthesis-driven carbon assimilation in the symbiotic reef coral Pocillopora damicornis.

作者信息

Kopp Christophe, Domart-Coulon Isabelle, Escrig Stephane, Humbel Bruno M, Hignette Michel, Meibom Anders

机构信息

Laboratory for Biological Geochemistry, School of Architecture, Civil and Environmental Engineering (ENAC), École Polytechnique Fédérale de Lausanne (EPFL), Lausanne, Switzerland

MCAM UMR7245 CNRS-MNHN, Muséum National d'Histoire Naturelle, Paris, France.

出版信息

mBio. 2015 Feb 10;6(1):e02299-14. doi: 10.1128/mBio.02299-14.

Abstract

UNLABELLED

Reef-building corals form essential, mutualistic endosymbiotic associations with photosynthetic Symbiodinium dinoflagellates, providing their animal host partner with photosynthetically derived nutrients that allow the coral to thrive in oligotrophic waters. However, little is known about the dynamics of these nutritional interactions at the (sub)cellular level. Here, we visualize with submicrometer spatial resolution the carbon and nitrogen fluxes in the intact coral-dinoflagellate association from the reef coral Pocillopora damicornis by combining nanoscale secondary ion mass spectrometry (NanoSIMS) and transmission electron microscopy with pulse-chase isotopic labeling using [(13)C]bicarbonate and [(15)N]nitrate. This allows us to observe that (i) through light-driven photosynthesis, dinoflagellates rapidly assimilate inorganic bicarbonate and nitrate, temporarily storing carbon within lipid droplets and starch granules for remobilization in nighttime, along with carbon and nitrogen incorporation into other subcellular compartments for dinoflagellate growth and maintenance, (ii) carbon-containing photosynthates are translocated to all four coral tissue layers, where they accumulate after only 15 min in coral lipid droplets from the oral gastroderm and within 6 h in glycogen granules from the oral epiderm, and (iii) the translocation of nitrogen-containing photosynthates is delayed by 3 h.

IMPORTANCE

Our results provide detailed in situ subcellular visualization of the fate of photosynthesis-derived carbon and nitrogen in the coral-dinoflagellate endosymbiosis. We directly demonstrate that lipid droplets and glycogen granules in the coral tissue are sinks for translocated carbon photosynthates by dinoflagellates and confirm their key role in the trophic interactions within the coral-dinoflagellate association.

摘要

未标注

造礁珊瑚与光合共生双鞭毛虫形成重要的互利共生内共生关系,为其动物宿主伙伴提供光合衍生营养物质,使珊瑚能够在贫营养水域中茁壮成长。然而,关于这些营养相互作用在(亚)细胞水平的动态变化知之甚少。在此,我们通过结合纳米级二次离子质谱(NanoSIMS)和透射电子显微镜,利用[¹³C]碳酸氢盐和[¹⁵N]硝酸盐进行脉冲追踪同位素标记,以亚微米空间分辨率可视化来自珊瑚礁珊瑚鹿角杯形珊瑚完整珊瑚 - 双鞭毛虫共生体中的碳和氮通量。这使我们能够观察到:(i)通过光驱动光合作用,双鞭毛虫迅速同化无机碳酸氢盐和硝酸盐,将碳暂时储存在脂滴和淀粉颗粒中以便在夜间重新利用,同时碳和氮被整合到其他亚细胞区室用于双鞭毛虫的生长和维持;(ii)含碳光合产物被转运到所有四层珊瑚组织层,在来自口部胃皮的珊瑚脂滴中仅15分钟后以及来自口部表皮的糖原颗粒中6小时内积累;(iii)含氮光合产物的转运延迟3小时。

重要性

我们的结果提供了珊瑚 - 双鞭毛虫内共生中光合衍生碳和氮命运的详细原位亚细胞可视化。我们直接证明珊瑚组织中的脂滴和糖原颗粒是双鞭毛虫转运的碳光合产物的汇,并证实它们在珊瑚 - 双鞭毛虫共生体营养相互作用中的关键作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0068/4337570/7142f1509cf6/mbo0011521520001.jpg

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