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藻青素介导来自锥形席的非异形丝状蓝细菌中固定碳的积累和储存。

Cyanophycin mediates the accumulation and storage of fixed carbon in non-heterocystous filamentous cyanobacteria from coniform mats.

作者信息

Liang Biqing, Wu Ting-Di, Sun Hao-Jhe, Vali Hojatollah, Guerquin-Kern Jean-Luc, Wang Chung-Ho, Bosak Tanja

机构信息

Institute of Earth Sciences, Academia Sinica, Nangang, Taipei, Taiwan, ROC ; Department of Earth, Atmospheric and Planetary Sciences, Massachusetts Institute of Technology, Cambridge, Massachusetts, United States of America ; Department of Earth Sciences, National Cheng Kung University, Tainan 701, Taiwan, ROC.

INSERM, U759, Orsay, France ; Institut Curie, Laboratoire de Microscopie Ionique, Orsay, France.

出版信息

PLoS One. 2014 Feb 7;9(2):e88142. doi: 10.1371/journal.pone.0088142. eCollection 2014.

Abstract

Thin, filamentous, non-heterocystous, benthic cyanobacteria (Subsection III) from some marine, lacustrine and thermal environments aggregate into macroscopic cones and conical stromatolites. We investigate the uptake and storage of inorganic carbon by cone-forming cyanobacteria from Yellowstone National Park using high-resolution stable isotope mapping of labeled carbon (H(13)CO3 (-)) and immunoassays. Observations and incubation experiments in actively photosynthesizing enrichment cultures and field samples reveal the presence of abundant cyanophycin granules in the active growth layer of cones. These ultrastructurally heterogeneous granules rapidly accumulate newly fixed carbon and store 18% of the total particulate labeled carbon after 120 mins of incubation. The intracellular distribution of labeled carbon during the incubation experiment demonstrates an unexpectedly large contribution of PEP carboxylase to carbon fixation, and a large flow of carbon and nitrogen toward cyanophycin in thin filamentous, non-heterocystous cyanobacteria. This pattern does not occur in obvious response to a changing N or C status. Instead, it may suggest an unusual interplay between the regulation of carbon concentration mechanisms and accumulation of photorespiratory products that facilitates uptake of inorganic C and reduces photorespiration in the dense, surface-attached communities of cyanobacteria from Subsection III.

摘要

来自一些海洋、湖泊和热环境的丝状、非异形胞、底栖蓝细菌(第三亚组)聚集成宏观的锥体和锥形叠层石。我们使用标记碳(H(13)CO3 (-))的高分辨率稳定同位素图谱和免疫测定法,研究了黄石国家公园中形成锥体的蓝细菌对无机碳的摄取和储存。在活跃光合作用的富集培养物和野外样本中的观察和培养实验表明,锥体的活跃生长层中存在大量藻青素颗粒。这些超微结构异质的颗粒迅速积累新固定的碳,并在培养120分钟后储存了18%的总颗粒标记碳。培养实验期间标记碳的细胞内分布表明,磷酸烯醇式丙酮酸羧化酶对碳固定的贡献出乎意料地大,并且在丝状、非异形胞蓝细菌中,碳和氮大量流向藻青素。这种模式并非明显响应氮或碳状态的变化而出现。相反,它可能表明碳浓缩机制的调节与光呼吸产物的积累之间存在异常的相互作用,这有助于无机碳的摄取并减少第三亚组中密集的、附着在表面的蓝细菌群落中的光呼吸。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/85a3/3917874/b1f90be5e79d/pone.0088142.g001.jpg

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