4.8 Article

Guanine, a high-capacity and rapid-turnover nitrogen reserve in microalgal cells

出版社

NATL ACAD SCIENCES
DOI: 10.1073/pnas.2005460117

关键词

nitrogen cycle; nutrient storage; phytoplankton; guanine; coral

资金

  1. Czech Science Foundation [17-06264S]
  2. Russian Science Foundation [20-64-46018]
  3. Grant Agency of Charles University [796217]
  4. Federal Ministry of Education and Research, Germany [FKZ 031B0453A]
  5. User Facilities Center of M. V. Lomonosov Moscow State University
  6. Russian Science Foundation [20-64-46018] Funding Source: Russian Science Foundation

向作者/读者索取更多资源

Nitrogen (N) is an essential macronutrient for microalgae, influencing their productivity, composition, and growth dynamics. Despite the dramatic consequences of N starvation, many free-living and endo-symbiotic microalgae thrive in N-poor and N-fluctuating environments, giving rise to questions about the existence and nature of their long-term N reserves. Our understanding of these processes requires a unequivocal identification of the N reserves in microalgal cells as well as their turnover kinetics and subcellular localization. Herein, we identified crystalline guanine as the enigmatic large-capacity and rapid-turnover N reserve of microalgae. The identification was unambiguously supported by confocal Raman, fluorescence, and analytical transmission electron microscopies as well as stable isotope labeling. We discovered that the storing capacity for crystalline guanine by the marine dinoflagellate Amphidinium carterae was sufficient to support N requirements for several new generations. We determined that N reserves were rapidly accumulated from guanine available in the environment as well as biosynthesized from various N-containing nutrients. Storage of exogenic N in the form of crystalline guanine was found broadly distributed across taxonomically distant groups of microalgae from diverse habitats, from freshwater and marine free-living forms to endosymbiotic microalgae of reef-building corals (Acropora millepora, Euphyllia paraancora). We propose that crystalline guanine is the elusive N depot that mitigates the negative consequences of episodic N shortage. Guanine (C5H5N5O) may act similarly to cyanophycin (C10H19N5O5) granules in cyanobacteria. Considering the phyto-plankton nitrogen pool size and dynamics, guanine is proposed to be an important storage form participating in the global N cycle.

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