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Effects of prey of different nutrient quality on elemental nutrient budgets in Noctiluca scintillans
by
Guo, Cui
, Zhang, Shuwen
, Ke, Ying
, Glibert, Patricia M.
, Liu, Hongbin
in
14/63
/ 631/158/47/4112
/ 704/829/826
/ Ammonia - metabolism
/ Carbon - metabolism
/ Dinoflagellida - physiology
/ Eating - physiology
/ Environmental Monitoring
/ Excretion
/ Feeding
/ Food
/ Food quality
/ Harmful Algal Bloom - physiology
/ Heterotrophic Processes - physiology
/ Homeostasis
/ Homeostasis - physiology
/ Hong Kong
/ Humanities and Social Sciences
/ Ingestion
/ Laboratories
/ Microorganisms
/ multidisciplinary
/ Nitrogen - deficiency
/ Noctiluca
/ Noctiluca scintillans
/ Nutrients
/ Nutrients - metabolism
/ Nutritive value
/ Phosphates - metabolism
/ Phosphorus - deficiency
/ Phytoplankton
/ Phytoplankton - physiology
/ Prey
/ Red tides
/ Science
/ Science (multidisciplinary)
/ Seasons
/ Senescence
/ Starvation
2017
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Effects of prey of different nutrient quality on elemental nutrient budgets in Noctiluca scintillans
by
Guo, Cui
, Zhang, Shuwen
, Ke, Ying
, Glibert, Patricia M.
, Liu, Hongbin
in
14/63
/ 631/158/47/4112
/ 704/829/826
/ Ammonia - metabolism
/ Carbon - metabolism
/ Dinoflagellida - physiology
/ Eating - physiology
/ Environmental Monitoring
/ Excretion
/ Feeding
/ Food
/ Food quality
/ Harmful Algal Bloom - physiology
/ Heterotrophic Processes - physiology
/ Homeostasis
/ Homeostasis - physiology
/ Hong Kong
/ Humanities and Social Sciences
/ Ingestion
/ Laboratories
/ Microorganisms
/ multidisciplinary
/ Nitrogen - deficiency
/ Noctiluca
/ Noctiluca scintillans
/ Nutrients
/ Nutrients - metabolism
/ Nutritive value
/ Phosphates - metabolism
/ Phosphorus - deficiency
/ Phytoplankton
/ Phytoplankton - physiology
/ Prey
/ Red tides
/ Science
/ Science (multidisciplinary)
/ Seasons
/ Senescence
/ Starvation
2017
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While trying to remove the title from your shelf something went wrong :( Kindly try again later!
Do you wish to request the book?
Effects of prey of different nutrient quality on elemental nutrient budgets in Noctiluca scintillans
by
Guo, Cui
, Zhang, Shuwen
, Ke, Ying
, Glibert, Patricia M.
, Liu, Hongbin
in
14/63
/ 631/158/47/4112
/ 704/829/826
/ Ammonia - metabolism
/ Carbon - metabolism
/ Dinoflagellida - physiology
/ Eating - physiology
/ Environmental Monitoring
/ Excretion
/ Feeding
/ Food
/ Food quality
/ Harmful Algal Bloom - physiology
/ Heterotrophic Processes - physiology
/ Homeostasis
/ Homeostasis - physiology
/ Hong Kong
/ Humanities and Social Sciences
/ Ingestion
/ Laboratories
/ Microorganisms
/ multidisciplinary
/ Nitrogen - deficiency
/ Noctiluca
/ Noctiluca scintillans
/ Nutrients
/ Nutrients - metabolism
/ Nutritive value
/ Phosphates - metabolism
/ Phosphorus - deficiency
/ Phytoplankton
/ Phytoplankton - physiology
/ Prey
/ Red tides
/ Science
/ Science (multidisciplinary)
/ Seasons
/ Senescence
/ Starvation
2017
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Effects of prey of different nutrient quality on elemental nutrient budgets in Noctiluca scintillans
Journal Article
Effects of prey of different nutrient quality on elemental nutrient budgets in Noctiluca scintillans
2017
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Overview
Noctiluca scintillans
(
Noctiluca
) is a cosmopolitan red tide forming heterotrophic dinoflagellate. In this study, we investigated its ingestion, elemental growth yield and excretion when supplied with different quality food (nutrient-balanced, N-limited and P-limited). Total cellular elemental ratios of
Noctiluca
were nearly homeostatic, but the ratio of its intracellular NH
4
+
and PO
4
3−
was weakly regulated.
Noctiluca
thus seems able to differentially allocate N and P to organic and inorganic pools to maintain overall homeostasis, and it regulated its internal N more strongly and efficiently than P. The latter was substantiated by its comparatively stable C:N ratio and compensatory feeding on N-limited prey. Using both starvation experiments and mass balance models, it was found that excretion of C, N, and P by
Noctiluca
is highly affected by prey nutritional quality. However, based on modeling results, nutrients seem efficiently retained in actively feeding
Noctiluca
for reproduction rather than directly released as was shown experimentally in starved cells. Moreover, actively feeding
Noctiluca
tend to retain P and preferentially release N, highlighting its susceptible to P-limitation. Recycling of N and P by
Noctiluca
may supply substantial nutrients for phytoplankton growth, especially following bloom senescence.
Publisher
Nature Publishing Group UK,Nature Publishing Group,Nature Portfolio
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