Multiple Sources and Forms of Nitrogen Sustain Year-Round Kelp Growth on the Inner Continental Shelf of the Santa Barbara Channel

Forests of the giant kelp Macrocystis pyrifera found on coastal rocky reefs lack the large reservoirs for nutrient storage found in many terrestrial environments. Supporting their high year-round growth rates requires a continuous supply of nitrogen. Complementary timing of nutrient supply associate...

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Main Authors: Mark A. Brzezinski, Daniel C. Reed, Shannon Harrer, Andrew Rassweiler, John M. Melack, Blair M. Goodridge, Jenifer E. Dugan
Format: Article
Language:English
Published: The Oceanography Society 2013-09-01
Series:Oceanography
Subjects:
Online Access:http://tos.org/oceanography/archive/26-3_brzezinski.pdf
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spelling doaj-91cc29b40423427cae146126cffc97cc2020-11-25T02:03:49ZengThe Oceanography SocietyOceanography1042-82752013-09-0126311412310.5670/oceanog.2013.53Multiple Sources and Forms of Nitrogen Sustain Year-Round Kelp Growth on the Inner Continental Shelf of the Santa Barbara Channel Mark A. BrzezinskiDaniel C. ReedShannon HarrerAndrew RassweilerJohn M. MelackBlair M. GoodridgeJenifer E. DuganForests of the giant kelp Macrocystis pyrifera found on coastal rocky reefs lack the large reservoirs for nutrient storage found in many terrestrial environments. Supporting their high year-round growth rates requires a continuous supply of nitrogen. Complementary timing of nutrient supply associated with the physical processes that deliver nitrate to reefs largely achieves this goal, but modeling studies indicate that the magnitude of nitrate delivery is inadequate to support the measured nitrogen demand of kelp forests during summer. Ammonium, from sediment efflux and excretion by reef consumers, likely fills the deficit. Together, the varied sources of inorganic nitrogen supplied to kelp forests support their high growth rates throughout the year. Kelp compensates for diminished nitrogen supply during summer by decreasing tissue nitrogen content, resulting in a doubling of kelp C:N ratios. http://tos.org/oceanography/archive/26-3_brzezinski.pdfLTERkelp forestnutrient storage
collection DOAJ
language English
format Article
sources DOAJ
author Mark A. Brzezinski
Daniel C. Reed
Shannon Harrer
Andrew Rassweiler
John M. Melack
Blair M. Goodridge
Jenifer E. Dugan
spellingShingle Mark A. Brzezinski
Daniel C. Reed
Shannon Harrer
Andrew Rassweiler
John M. Melack
Blair M. Goodridge
Jenifer E. Dugan
Multiple Sources and Forms of Nitrogen Sustain Year-Round Kelp Growth on the Inner Continental Shelf of the Santa Barbara Channel
Oceanography
LTER
kelp forest
nutrient storage
author_facet Mark A. Brzezinski
Daniel C. Reed
Shannon Harrer
Andrew Rassweiler
John M. Melack
Blair M. Goodridge
Jenifer E. Dugan
author_sort Mark A. Brzezinski
title Multiple Sources and Forms of Nitrogen Sustain Year-Round Kelp Growth on the Inner Continental Shelf of the Santa Barbara Channel
title_short Multiple Sources and Forms of Nitrogen Sustain Year-Round Kelp Growth on the Inner Continental Shelf of the Santa Barbara Channel
title_full Multiple Sources and Forms of Nitrogen Sustain Year-Round Kelp Growth on the Inner Continental Shelf of the Santa Barbara Channel
title_fullStr Multiple Sources and Forms of Nitrogen Sustain Year-Round Kelp Growth on the Inner Continental Shelf of the Santa Barbara Channel
title_full_unstemmed Multiple Sources and Forms of Nitrogen Sustain Year-Round Kelp Growth on the Inner Continental Shelf of the Santa Barbara Channel
title_sort multiple sources and forms of nitrogen sustain year-round kelp growth on the inner continental shelf of the santa barbara channel
publisher The Oceanography Society
series Oceanography
issn 1042-8275
publishDate 2013-09-01
description Forests of the giant kelp Macrocystis pyrifera found on coastal rocky reefs lack the large reservoirs for nutrient storage found in many terrestrial environments. Supporting their high year-round growth rates requires a continuous supply of nitrogen. Complementary timing of nutrient supply associated with the physical processes that deliver nitrate to reefs largely achieves this goal, but modeling studies indicate that the magnitude of nitrate delivery is inadequate to support the measured nitrogen demand of kelp forests during summer. Ammonium, from sediment efflux and excretion by reef consumers, likely fills the deficit. Together, the varied sources of inorganic nitrogen supplied to kelp forests support their high growth rates throughout the year. Kelp compensates for diminished nitrogen supply during summer by decreasing tissue nitrogen content, resulting in a doubling of kelp C:N ratios.
topic LTER
kelp forest
nutrient storage
url http://tos.org/oceanography/archive/26-3_brzezinski.pdf
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