Factors controlling Zostera marina L. growth in the eastern and western Pacific Ocean Comparisons be.pdfVIP
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Factors controlling Zostera marina L. growth in the eastern and western Pacific Ocean Comparisons be
/locate/aquabot Aquatic Botany 87 (2007) 116–126Factors controlling Zostera marina L. growth in the eastern and western Pacific Ocean: Comparisons between Korea and Oregon, USA James E. Kaldy a, Kun-Seop Lee b,* a U.S. Environmental Protection Agency, Western Ecology Division, Pacific Coastal Ecology Branch, 2111 SE Marine Science Center Dr., Newport, OR 97365, USA b Department of Biology, Pusan National University, 30 Changjun-dong, Pusan 609-735, Republic of Korea Received 21 March 2006; received in revised form 15 March 2007; accepted 23 March 2007 Available online 1 April 2007AbstractZostera marina distribution is circum-global and tolerates a wide range of environmental conditions. Consequently, it is likely that populations have adapted to local environmental conditions of light, temperature and nutrient supply. We compared Z. marina growth dynamics over a 2-year period in relation to environmental characters at Jindong Bay, South Korea and Yaquina Bay, Oregon, USA. Water temperature in Jindong Bay showed stronger seasonal variation (summer–winter DT = 20 8C) than in Yaquina Bay (summer–winter DT 5 8C). Underwater irradiance in Jindong Bay exhibited a winter maximum, while in Yaquina Bay underwater light exhibited a summer maximum. Integrated annual underwater irradiance during 2003 was 2200 and 1200 mol photons m2 year1 in Korea and Oregon, respectively. Z. marina shoot density, biomass and integrated production were not significantly different between the two study sites. Seasonal Z. marina growth in Jindong Bay appeared to be controlled by temperature and light, while the growth pattern in Yaquina Bay suggested light regulation. Several seagrass parameters were correlated to phosphate concentrations, even though nutrients did not appear limiting. Despite differences in environmental factors, relative growth rates and temporal growth dynamics between study sites, integrated annual leaf production was quite similar at 335 and 353 g DW m2 year1 in the Jin
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