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Production rate estimation of mycosporine-like amino acids in two Arctic melt ponds by stable isotope probing with NAH13CO3

Cited 2 time in wos
Cited 2 time in scopus
Title
Production rate estimation of mycosporine-like amino acids in two Arctic melt ponds by stable isotope probing with NAH13CO3
Other Titles
안정동위원소 NaH13CO3를 이용한 북극 melt pond 내 mycosporine-like amino acids 생산력 평가
Authors
Ha, Sun-Yong
Kang, Sung-Ho
Yang, Eun Jin
Shin, Kyung-Hoon
Chung, Kyung Ho
Joo, Hyong-Min
Min, Jun-Oh
Keywords
ArcticMelt pondmycosporine-like amino acidssea icestable isotope probing (SIP) technique
Issue Date
2014
Citation
Ha, Sun-Yong, et al. 2014. "Production rate estimation of mycosporine-like amino acids in two Arctic melt ponds by stable isotope probing with NAH13CO3". JOURNAL OF PHYCOLOGY, 50(5): 901-907.
Abstract
The net carbon uptake rate and net production rate of mycosporine-like amino acids (MAAs) were measured in phytoplankton from 2 different melt ponds (closed and open type pond) in the western Arctic Ocean using a 13C stable isotope tracer technique. The Research Vessel Araon visited icecovered western-central basins situated at 82°N and 173°E in the summer of 2012, when Arctic sea ice declined to a record minimum. The average net carbon uptake rate of the phytoplankton inpolycarbonate (PC)bottles in the closedmelt pond was 3.24 mg C .m-3. h-1(SD = ± 1.12 mg C . m-3. h- 1), while that in the open melt pond was 1.3 mg C . m-3. h-1(SD = ± 0.05 mg C . m-3. h-1). The net production rate of total MAAs in incubatedPC bottles was highest (1.44 (SD= ±0.24) ngC .L-1. h-1) in the open melt pond and lowest (0.05 (SD= ±0.003) ngC . L-1. h-1) in the closed melt pond. The net production rate of shinorine and palytine in incubatedPC bottlesat the open melt pond presented significantly high values 0.76 (SD= ±0.12) ngC .L-1. h-1and 0.53 (SD= ±0.06) ngC . L-1. h-1. Our results showed that high net production rate of MAAs in the open melt pond was enhanced by a combination of osmotic and UVR stress and thatin situ net production rates of individual MAA can be determined using 13C tracer inmelt ponds in Arctic sea ice.
URI
https://repository.kopri.re.kr/handle/201206/7283
DOI
http://dx.doi.org/10.1111/jpy.12221
Type
Article
Indexed
SCI
Appears in Collections  
2011-2016, Korea Polar Ocean in Rapid Transition (K-PORT) / Kang, Sung-Ho (PM11080; PM12020; PM13020; PM14040; PM14040; PM15040)
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