韩婷婷, 齐占会, 戴明, 廖秀丽, 吴风霞, 巩秀玉, 付贵权, 黄洪辉. 大鹏澳不同区域尿素浓度与浮游植物脲酶活性的研究[J]. 南方水产科学, 2016, 12(2): 7-12. DOI: 10.3969/j.issn.2095-0780.2016.02.002
引用本文: 韩婷婷, 齐占会, 戴明, 廖秀丽, 吴风霞, 巩秀玉, 付贵权, 黄洪辉. 大鹏澳不同区域尿素浓度与浮游植物脲酶活性的研究[J]. 南方水产科学, 2016, 12(2): 7-12. DOI: 10.3969/j.issn.2095-0780.2016.02.002
HAN Tingting, QI Zhanhui, DAI Min, LIAO Xiuli, WU Fengxia, GONG Xiuyu, FU Guiquan, HUANG Honghui. Study on urea concentration and urease activity of phytoplankton in different areas of Dapeng Cove[J]. South China Fisheries Science, 2016, 12(2): 7-12. DOI: 10.3969/j.issn.2095-0780.2016.02.002
Citation: HAN Tingting, QI Zhanhui, DAI Min, LIAO Xiuli, WU Fengxia, GONG Xiuyu, FU Guiquan, HUANG Honghui. Study on urea concentration and urease activity of phytoplankton in different areas of Dapeng Cove[J]. South China Fisheries Science, 2016, 12(2): 7-12. DOI: 10.3969/j.issn.2095-0780.2016.02.002

大鹏澳不同区域尿素浓度与浮游植物脲酶活性的研究

Study on urea concentration and urease activity of phytoplankton in different areas of Dapeng Cove

  • 摘要: 2014 年8 月对大鹏澳的核电温排区、人工鱼礁区和水产养殖区, 以及连接大鹏澳的南涌河口、龙岐河口和王母河口等6 个区域的尿素浓度( 以氮浓度表示, Urea-N) 和浮游植物脲酶活性开展调查研究, 结合其他环境因子, 对比分析不同区域的尿素分布特征及其与脲酶活性的相关性。结果表明, 夏季大鹏澳湾内和河口Urea-N 浓度相差较大, 范围分别为0.28~1.21 molL-1和0.38~3.50 molL-1 , 相当于溶解无机氮( DIN) 的6.30%~24.31% 和3.13%~6.77%, 氮源以DIN为主。龙岐河口和王母河口的尿素浓度最高, 养殖区次之。湾内和河口的脲酶活性( 以NH4+ -N表示) 范围分别为0.61~1.03 mol( Lh) -1和0.82~1.07 mol( Lh) -1 , 其活性除了与尿素浓度呈正相关外, 还受无机营养盐和浮游植物量的影响。在氮、磷没有限制的鱼礁区、养殖区和南涌河口, 叶绿素a( Chl-a) 浓度高可促进脲酶的诱导调节。尿素为养殖区的重要氮源, 脲酶活性与Chl-a 呈极显著正相关。温排区、龙岐河口和王母河口存在磷限制, 抑制脲酶的诱导调节。

     

    Abstract: Based on the data of the cruise thatwas carried out in Dapeng Cove, mainly including thermal discharge area from nuclear power plant, artificial reef area, aquaculture area and three main estuarine areas into Dapeng Cove, Nanyong River, Longqi River and Wangmu River in Aug. , 2014 ( summer) , we investigated the urea concentration ( expressed by nitrogen, Urea-N) and urease activity of phytoplankton together with the other environmental parameters to discuss the bioavailability of urea for phytoplankton. Obvious difference between the bay and the estuary with average urea concentrations ranging from0. 28 to 1.21 molL-1 and 0. 38 to 3. 50 molL-1 , respectively, and the urea concentration was 6.30%~24.1% of DIN in the bay and 3.13%~6.77% of DIN in the estuary, resulting in inorganic nitrogen source for phytoplankton in Dapeng Cove. Urea concentration reached the maximum at Longqi estuary and Wangmu estuary, followed by aquaculture area. The urease activity of phytoplankton in the bay and the estuary ranged from0. 61 to 1.03 mol( Lh) -1 and 0. 82 to 1.07 mol( Lh) -1 , respectively. Urease activity was positively related with urea concentration, and was also affected by inorganic nutrient and phytoplankton biomass. In the artificial reef area, aquaculture area and Nanyong estuary withoutN and P limitation, high Chl-a concentration could promote urease activity; in the aquaculture area, ureawas the main nitrogen source for phytoplankton, and Chl-a had very significant positive correlation with urease activity; in the thermal discharge area ( Longqi estuary and Wangmu estuary) , P limitation resulted in inhibitory regulation of urease activity.

     

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