海洋环境科学
海洋環境科學
해양배경과학
MARINE ENVIRONMENTAL SCIENCE
2009年
4期
355-359
,共5页
链状亚历山大藻%N:P%东海%长江口%赤潮%碱性磷酸酶
鏈狀亞歷山大藻%N:P%東海%長江口%赤潮%堿性燐痠酶
련상아력산대조%N:P%동해%장강구%적조%감성린산매
Alexandrium catenella%N∶ P ratio%East China Sea%Changjiang Estuary%Red tide%alkaline phosphorus compounds
针对长江口临近海域富营养化特征,设计实验研究了链状亚历山大藻(东海株ACDH)生长的最适N/P、对PO4-P的吸收能力,以及对有机磷营养物质的利用能力,分析了ACDH藻株对P营养物质的需求和吸收策略.结果表明,ACDH藻株生长的最适N/P在9~11,其生长需要相对较多的P.ACDH藻株对PO4-P的最大吸收速率(Vm)和半饱和常数(Ks)分别为0.23 pmol/cell·h和0.92 μmol/L,能够吸收较低浓度的PO4-P,但与该海域典型赤潮藻种中肋骨条藻相比,对低浓度PO4-P的竞争不占优势.ACDH藻株在PO4-P限制下具有强烈的碱性磷酸酶表达,有可能通过碱性磷酸酶利用有机磷营养物质,这在其赤潮的形成中应具有重要作用.
針對長江口臨近海域富營養化特徵,設計實驗研究瞭鏈狀亞歷山大藻(東海株ACDH)生長的最適N/P、對PO4-P的吸收能力,以及對有機燐營養物質的利用能力,分析瞭ACDH藻株對P營養物質的需求和吸收策略.結果錶明,ACDH藻株生長的最適N/P在9~11,其生長需要相對較多的P.ACDH藻株對PO4-P的最大吸收速率(Vm)和半飽和常數(Ks)分彆為0.23 pmol/cell·h和0.92 μmol/L,能夠吸收較低濃度的PO4-P,但與該海域典型赤潮藻種中肋骨條藻相比,對低濃度PO4-P的競爭不佔優勢.ACDH藻株在PO4-P限製下具有彊烈的堿性燐痠酶錶達,有可能通過堿性燐痠酶利用有機燐營養物質,這在其赤潮的形成中應具有重要作用.
침대장강구림근해역부영양화특정,설계실험연구료련상아력산대조(동해주ACDH)생장적최괄N/P、대PO4-P적흡수능력,이급대유궤린영양물질적이용능력,분석료ACDH조주대P영양물질적수구화흡수책략.결과표명,ACDH조주생장적최괄N/P재9~11,기생장수요상대교다적P.ACDH조주대PO4-P적최대흡수속솔(Vm)화반포화상수(Ks)분별위0.23 pmol/cell·h화0.92 μmol/L,능구흡수교저농도적PO4-P,단여해해역전형적조조충중륵골조조상비,대저농도PO4-P적경쟁불점우세.ACDH조주재PO4-P한제하구유강렬적감성린산매표체,유가능통과감성린산매이용유궤린영양물질,저재기적조적형성중응구유중요작용.
The experiments were designed, using a strain (ACDH) of Alexandrium catenella isolated in the East China Sea, for studying its optimal N∶ P ratio, phosphate uptake characteristics, and the ability of utilization of organic phosphorus compounds. The results showed that the optimal N∶ P ratio of strain ACDH is about 9 to 11, which is much lower than the ratio of nitrate to phosphate in adjacent sea areas in the Changjiang Estuary. The maximum uptake rate (Vm) and half saturation concentration (Ks) of strain ACDH for phosphate are 0.23 pmol/cell.h and 0.92 mol/L, respectively. Compared to Skeletonema constatum, a popular red tide causative species in the East China Sea, strain ACDH is not very competitive in utilization of low-concentration phosphate in seawater. Alkaline phosphatase activity could be detected in cells of strain ACDH under P limitation condition, suggesting that strain ACDH could utilize the organic forms of phosphorus compounds. The ability in utilizing organic phosphorus compounds could be an important mechanism for the occurrence of A. catenella blooms in this area.