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1.
海水中碱性磷酸酶活力的测定及其在磷的循环中的作用初探   总被引:18,自引:3,他引:18  
建立了海水介质中浮游植物、细菌及游离态三种碱性磷酸酶活力的分光测定法。在厦门西港海域及实验生态中分别测定了这三种碱性磷酸酶的活力;同时采用~(32)P示踪法探讨了碱性磷酸酶对小球藻直接利用溶解有机磷(DOP)的影响。结果表明,浮游植物体的碱性磷酸酶活力占主导地位;当水体溶解无机磷降低到一定浓度时,浮游植物体碱性磷酸酶活力可突增,它提供了浮游植物直接利用DOP的条件。  相似文献   

2.
碱性磷酸酶活性(alkaline phosphatase activity, APA)是海洋研究中用于反映浮游植物磷限制状态的重要指标。在长江口等“氮过剩”海域,磷是控制海域初级生产力水平的主要因子,然而,磷限制的范围常常难以界定,当前对不同粒级浮游植物的磷限制效应所知甚少。该文根据2020年夏季长江口航次资料,给出了海洋表层各粒级浮游植物(Net:≥20 μm;Nano:2~20 μm;Pico:0.8~2 μm)APA、浮游细菌APA(0.2~0.8 μm)和溶解态APA(<0.2 μm)的空间分布特征,并分析了APA与环境要素间的相关性。结果显示,各粒级浮游植物APA均与无机磷酸盐浓度(dissolved inorganic phosphate, DIP)呈显著负相关,这表明DIP浓度是影响浮游植物APA分布的主要因素。在平面分布上,各粒级浮游植物APA在近口门的光限制区均较低,且呈现自口门向外逐渐升高的趋势,与DIP的分布特征相反。Net和Nano级APA[平均值分别为 (40.28±32.35) nmol/(L·h)和(52.38±34.78) nmol/(L·h)]显著高于Pico级APA[平均值为(28.43±20.23) nmol/(L·h)],这表明大粒级浮游植物可能更易受DIP下降的影响。该研究中,诱导浮游植物APA快速升高的DIP浓度为0.159 μmol/L,与近岸区磷限制经验阈值相接近。该研究揭示了夏季不同粒级浮游植物对长江口磷分布的响应特征,有助于理解长江口初级生产过程的环境调控机制。  相似文献   

3.
钦州湾磷营养状态与浮游植物的碱性磷酸酶活性分析   总被引:1,自引:0,他引:1  
碱性磷酸酶(Alkaline phosphatase,AP)是浮游植物在磷胁迫的情况下诱导表达的一种酶,其作用是能够将溶解有机磷(Dissolved organic phosphate,DOP)水解成浮游植物可以直接利用的正磷酸盐形式,因此碱性磷酸酶活性(Alkaline phosphatase activity,APA)可用来指示海区浮游植物的磷胁迫状态。本研究以2015-2016年钦州湾4个航次(春季、夏季、秋季、冬季)的调查资料为依据,研究了钦州湾海域表层无机及有机磷的空间分布特征、APA的分布及其与磷营养之间的调控关系。调查期间,钦州湾海域春季、夏、秋、冬的单位叶绿素APA的平均值分别为20.42±5.32 nmol/μg Chl a/h,138.17±94.32 nmol/μg Chl a/h,142.60±72.60 nmol/μg Chl a/h和29.48±18.52 nmol/μg Chl a/h。经分析,APA与无机磷之间存在显著的负相关(P0.05),与N/P呈极显著负相关(P0.01),该海区APA可以反映钦州湾浮游植物的磷胁迫水平。海区氮磷比平均值在除春季外的三个季节均高于35,存在潜在的磷限制,浮游植物在夏季和秋季遭受较严重的磷胁迫。夏季和秋季浮游植物大量表达AP,由此推测DOP可能在钦州湾浮游植物生物量的维持甚至赤潮发生期间的磷补给上起着重要作用。  相似文献   

4.
九龙江河-海系统夏季浮游植物磷胁迫研究   总被引:1,自引:0,他引:1  
采用群落水平和细胞水平碱性磷酸酶活性(APA)相结合的方法,研究了2010年夏季(6-7月)九龙江河-海系统(河流-河口-邻近海域)浮游植物的磷胁迫,结果表明,单位叶绿素a的APA在河流下游区[(48.80±14.69)nmol/(h.μg Chl a)]显著高于河口区[(10.60±15.58)nmol/(h·μg Chl.a)]和邻近海域[(23.54±25.41)nmol/(h·μg Chl.a)],表明河流区的浮游植物磷胁迫显著高于河口区和邻近海域.三个区域高比例的游离态APA表明该水域浮游植物已较长时间处于磷胁迫状态.细胞水平的浮游植物荧光标记结果显示,河口区(20%±20%)与邻近海域(38%±20%)无显著差异(P>0.05),此结果与群落水平APA结果相一致;但河口-邻近海域浮游植物的标记比例显著高于河流下游区(9%±3%)(P<0.05).  相似文献   

5.
本文首次对厦门西海域表层沉积物中碱性磷酸酶活力的分布、动态进行了检测和分析,并在同步检测该沉积物各种形态磷含量的基础上对该酶与各形态磷的关系进行了探讨。结果表明,厦门西海域表层沉积物中碱性磷酸酶的活力分布与陆源排污对水体的污染有明显的相关性;酶活力与总磷、总无机磷含量相关性较大,与弱吸附可交换磷相关性不大,与总有机磷含量则呈显著不相关性。并认为,就厦门西海域而言,碱性磷酸酶活力的水平可作为小区域水  相似文献   

6.
本文首次对厦门西海域表层沉积物中碱性磷酸酶活力的分布、动态进行了检测和分析,并在同步检测该沉积物各种形态磷含量的基础上对该酶与各形态磷的关系进行了探讨。结果表明,厦门西海域表层沉积物中碱性磷酸酶的活力分布与陆源排污对水体的污染有明显的相关性;酶活力与总磷、总无机磷含量相关性较大,与弱吸附可交换磷相关性不大,与总有机磷含量则呈显著不相关性。并认为,就厦门西海域而言,碱性磷酸酶活力的水平可作为小区域水  相似文献   

7.
秦皇岛近海褐潮高发区浮游植物的碱性磷酸酶活性分析   总被引:1,自引:0,他引:1  
碱性磷酸酶(Alkaline phosphatase,AP)是浮游植物在磷胁迫状态下表达的一种水解有机磷源的胞外酶,可用于指示海区浮游植物的磷胁迫状态。本研究于2013年7月,对秦皇岛近海抑食金球藻(Aureococcus anophagefferens)褐潮发生期间浮游植物的碱性磷酸酶活性(AP activity,APA)进行研究,结合其他理化参数,分析藻华发生时浮游植物的磷营养状态及其对海水中磷源的水解与利用情况。结果表明,褐潮发生时,抑食金球藻细胞密度高达108个/L,溶解有机磷(Dissolved organic phosphorus,DOP)成为浮游植物生长利用的主要磷源。抑食金球藻的细胞密度受到海水中NO3–、DOP、溶解无机磷(Dissolved inorganic phosphorus,DIP)浓度等的显著影响。浮游植物大量表达AP水解DOP,平均APA高达217.72 nmol/(μg·h)±90.86 nmol/(μg·h)(350.44 nmol/(L·h)±130.57 nmol/(L·h)),且APA随浮游植物生物量增大而显著增加。该结果表明抑食金球藻褐潮发生时,海区遭受严峻的磷胁迫甚至限制。磷源,尤其是有机磷源的可利用性可能在秦皇岛海区抑食金球藻褐潮的发生和维持中起关键作用。  相似文献   

8.
本文利用2019—2021年在黄河口及莱州湾海域进行的4次陆海同步调查结果,分析了环莱州湾主要入海河口和排污口陆源输入磷的季节变化、黄河口及莱州湾海域内不同形态磷及不同碱性磷酸酶活性(APA)的时空分布特征,探讨了海域内磷受限状况及浮游植物和浮游细菌对低磷胁迫的响应。结果表明,磷的陆源输入中黄河贡献最大,小清河次之;总磷(TP)入海通量呈现出夏季>春季>秋季>冬季的季节变化,春、夏、秋季磷输入以颗粒态磷(PP)为主,冬季以溶解态磷(DP)为主;受农业施肥及河道内浮游生物活动的影响,春季陆源DP以溶解有机磷(DOP)为主,其他季节以活性磷酸盐(PO4-P)为主。研究海域内TP浓度及构成不仅受陆源输入的影响,还受浮游生物消亡、海上养殖活动和沉积物释放等作用共同调控,TP浓度呈现出春季>夏季≈秋季>冬季的季节变化、近岸高远岸低的分布特征,高值区主要位于黄河和小清河河口区域;TP构成上,春季以DP为主,夏、秋季DP与PP相当,冬季以PP为主;春、秋季DP以DOP为主,而夏、冬季DP以PO4-P为主。海域内浮游植物普遍受到...  相似文献   

9.
溶解态磷在海洋微藻碱性磷酸酶活力变化中的调控作用   总被引:19,自引:2,他引:17  
在实验室批量培养条件下,测定了海洋微藻培养体系中碱性磷酸酶活力(APA)和各形态溶解磷的动态变化,分析了二者之间的关系.结果表明,在批量培养过程中,APA的动态变化呈"S"形曲线,各形态溶解磷在其变化过程中所起的调控作用不同,介质中溶解无机磷和小分子溶解有机磷的浓度是激发APA发生变化的主要调控因子,大分子溶解有机磷的浓度对APA的作用不明显,但APA的增大可加速微藻利用大分子溶解有机磷的速率.微藻的种类和丰度不影响APA的动态变化形式及其调控机理.  相似文献   

10.
不同磷源对米氏凯伦藻生长和碱性磷酸酶活性的影响   总被引:1,自引:0,他引:1  
庞勇  聂瑞  吕颂辉 《海洋科学》2016,40(4):59-64
为了解米氏凯伦藻(Karenia mikimotoi)赤潮形成的磷营养机理,作者研究了不同磷源[三磷酸腺苷二钠盐(Adenosine disodium triphosphate,ATP)、甘油磷酸钠(sodium glycerophosphate,G-P)、卵磷脂(lecthin,LEC)和Na H2PO4·2H2O]对其生长和藻细胞碱性磷酸酶活性(alkaline phosphatase activity,APA)的影响。结果表明:(1)米氏凯伦藻可以有效利用无机磷(Na H2PO4·2H2O),对有机磷源如三磷酸腺苷二钠盐(ATP)、甘油磷酸钠(G-P)也能有效利用,但不能有效利用卵磷脂(LEC);(2)米氏凯伦藻碱性磷酸酶的检测中,在起始阶段,不同磷源(ATP,G-P,LEC和Na H2PO4·2H2O)的米氏凯伦藻APA达到最大值,米氏凯伦藻的APA分别为6.0,10.5,8.0和0.4 pmol/(个·h)。随培养时间的持续,各有机磷培养基中米氏凯伦藻的APA均表现出先逐渐减小,而后增强,最后在最大值维持的趋势,而以Na H2PO4·2H2O为磷源的米氏凯伦藻的APA没有明显的增加;(3)单个细胞的米氏凯伦藻的APA位点分布明显,大致位于细胞表面。通过研究发现,米氏凯伦藻在外界环境无机磷限制的条件下,能够较好地吸收利用有机磷维持生长,印证了近年来米氏凯伦藻赤潮频繁地发生在磷限制海域的事实。  相似文献   

11.
黄海冷水团海域浮游植物磷胁迫的季节变动   总被引:2,自引:0,他引:2  
The Yellow Sea is located between the China Mainland and the Korean Peninsula, representing a typical shallow epicontinental sea. The Yellow Sea Cold Water Mass(YSCWM) is one of the most important physical features in the Yellow Sea. The characteristics of vertical profiles and seasonal variations of biogenic elements in the YSCWM may lead the variations of nutrient availability(e.g., phosphorus) and phosphorus stress of phytoplankton. In this study, the authors surveyed the seasonal variations of phytoplankton phosphorus stress with emphasis on the effect of the YSCWM during the four cruises in April and October 2006, March and August 2007. Using both bulk and single-cell alkaline phosphatase activity(APA) assays, this study evaluated phosphorus status of phytoplankton community, succession of phytoplankton community and ecophysiological responses of phytoplankton to phosphorus in the typical region of the YSCWM. With the occurrence of the YSCWM, especially the variations of concentration of dissolved inorganic phosphorus(DIP), the results of bulk APA appeared corresponding seasonal variations. Along Transects A and B, the mean APA in August was the highest, and that in March was the lowest. According to the ELF-labeled assay's results, seasonal variations of the ELF-labeled percentages within dominant species indicated that diatoms were dominant in March, April and October, while dinoflagellates were dominant in August. During the four cruises, the ELF-labeled percentages of diatoms except Paralia sulcata showed that diatoms were not phosphorus deficient in April 2006 at all, but suffered from severe phosphorus stress in August 2007. In comparison, the ELF-labeled percentages of dinoflagellates were all above 50% during the four time series, which meant dinoflagellates such as Alexandrium and Scrippsiella, sustained perennial phosphorus stress.  相似文献   

12.
珠江口初级生产力和新生产力研究   总被引:18,自引:2,他引:18  
1996年12月和1997年8月在珠江河口湾及其毗邻海域对浮游植物生物量、初级生产力和新生产力及其环境制约机制的研究.结果表明,调查海区的叶绿素a、初级生产力和新生产力均是夏季高于冬季,冬、夏两季的平均值分别为(0.95±0.41)和(1.08±0.52)μg/dm3,(69.2±75.5)和(198.7±119.1)mg/(m2·d),(1.46±0.79)和(3.05±3.09)mg/(m3·h).冬、夏两季平均f-比分别为0.45和0.38.分级叶绿素a结果显示,冬、夏两季均以微型和微微型级分(<20μm)占优势,其对海区叶绿素a的贡献分别为796%和81.6%,对初级生产力的贡献分别为70.7%和896%.调查海区具显著的空间区域化特征,叶绿素a和潜在初级生产力的高值出现在冲淡水区的中部,向口门区和远岸区逐渐降低.现场初级生产力的高值出现在远岸区,它与复合参数BeZpI0(Be为真光层平均叶绿素a,Zp为真光层深度,I0为海面光辐射强度-PAR)呈很好的正相关,说明光是研究海区初级生产力的主要限制因子.新生产力冬、夏两季的高值分别出现在交椅湾和伶仃洋西南部.  相似文献   

13.
The Strait of Malacca (SoM), the world’s busiest sea-route, is increasingly polluted as the rapid development of world trades, affecting phytoplankton primary productivity therein. The variations of surface phytoplankton biomass, size-structure and carbon fixation were investigated across the SoM during the spring period (May 4 to 9, 2011). Chlorophyll a concentration increased from 0.12 μg/L at the northwest entrance of the SoM to a maximal 0.63 μg/L at narrowest section, and decreased to 0.10 μg/L at the southeast entrance. Photosynthetic carbon fixation by phytoplankton coincided well with Chl a biomass, and increased from 10.8 to 22.3 μg C/(L d), then decreased to 9.21 μg C/(L d); while the carbon fixation rate showed an inverse pattern to the changes of Chl a, and decreased from 87.1 to 35.5 μg C/(μg Chl a d) and increased thereafter to 95.3 μg C/(μg Chla·d). Picophytoplankton cells (<3 μm) contributed to more than 60% and 50% of the total Chl a and carbon fixation at both the entry waters; while the contributions of pico-cells decreased sharply to the minimum of 18.3% and 27.5% at the narrowest part of the SoM. In particular, our results showed that the silicate concentration positively regulated Chl a biomass and carbon fixation, reflecting that the higher silicate favoured the growth of phytoplankton and thus led to higher primary production in this strait.  相似文献   

14.
北部湾浮游植物粒径分级叶绿素a和初级生产力的分布特征   总被引:19,自引:4,他引:19  
1994年5月23B至6月4日现场观测了北部湾浮游植物细胞丰度、叶绿素a浓度和初级生产力的分布.测区平均叶绿素a浓度为0.94±0.45/d3.平均初级生产力(C)为351±172mg/(m2·d),浮游植物细胞丰度为0.97×104-10050×104个/m3,鉴定浮游植物4门56属176种.地理环境和水文状况的差异使上述参数分布具有明显的区域性特征,近岸区高于湾中部,测区北部高干南部;温跃层以下水层叶绿素a浓度高于上层水,周6观测站平均叶绿素a浓度湾北部(0.47±0.15g/dm3)高于湾南部(0.15±0.02dm3).北部湾水域光合浮游生物以微型和微微型细胞(小于20m)占优势,其对总初级生产力的贡献(占91%)高于对总叶绿素a的贡献(占77%).  相似文献   

15.
Few phosphorus-depleted coastal ecosystems have been examined for their ability to hydrolyze phosphomonoesters. We examined seasonal (August 2006–April 2007) alkaline phosphatase activity in Florida Bay, a phosphorus-limited shallow estuary, using fluorescent substrate at low concentrations (≤2.0 μM). In situ dissolved inorganic and organic phosphorus levels and phosphomonoester concentrations were also determined. Water column alkaline phosphatase activity was partitioned into two particulate size fractions (>1.2 and 0.2–1.2 μm) and freely dissolved enzymes (<0.2 μm). Water column alkaline phosphatase activity was also compared to leaf and epiphyte activity of the dominant tropical seagrass Thalassia testudinum. Our results indicate: (1) potential alkaline phosphatase activity in Florida Bay is high compared to other marine ecosystems, resulting in rapid phosphomonoester turnover times (2 h). (2) Water column alkaline phosphatase activity dominates, and is split equally between particulate and dissolved fractions. (3) Alkaline phosphatase activity was highest during cyanobacterial blooms, but not when normalized to chl a. These results suggest that dissolved, heterotrophic and autotrophic alkaline phosphatase activity is stimulated by phytoplankton blooms. (4) The dissolved alkaline phosphatase activity is relatively constant, while the particulate activity is seasonally and spatially dynamic, typically associated with phytoplankton blooms. (5) Phosphomonoester concentrations throughout the bay are low, even though potential hydrolysis rates are high. We propose that bioavailable dissolved organic P is hydrolyzed by dissolved and microbial alkaline phosphatase enzymes in Florida Bay. High alkaline phosphatase activity in the bay is also promoted by long hydraulic residence times. This background activity is primarily driven by carbon and phosphorus limitation of microorganisms, and regeneration of enzymes associated with cell lysis. Pulses of inorganic phosphorus and labile organic phosphorus and nitrogen may stimulate autotrophs, particularly cyanobacteria, which in turn promote biological activity that increase alkaline phosphatase activity of both autotrophs and heterotrophs in the bay.  相似文献   

16.
The distribution of the abundance of phytoplankton, chlorophyll a (Chl.a) concentration and primary productivity in the Beibu Gulf were observed from May 23 to June 4, 1994.The results show that there were marked featares of spatial zonation in the survey area due to the differences between the geographic environment and the hydrological conditions.Chlorophyll a and primary productivity were higher in the inshore than in the middle area and higher in the north than in the south of the Beibu Gulf.The average concentration of Chl.a, primary productivity and the abundance of phytoplankton were 0.94±0.45 μg/dm3, 351±172 mg/(m2·d) (C) and 0.97×104-10.050×104 ind./m3 in the area, respectively.There were 176 species belonging to 4 phyla and 56 genera based on microscope identification.The results of the size-fractionation show that the contribution of nanoplankton and picoplankton was 77% to total Chl.a and 91% to total primary productivity, which proved their importance to phytoplankton communities in the Beibu Gulf.  相似文献   

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