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1.
于2013年12月3日清晨、正午、傍晚采集了大亚湾大鹏澳海域3个站位的微表层和次表层水样,经过三级分级过滤(小型:20μm;微型:2.7~20μm;微微型:2.7μm)后,对其进行高效液相色谱(HPLC)色素分析,通过藻类色素化学分类法(CHEMTAX)分析不同浮游植物对Chl a的贡献,研究了微表层及次表层光合色素粒径特征及浮游植物群落结构差异。结果表明,冬季大亚湾海域水体中存在的浮游植物光合色素主要有17种,以岩藻黄素和Chl a含量较高。微表层总Chl a平均浓度为0.797μg/L,略高于次表层的0.714μg/L,不存在显著性差异(P0.05);微表层和次表层Chl a含量清晨最高,傍晚次之,正午最低。微表层不同粒径浮游植物对Chl a的贡献率从大到小依次为小型、微型、微微型浮游植物,分别为80.7%,10.1%和9.2%。CHEMTAX分析结果得出,冬季该海域硅藻占绝对优势,甲藻、定鞭藻、青绿藻、蓝藻、隐藻所占比重相差不大。微表层中定鞭藻、青绿藻和蓝藻等较小粒径浮游植物种群所占比重高于次表层,说明相对于次表层,微表层中的浮游植物群落有小型化趋势。  相似文献   

2.
本研究于2020年夏、秋两季,在黄海的三个站位开展了船基受控培养实验,研究了灰霾颗粒添加和光照变化(相较于海面约40%、68%和82%的光衰减)对微微型浮游植物生长、群落演替及碳生物量和叶绿素a(Chl a)比值的影响。结果表明,微微型浮游植物均表现出对总Chl a相当甚至主导的贡献能力,且所有培养站位初始海水中微微型浮游植物优势类群均为微微型真核浮游植物和聚球藻。在黄海中部和北部的贫营养海域,灰霾颗粒添加提供的氮能够促进微微型浮游植物的Chl a(Chl apico)浓度、微微型真核浮游植物和聚球藻细胞丰度的增加,但光照变化的影响不显著。然而,微微型浮游植物碳生物量(Cpico)和Chl apico比值(Cpico/Chl apico)随着灰霾颗粒的添加和光照强度的衰减呈降低趋势,这与浮游植物的光合色素合成水平密切相关。在近岸富营养海域,培养实验期间海面的光照强度较低,且由于海域水体浑浊,光照强度是影响微微型浮游植物生长和Cpico/Chl a...  相似文献   

3.
东海、南黄海浮游植物粒级结构及环境影响因素分析   总被引:7,自引:0,他引:7  
对粒径分级叶绿素a含量进行分析,探讨了南黄海和东海海域2000年秋季表层浮游植物的粒级结构特征及其环境影响因素.在整个调查海域范围内,叶绿素a平均含量为0.72 mg*m-3,各粒级浮游植物叶绿素a含量对叶绿素a总量的贡献有显著差异,小型(Microplankton,>20 μm)、微型(Nanoplankton,3~20 μm)和微微型(Picoplankton,0.45~3 μm)浮游植物的贡献率分别为31.2%,49.0%和19.8%.小型浮游植物主要分布在江苏沿岸和长江口附近;微型浮游植物在整个海域的分布较均匀,以浙江沿岸和南黄海东部为高值区;微微型浮游植物主要分布在南黄海中部和东海东南部.通过浮游植物粒径分级叶绿素a和环境因子的相关性分析,发现在调查海域营养盐与浮游植物叶绿素a的相关系数随着浮游植物粒径的增大而从负逐渐变正,说明高的营养盐含量区域较大粒径的浮游植物占有较大优势.依据浮游植物粒径分级叶绿素a和环境因子对调查站位进行的聚类分析结果和海域水团的分布以及卫星遥感图显示的水色差异之间有密切联系,聚类分析方法是研究浮游植物分布和环境因子之间关系的一种有效方法.  相似文献   

4.
2005年7月在台湾海峡南部4个站位应用“稀释法”结合高效液相色谱(HPLC)色素分析技术研究了不同色素类群浮游植物的生长率及微型浮游动物对其的摄食死亡率.结果表明,不同色素类群浮游植物的生长率(k)和摄食死亡率(g)分别为0.52~ 1.34 d-1和0.25 ~ 1.10 d-1,微型浮游动物对不同色素类群浮游植物的现存量和初级生产力的摄食压力分别为22%~ 66%和40%~ 151%.通过比较不同类群浮游植物的g/k值,发现颗粒较大的浮游植物(硅藻和甲藻)的净生长率要大于那些微型藻类(蓝细菌、隐藻和定鞭金藻等)的净生长率,说明本次研究中微型藻类更易受到微型浮游动物的摄食控制.  相似文献   

5.
春季北黄海表层海水中溶解游离氨基酸的分布与组成研究   总被引:1,自引:0,他引:1  
于2007年4月用高效液相色谱法分析北黄海42个站位表层海水中溶解游离氨基酸(DFAA)浓度的分布特征及组成。本次调查还分析了Chl a的浓度分布以及DFAA与Chl a之间的关系。结果表明:北黄海表层海水中DFAA浓度的变化范围为0.19~1.15μmol·L~(-1),平均浓度为(0.52±0.24)μmol·L~(-1);Chl a的浓度变化范围为0.24~4.76μg·L~(-1),平均值为(1.02±0.81)μg·L~(-1)。总体看来含量最多的个体氨基酸分别为丝氨酸、天门冬氨酸、甘氨酸、丙氨酸、缬氨酸、苯丙氨酸、苏氨酸,它们占DFAA含量的70.7%;而在高Chl a浓度与低Chl a浓度站位间DFAA的组成存在较大差异。本次调查发现DFAA与Chl a浓度间存在一定的相关性(R=0.344,n=42,P0.05)。  相似文献   

6.
浮游植物的分粒级研究是监测浮游植物特征的重要工具,对于深入了解浮游植物动态的作用也不容忽视。本文的研究目的在于揭示长江口邻近海域春秋季不同粒级的浮游植物分布动态,分析浮游植物粒级结构与环境因素以及浮游动物群落结构的关系。通过2010年春季和秋季对粒径分级叶绿素a浓度的现场调查研究发现:春季,浮游植物主要以微型浮游植物占优势;秋季,微微型浮游植物和微型浮游植物共同占优势。相关分析结果表明,温度和富营养化状况是影响微型和微微型浮游植物对总叶绿素a贡献的重要因素。浮游动物的摄食压力可能对小型浮游植物对总叶绿素a的贡献起着重要的作用。  相似文献   

7.
1997年6~8月于山东省海阳市黄海集团公司养虾场,用5个实验围隔研究了对虾池不同粒级浮游生物的呼吸率和初级生产率.结果表明:(1)小型、微型及超微型浮游生物的呼吸率平均分别为0.07,0.38及0.31mg/(dm3·d),占各粒级浮游生物总呼吸率的9%,50%及41%.小型、微型及超微型浮游植物的生产率平均分别为0.04,1.26及0.15mg/(dm3·d),占相应粒级浮游植物总生产率的3%,87%及10%.各粒级浮游生物呼吸率占相应粒级浮游植物生产率的比例为:小型浮游生物175%;微型浮游生物30%;超微型浮游生物207%.(2)小型浮游动物、超微型浮游动物(含细菌)的呼吸率显著高于相应粒级浮游植物呼吸率,微型浮游植物的呼吸率明显高于微型浮游动物呼吸率.不同粒级浮游植物呼吸率的大小顺序为微型、超微型、小型,不同粒级浮游动物呼吸率顺序为超微型(含细菌)、微型、小型.  相似文献   

8.
基于浮游植物流式细胞仪对胶州湾春季浮游植物的研究   总被引:2,自引:2,他引:0  
本文基于浮游植物流式细胞仪Cyto Sub对2014年春季胶州湾浮游植物功能群组成及其与环境因子的关系开展研究。Cyto Sub共检测出6个浮游植物类群,分别是聚球藻、微微型真核浮游植物、隐藻、微型单细胞藻、小型单细胞藻和链状藻。多元统计分析显示胶州湾春季浮游植物可划分为两个群落,群落1主要由湾外站位组成,浮游植物生物量浓度为15.15μg/L(以碳含量计,以下同),以小型单细胞藻、链状藻和微型单细胞藻为主;群落2主要由湾内站位组成,浮游植物生物量浓度为72.83μg/L,以链状藻为主。胶州湾的优势类群为链状藻,其丰度与水温和营养盐浓度呈显著正相关关系。与其他浮游植物粒级研究方法的比较表明,当调查海域优势种为小粒径的链状藻时,该方法能够快速、准确地测量出各个浮游植物类群的粒径参数,从而推算出浮游植物群落的粒级结构。  相似文献   

9.
2016年夏季黄、渤海颗粒有机碳的分布特征及影响因素   总被引:2,自引:1,他引:1  
本文根据2016年6-7月黄、渤海航次获得的调查数据,分析了黄、渤海海域颗粒有机碳(POC)的浓度变化、空间分布特征并结合盐度、叶绿素a、POC/PON、POC/Chl a平面分布特征和相关性分析,探讨了黄、渤海海域POC的来源和影响因素。结果表明:2016年夏季渤海海域POC平均浓度(500.2±226.5)μg/L,北黄海POC平均浓度(358.2±101.5)μg/L,南黄海POC平均浓度(321.0±158.1)μg/L,渤海海域POC浓度高于黄海,整个海域POC浓度表层高于底层。POC的平面分布特征为近岸高,外海低。调查海域表层POC/PON均值为8.89,POC/Chl a均值为182.52;中层POC/PON均值为8.87,POC/Chl a均值为179.56;底层POC/PON均值为9.41,POC/Chl a均值为178.80。黄海海域浒苔衰败对POC/PON与POC/Chl a影响较大。相关性分析结果表明渤海海域盐度、总悬浮物和叶绿素a与POC存在显著的相关性,是影响POC分布的主要控制因素。南黄海除表层POC浓度与盐度、总悬浮物和叶绿素a浓度有很好的相关性外,中层和底层POC浓度与盐度、总悬浮物和叶绿素a浓度不存在显著的相关性。渤海海域POC主要受陆源和浮游植物共同影响,浮游植物是POC的主要贡献者,而黄海海域POC受长江冲淡水、黄海暖流、苏北沿岸流、生物活动和底层沉积物等多种因素影响,其中苏北近岸和青岛外海,有机碎屑为POC的主要贡献者。  相似文献   

10.
2013年夏季黄、渤海颗粒有机碳分布及来源分析   总被引:3,自引:3,他引:0  
本文根据2013年夏季黄、渤海海域航次获得的颗粒有机碳(particulate organic carbon, POC)、叶绿素a(chlorophyll a, Chl a)和总悬浮颗粒物(total suspended particles, TSP)数据,结合同步获得的水文环境参数,综合探讨该区夏季POC时空分布特征,以及在不同温盐深水团中POC的主要影响因素。结果表明:在整个研究区POC的浓度范围为102.3~1850.0 μg/L,平均值为(383.7±269.6) μg/L,分布呈现出近岸高、远海低、表层低、底层高的特征。苏北外浅滩海域和北黄海东北区域的10 m层和底层为POC高值区,苏北外海域受到陆源输入、沿岸流混合作用和浮游植物光合作用的影响,POC上下混合均匀且浓度高;南黄海中部因受黄海环流的影响,水体中浮游植物生产力水平低,POC浓度较低。在垂直分布上,近岸海域受陆源输入和再悬浮影响POC浓度高,上下混合均匀;在南黄海和北黄海中部受到黄海环流和黄海冷水团的控制,浮游植物生产力水平低,POC浓度低。对不同温盐水团中POC的影响因素分析发现,在高温低盐水团中,POC受浮游植物初级生产和陆源输入的共同影响;在温盐适中区真光层海水中,浮游植物的初级生产是POC的主要来源;底层的冷水团区,POC主要来源为上层海水中颗粒物的沉降和底层再悬浮作用。  相似文献   

11.
CHEMTAX analysis of high-performance liquid chromatography(HPLC) pigment was conducted to study phytoplankton community structure in the northern Bering Sea shelf, where a seasonal subsurface cold pool emerges. The results showed that fucoxanthin(Fuco) and chlorophyll a(Chl a) were the most abundant diagnostic pigments, with the integrated water column values ranging from 141 to 2 160 μg/m2 and 477 to 5 535 μg/m2, respectively. Moreover, a diatom bloom was identified at Sta. BB06 with the standing stock of Fuco up to 9 214 μg/m3. The results of CHEMTAX suggested that the phytoplankton community in the northern Bering Sea shelf was dominated by diatoms and chrysophytes with an average relative contribution to Chl a of 80% and 12%, respectively, followed by chlorophytes, dinoflagellates, and cryptophytes. Diatoms were the absolutely dominant algae in the subsurface cold pool with a relative contribution exceeding 90%, while the contribution of chrysophytes was generally higher in oligotrophic upper water. Additionally, the presence of a cold pool would tend to favor accumulation of diatom biomass and a bloom that occurred beneath the halocline would be beneficial to organic matter sinks, which suggests that a large part of the phytoplankton biomass would settle to the seabed and support a rich benthic biomass.  相似文献   

12.
Upwelling occurs on the coast of Java between June and October, forced by local alongshore winds associated with the southeasterly monsoon. This causes variations in phytoplankton community composition in the upwelling zone compared with the surrounding offshore area. Based on pigments analysis with subsequent calculations of group contributions to total chlorophyll a(Chl a) using CHEMTAX, we studied the distribution and composition of phytoplankton assemblages in the subsurface chlorophyll maximum along the south coast of Java and the influence of upwelling. Nineteen phytoplankton pigments were identified using high-performance liquid chromatography, and CHEMTAX analysis associated these to ten major phytoplankton groups. The phytoplankton community in the coastal area influenced by upwelling was characterized by high Chl a and fucoxanthin concentrations, indicating the dominance of diatoms. In contrast, in the offshore area, the Chl a and fucoxanthin concentrations declined to very low levels and the community was dominated by haptophytes represented by 19′-Hexanoyloxyfucoxanthin. Accordingly, microphytoplankton was found to be the major size class in the coastal area influenced by upwelling, while nanophytoplankton was most abundant in the offshore area. Low concentrations of other accessory pigments indicated less contribution from dinoflagellates,prasinophytes, chlorophytes and cryptophytes. Photo-pigment indices revealed that photosynthetic carotenoids(PSCs) were the largest component of the pigment pool, exceeding the proportion of Chl a, with the average PSCTP up to 0.62. These distribution trends can mainly be explained by phytoplankton adaption strategies to upwelling and subsurface conditions by changing species composition and adjusting the pigment pool.  相似文献   

13.
Phytoplankton is a key component in the functioning of marine ecosystems, phytoplankton community structures are very sensitive to their environment. This study was conducted in the central Bohai Sea in the spring and early summer of 2015. Spatial variations in phytoplankton functional groups were examined through high-performance liquid chromatography pigment–CHEMTAX analysis. Results suggested that the phytoplankton biomass (chlorophyll a [Chl a]) in spring was mainly derived from the diatom community and was 3.5-fold higher than that in the summer. Meanwhile, the phytoplankton in the early summer sustained more diverse marker pigments than that in the spring. Despite the overwhelming predominance of microsized phytoplankton in the spring, some smaller phytoplankton (pico- or nanosized), including flagellates, such as prasinophytes, chlorophytes, and cryptophytes, highly contributed to the total Chl a in the summer. Various physico-chemical variables were recorded, and their correlations with phytoplankton density were established by redundancy analysis. Temperature, water stratification, nutrient availability, and even nutritive proportion influenced the succession of phytoplankton functional groups from diatom dominance in the spring to flagellate (mainly haptophytes and prasinophytes) dominance in the early summer. In conclusion, our work comprehensively evaluated the phytoplankton diversity and dynamics in the central Bohai Sea and suggests the need for long-term monitoring for further investigation.  相似文献   

14.
The coastal ecosystems are highly sensitive to climate change and are usually influenced by variations in phytoplankton communities and water physiochemical factors. In the present study, the phytoplankton community, chlorophyll a(Chl a) and their relationships with environmental variables and dimethylsulfide(DMS) and dimethylsulfoniopropionate(DMSP) were investigated in spring 2017(March 24 to April 16) in the East China Sea(26.0°–33.0°N, 120.0°–128.0°E) and southern Yellow Sea(31.0°–36.0°N, 12...  相似文献   

15.
黄海冷水团水域浮游植物群落粒级结构的季节变化   总被引:4,自引:0,他引:4       下载免费PDF全文
根据2006—2007年度4个季节航次的实测资料,分析了黄海冷水团水域浮游植物叶绿素及其粒级结构的时空分布特征及季节变化规律,结果表明,在研究海域30 m以浅叶绿素总量的平均含量从高到低的顺序为:春季的(1.01 mg/m3)、夏季的(0.81 mg/m3)、秋季(0.72 mg/m3)、冬季(0.68 mg/m3);在叶绿素浓度大于1 mg/m3和小于1 mg/m3的区域浮游植物粒级结构差异较大,在整个研究海域,粒径较小的微型和微微型浮游植物对总生物量的贡献始终占主导(65%),粒径较大的小型浮游植物在冬季和春季贡献率相对较高;从季节尺度看,浮游植物的平均粒级指数从大到小的顺序为:春季的(15.47μm),冬季的(11.08μm),秋季的(8.61μm),夏季的(6.52μm);尽管不同季节水文和化学环境差异显著,但是不同粒径浮游植物的贡献率随总生物量的变化表现出一致性的规律。对环境因子与叶绿素分布的相关分析表明,浮游植物的生长在夏季主要受到营养盐来源的限制,冬季主要受到水体混合引起的光照限制,秋季可能受到磷酸盐和水体混合的共同限制。浮游植物粒级结构的分布格局主要是由各组分在不同环境中的资源竞争优势决定的。  相似文献   

16.
2000年秋季(10月21日-11月7日)和2001年春季(4月30日-5月15日)用稀释培养法在黄海和东海测定了微型浮游动物对浮游植物的摄食,结果表明:(1)秋季表层浮游植物叶绿素α(Chl α)的内禀生长率为0.40~0.59 d<'-1>,微型浮游动物对Chl α的摄食率为0.21~0.63 d<'-1>,对Ch...  相似文献   

17.
Phytoplankton dynamics during the northeast monsoon was investigated in the Sulu Sea from algal pigment analysis. We visited the Sulu Sea in February 2000, a mid period of the northeast monsoon, and in November and December 2002, the beginning of the northeast monsoon. SeaWiFS images showed generally low concentrations of surface chlorophyll a (Chl a) during the southwest monsoon and higher concentrations with several peaks during the northeast monsoon. In the beginning of the northeast monsoon, subsurface chlorophyll maxima (SCM) occurred, where vertical variation in class-specific composition as estimated from pigment signatures was prominent. Prochlorococcus, cyanobacteria, prymnesiophytes and crysophytes were important groups above the SCM, and the contribution of cyanobacteria to Chl a became much lower at and below the SCM. Contributions of chlorophytes and prasinophytes to Chl a generally showed maxima near the SCM. This distribution was accompanied by vertical changes in the concentration of photoprotective pigments relative to photosynthetic accessory pigments. During the mid northeast monsoon, the upward supply of nutrients was probably enhanced at some stations due to vertical mixing, and as a consequence diatoms dominated in the upper 100 m water column of these stations, and other eukaryotic flagellates including prymnesiophytes, chrysophytes and cryptophytes were secondary major components of the community. The elevation of Chl a concentration and changes in phytoplankton community during the northeast monsoon likely influence the variation in biological production at higher trophic levels in the Sulu Sea.  相似文献   

18.
The spatial variations of phytoplankton community structure in the Xiamen Western Bay during the summer and autumn cruises in 2001 were investigated based on HPLC analysis of photosynthetic pigments in algal cells and CHEMTAX processing of pigment data.The Chl a concentration reached 18.9 μg/L in the summer and declined to 0.28-2.17 in the autumn,respectively,consistent with the observation of diatom blooms in June.Among the accessory pigments,fucoxanthin was consistently the most abundant,ranging from 0.172 to 8.46 μg/L,with the maximum concentrations in June.19'-hexfucoxanthin and alloxanthin were the other two abundant pigments in the summer and autumn.In addition,19'-butanoyloxyfucoxanthin or peridinin was also important in late autumn.Generally the biomass of all the phytoplankton or each group was higher in the inner part than the mouth of this bay,represented by Chl a.CHEMTAX processing revealed the dominance of diatoms with their contribution of 14.6%-52.5% to the total Chl a,but its importance decreased in the autumn.Cryptophytes and Haptophytes,with an average contribution of 16.9%-31.4% and 12.1%-26.3%,were the other two important groups,especially in the autumn.On the contrary,Dinoflagellates and Chlorophytes were the minor groups,but the former became important sporadically in the autumn.It was suggested that there was distinctive variation in both the phytoplankton community structure and biomass between summer and autumn in the Xiamen Western Bay and the latter was coupled to the changes in temperature and dissolved oxygen.However,the spatial variation of the phytoplankton community structure was not as clear as the trend in the biomass of phytoplankton among all the sites in this bay.  相似文献   

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