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1.
福建湄洲湾浮游植物的分布   总被引:3,自引:2,他引:3  
林金美  杨清良 《台湾海峡》1991,10(2):122-126
本文根据1984年福建海岸带调查及1988年港湾志调查所获的样品资料,分析报道了湄洲湾海域浮游植物的种类组成、数量时空分布及其影响因子,文中共鉴定浮游植物127种,细胞总量分布为5月出现主高峰,8月为次高峰,2月为最低谷,其数量分布和季节变化与水温、盐度、海流和季风的影响密切相关。  相似文献   

2.
厦门西海域浮游植物的生态   总被引:7,自引:5,他引:7  
林金美 《台湾海峡》1991,10(4):345-350
本文分析、鉴定了于1989年4月至1990年3月,逐月采自厦门西海域的7个站位的112份样品。结果表明,本海区浮游植物共129种,其中蓝藻1种,硅藻105种,金藻1种,甲藻22种。按其分布特点,可分为两大生态类群:广布种占57%,暖水种占43%。浮游植物细胞总量的季节分布是8月出现主高峰,5月为次高峰,3月是最低谷期。此外,对其数量分布和季节变化与海洋环境因素的关系,进行了较详细的讨论。  相似文献   

3.
The results of a phytoplankton survey conducted in coastal waters off western Ireland in 1980/1981 are reported. Surface values of temperature, salinity, NO3N, PO4P, Si, total N, total P and chlorophyll a (Chla) collected at 6 stations during 14 cruises are presented along with the species composition of the net phytoplankton.The spring bloom occurred in late April and was dominated by diatoms. Between April and July further diatom blooms occurred. In July and August dinoflagellates were dominant. This change was associated with the stratification of offshore water and low concentrations of Chla and nutrients. In Autumn large blooms of Ceratium tripos were found; it is suggested that the cause was heavy freshwater runoff. In autumn and winter some warm water oceanic species (e.g. Oxytoxum scolopax) occurred.  相似文献   

4.
夜光藻(Noctiluca scintillans)藻华是我国近海常见的生态灾害,其暴发机制尚不明确。为探究营养条件在其形成机制中的作用,本文分析了几种常见饵料藻与同海域硅藻培养下夜光藻的种群增长,同时探究模拟海水混合与营养盐水平对其种群增长的影响。结果发现,不同饵料藻培养下,夜光藻种群增长有着显著差异,其中亚心形扁藻(Platymonas subcordiformis)组中夜光藻的平均增长率为(0.151±0.001)d?1,远高于其他饵料藻。海水混合对夜光藻种群增长有一定的促进作用,模拟海水混合时,部分实验组中夜光藻增长率显著高于静置实验组,其中微小海链藻(Thalassiosira minima)培养下的夜光藻种群增长率为(0.136±0.001)d?1,远高于除亚心形扁藻以外的其他实验组。随着营养盐水平的增加,与亚心形扁藻共培养的夜光藻种群增长出现明显的先增强后减弱的趋势,拟合结果表明,其种群增长符合Boltzmann模型,并与营养盐水平相关。结果表明,海水混合与营养盐输入引起的平潭海域微藻的快速繁殖在当地夜光藻藻华的形成机制中可能起着重要的作用。  相似文献   

5.
福建沿岸海域主要赤潮生物的生态学特征   总被引:5,自引:0,他引:5  
许翠娅  黄美珍  杜琦 《台湾海峡》2010,29(3):434-441
福建沿岸海域是中国的赤潮多发海区之一.据统计,1962~2008年间,福建沿岸海域共发生赤潮180起以上,潜在的赤潮生物有124种,已经引发过赤潮的种类有27种.本文对中肋骨条藻(Skeletonema costatum)、角毛藻(Chaetocerosspp.)、夜光藻(Noctiluca scintillans)、东海原甲藻(Proro-centrum donghaiense)、米氏凯伦藻(Karenia mikimotoi)、裸甲藻(Gymnodinium spp.)和球形棕囊藻(Phaeocystis globosa)等福建沿岸海域主要赤潮生物的生态学特征和发生原因进行了分析和探讨,评述了福建沿岸海域赤潮发生的特点.福建沿岸海域引发赤潮频率最高的赤潮生物是夜光藻,米氏凯伦藻造成的水产养殖损失最大.其赤潮多发季节在春夏季的4~7月.其赤潮多发区主要分布在3个区域:宁德沿岸海域(以四礵列岛为中心)、厦门西港海域和平潭沿岸海域.对福建沿岸海域几种主要赤潮生物的研究表明,赤潮的发生与水温、盐度、气象、水动力、营养盐等环境条件密切相关.  相似文献   

6.
The dynamics of phytoplankton abundance with seasonal variation in physicochemical conditions were investigated monthly at 10 stations around the Chagwi-do off the west coast of Jeju Island, Korea, including inshore, middle shore, and offshore in the marine ranching area from September 2004 to November 2005. Water temperature varied from 12.1 to 28.9°C (average 18.8°C), and salinity from 28.9 to 34.9 psu (average 33.7 psu). The chlorophyll a concentration was 0.02-2.05 μg L1 (average 0.70 μg L1), and the maximum concentration occurred in the bottom layer in April. A total of 294 phytoplankton species belonging to 10 families was identified: 182 Bacillariophyceae, 52 Dinophyceae, 9 Chlorophyceae, 12 Cryptophyceae, 6 Chrysophyceae, 4 Dictyophyceae, 13 Euglenophyceae, 6 Prymnesiophyceae, 5 Prasinophyceae, and 5 Raphidophyceae. The standing crop was 2.21-48.69x104 cells L1 (average 9.23x 104 cells L1), and the maximum occurred in the bottom layer in April. Diatoms were most abundant throughout the year, followed by dinoflagellates and phytoflagellates. A phytoplankton bloom occurred twice: once in spring, peaking in April, and once in autumn, peaking in November. The spring bloom was represented by fourChaetoceros species andSkeletonema costatum; each contributed 10–20% of the total phytoplankton abundance. The autumn bloom comprised dinoflagellates, diatoms, and phytoflagellates, of which dinoflagellates were predominant.Gymnodinium conicum, Prorocentrum micans, andP. triestinum each contributed over 10% of the total phytoplankton abundance.  相似文献   

7.
Nutrient regeneration and oxygen consumption after a spring bloom in Funka Bay were studied on monthly survey cruises from February to November 1998 and from March to December 1999. A high concentration of ammonium (more than 4 μmol l−1) was observed near the bottom (80–90 m) after April. Phosphate and silicate gradually accumulated and dissolved oxygen decreased in the same layer. Salinity near the bottom did not change until summer, leading to the presumption that the system in this layer is semi-closed, so regenerated nutrients were preserved until September. Nitrification due to the oxidation of ammonium to nitrate was observed after June. Nitrite, an intermediate product, was detected at 4–7 μmol L−1 in June and July 1999. Assuming that decomposition is a first order reaction, the rate constant for decomposition of organic nitrogen was determined to be 0.014 and 0.008 d−1 in 1998 and 1999, respectively. The ammonium oxidation rate increased rapidly when the ambient ammonium concentration exceeded 5 μmol L−1. We also performed a budget calculation for the regeneration process. The total amount of N regenerated in the whole water column was 287.4 mmol N m−2 in 4 months, which is equal to 22.8 gC m−2, assuming the Redfield C to N ratio. This is 34% of the primary production during the spring bloom and is comparable to the export production of 25 gC m−2 measured by a sediment trap at 60 m (Miyake et al., 1998).  相似文献   

8.
2009年2—12月间在胶州湾大沽河口邻近海域的逐月现场调查中,利用垂直拖网研究了海月水母碟状体和水母体的时空分布情况以及对其它浮游动物类群的影响,并探讨了海月水母的生态适应性。结果表明:海月水母的碟状体4月份开始在胶州湾出现,并且丰度逐渐增加,到6月份达到最高峰。海月水母的水母体集中在7月份大量出现。碟状体和水母体高峰期的月平均丰度分别为2.9和1.3ind/m3。碟状体开始出现时的水温平均为11.5℃,数量高峰期的水温为20.6℃,而水母体高峰期的水温为25.2℃。该海域的浮游动物总丰度(不含夜光虫)在5—7月份有个高峰期,其中5月份最高值为486.9ind/m3。7月份海月水母高峰期,浮游动物的丰度没有明显下降,两者丰度的地理变化之间也没有显著的相关性。但是通过对2006—2010年间的浮游动物各类群丰度对比,2009年海月水母暴发时夜光虫和桡足类春季丰度高值显著低于其它年份。  相似文献   

9.
In April 1996, a massive algal bloom of the coccolithophorid Gephyrocapsa oceanica developed in both Chita Bay and Atsumi Bay which comprise the bay known as Mikawa Bay of Japan. It was the first record of such a bloom in this area. In Chita Bay, the bloom persisted until the middle of May, however in Atsumi Bay, it remained until early June. From the analysis of salinity, water temperature, and current velocity and direction data, it is considered that the following mechanism accounts for the occurrence and maintenance of the bloom: Before the bloom, the standing crop of phytoplankton was poor, resulting in relatively rich nutrients throughout the bay. Thereafter, with the influx of oceanic water into Mikawa Bay, high salinity occurred firstly in Chita Bay. Under these hydrographic conditions, the bloom occurred first in Chita Bay, and extended throughout the bay with the clockwise circulation of water into Atsumi Bay. In Chita Bay, the bloom was influenced by rainfall and G. oceanica flowed out from this area. Whereas, in Atsumi Bay, the bloom persisted for longer due to the clockwise circulation and another influx of oceanic water.  相似文献   

10.
The seasonal abundance of the dominant dinoflagellate, Ceratium fusus, was investigated from January 2000 to December 2003 in a coastal region of Sagami Bay, Japan. The growth of this species was also examined under laboratory conditions. In Sagami Bay, C. fusus increased significantly from April to September, and decreased from November to February, though it was found at all times through out the observation period. C. fusus increased markedly in September 2001 and August 2003 after heavy rainfalls that produced pycnoclines. Rapid growth was observed over a salinity range of 24 to 30, with the highest specific rate of 0.59 d−1 measured under the following conditions: salinity 27, temperature 24°C, photon irradiance 600 μmol m−2s−1. The growth rate of C. fusus increased with increasing irradiance from 58 to 216 μmol m−2s−1, plateauing between 216 and 796 μmol m−2s−1 under all temperature and salinity treatments (except at a temperature of 12°C). Both field and laboratory experiments indicated that C. fusus has the ability to grow under wide ranges of water temperatures (14–28°C), salinities (20–34), and photon irradiance (50–800 μmol m−2s−1); it is also able to grow at low nutrient concentrations. This physiological flexibility ensures that populations persist when bloom conditions come to an end.  相似文献   

11.
夜光藻的不等分裂   总被引:2,自引:1,他引:2  
杞桑  李大勇 《海洋与湖沼》1994,25(2):158-161
1993年3月26日在大鹏湾进行赤潮调查时,对所采获的夜光藻进行室内培养实验。结果观察到夜光藻在无性繁殖时的一种不等分裂方式,而且在分裂过程中食物泡没有消失。认为这种分裂方式对于夜光藻种群在特定条件下的增长可能更有效和迅速。  相似文献   

12.
2013年春季崂山湾浮游植物群落及其环境控制   总被引:4,自引:0,他引:4  
2013 年春季(3、4、5 月)对崂山湾海域浮游植物群落及其理化环境进行了3 个航次的调查研究。共鉴定浮游植物40 属75 种, 硅藻是调查区主要的浮游植物类群; 浮游植物细胞丰度平均为1.27×106个/m3,3 月份的平均丰度显著高于4、5 月份(P<0.01); 优势种主要为冰河拟星杆藻(Asterionopsis glacialis)、加拉星平藻(Asteroplanus karianus)、密联角毛藻(Chaetoceros densus)和夜光藻(Noctiluca scintillans), 浮游植物群落演替明显, 由3 月份硅藻控制逐步过渡到4、5 月份硅/甲藻共同控制; 相对较低的硝酸盐水平是导致4、5 月份浮游植物丰度显著低于3 月份的主要原因; 物种–环境数据的冗余分析(RDA)结果显示, 温度、硝酸盐含量是控制崂山湾春季浮游植物分布的重要环境因子。  相似文献   

13.
2000年秋季渤海的网采浮游植物群落   总被引:19,自引:0,他引:19  
孙军  刘东艳 《海洋学报》2005,27(3):124-132
研究了2000年秋季覆盖渤海60个测站的网采浮游植物物种及其群落特征,共发现浮游植物3门35属64种(不包括未定名物种).物种主要以硅藻为主,但甲藻在群落中的比重也很明显,在个别站位上会成为优势类群.优势种主要为偏心圆筛藻、三角角藻、浮动弯角藻等,其中的偏心圆筛藻、浮动弯角藻、布氏双尾藻、梭状角藻和叉状角藻是秋季渤海浮游植物的关键种.细胞丰度的平面分布由浮游硅藻的分布决定,其高值区分布在渤海中北部、渤海湾南部和渤海海峡南部.浮游甲藻在渤海湾北部存在高值区.由于渤海环流的影响在渤海中北部存在浮游植物群落的交错区,此区物种丰富度高、多样性水平高和细胞丰度高.秋季渤海浮游植物群落物种丰富度、Shannon-Wiener多样性指数和均匀度的高值区在渤海中部,但整个秋季浮游植物群落的多样性程度是较低的.  相似文献   

14.
北黄海典型水域春夏季浮游植物的昼夜变化   总被引:1,自引:0,他引:1  
根据黄海西北部2006年夏季3个连续站和2007年春季1个连续站垂直分层拖网的调查资料,研究了黄海西北部典型海区浮游植物的昼夜垂直变化.夏季共检出浮游植物79种,主要优势种为旋链角毛藻Chaetoceros curvisetus、梭角藻Ceratium fusus、三角角藻Ceratium tripos和具槽帕拉藻Paralia sulcata;春季检出51种,主要优势种为浮动弯角藻Eucampia zodiacus、具槽帕拉藻和尖刺伪菱形藻Pseudo-nitzschia pungens.夏季L01站受潮汐的影响各水层低潮期浮游植物细胞丰度高于高潮期,垂直分布趋势为表层细胞丰度最高,底层最低.而由于底栖硅藻的细胞再悬浮作用夏季L02、L03站和春季L02站底层细胞丰度高于表层,但各水层细胞丰度的昼夜变化相对较平缓.  相似文献   

15.
吴瑞贞  林端  马毅 《台湾海峡》2007,26(4):590-595
本文根据1980~2004年的南海历次夜光藻赤潮事件资料,对这些赤潮事件在时间和空间的分布特征以及赤潮持续时间进行了分析;发现了夜光藻赤潮在1996年后被其它种类赤潮所更替的现象,并初步探讨其原因;统计、分析了夜光藻赤潮发生前后水文气象要素的变化范围和演变特征,提出了南海夜光藻赤潮的适温范围.  相似文献   

16.
The monthly distribution of zooplankton communities in Han River estuary was investigated at two stations from July 1998 to June 1999. Monthly mean abundance of total zooplankton varied remarkably, with the range from 20 indiv.·m-3 to 19,600 indiv.·m-3. During the study period, dominant species of zooplankton community were dinoflagellateNoctiluca scintillans, copepodsParacalanus indicus, Paracaanus crassirostris, Acartia hongi, Acartia ohtsukai, and meroplanton cirriped larvae. According to tidal states, relative high abundance occurred at high tide without regard to season. The temporal distribution of abundance implied that the reduced salinity probably limited the zooplankton populations and the fluctuations of salinity were an important factor in the variation of abundance. However, the results of salinity tolerance test shows that the variations in salinity do not directly influence the decrease of abundance. This study shows that the relatively high abundance of zooplankton near high tide seems to be related with the expansion of abundant zooplankton inhabiting Incheon coastal waters through tidal currents.  相似文献   

17.
The raphidophyte Chattonella and the bacillariophyte Skeletonema are representative bloom-causing organisms in the Ariake Sea, Japan. Changes in their abundance were monitored to clarify the role of river discharge in the red tides caused by these organisms in the innermost area of the sea. In late June 2010, heavy rain occurred and subsequently river discharge increased. A Chattonella bloom occurred after heavy rain on July 5, although Chattonella abundance was very low (<1?cell?ml?1) before the heavy rain (June 29). Maximum cell density reached 4.2?×?103?cells?ml?1 at the surface. Thus, the bloom developed as the river plume extended in the estuary. During the course of extension of the river plume, the Chattonella population rapidly developed using the nutrients supplied by the river. Just after the Chattonella bloom, heavy rain occurred again and a very large quantity of river water flowed into the estuary. Consequently, the salinity of the surface decreased to 5 in the study area on July 16. Chattonella did not migrate to the surface probably because of the overlying low-salinity water; Chattonella formed a thin layer (20–50?cm in thickness) at the depth where salinity was 10. However, a Skeletonema population developed at the surface. On July 20, Skeletonema density at the surface exceeded 105?cells?ml?1. With the decline of the Skeletonema abundance due to the nutrient limitation, Chattonella again formed bloom probably using deep-nutrient pool by their vertical migration behavior. The present study clearly demonstrates that the Chattonella can form dense bloom after the heavy rain. The seed population awaiting the river discharge is probably essential to the rapid development of Chattonella in the estuary.  相似文献   

18.
獐子岛海域浮游甲藻及有毒微藻的年际变化研究   总被引:1,自引:0,他引:1  
2011—2017年,每月一次,通过对獐子岛海域29个站位浮游甲藻的调查,探究浮游甲藻种群结构的年际变化特征。发现了浮游甲藻19属47种,其中原多甲藻属(Protoperidinium)种类最多为17种,鳍藻属(Dinophysis)和角藻属(Ceratium)各4种,裸甲藻属(Gymnodinium)和原甲藻属(Prorocentrum)各3种,膝沟藻属(Gonyaulax)和环沟藻属(Gyrodinium)各2种,原角藻属(Protoceratium)、夜光藻属(Noctiluca)和凯伦藻属(Karenia)等均为1种。浮游甲藻种类数呈逐年递增,季节上呈现夏季和秋季较多,春季次之,冬季最少。浮游甲藻密度变化区间为(2.376—339.323)×10~4/m~3,平均密度为65.479×10~4/m~3,亦呈现夏季和秋季较高,春季次之,冬季最低,但密度呈逐年递减,且不同站位间差异较大。调查期间,不同季节优势种类有相同性,如三角角藻(Ceratium tripos)、梭角藻(Ceratiumfusus)和亚历山大藻(Alexandriumsp.)为四季优势种,但亦有差异,如鳍藻(Dinophysisspp.)和夜光藻(Noctilucascintillans)为夏季和秋季优势种,网状原角藻(Protoceratium reticulatum)为冬季和春季优势种。优势种中有毒微藻呈逐年增多趋势,有毒的链状裸甲藻(Gymnodiniumcatenatum)、米氏凯伦藻(Kareniamikimotoi)和具尾鳍藻(Dinophysiscaudata)等非优势种在獐子岛海域首次发现。浮游甲藻群落的香农-威纳指数、丰富度指数、均匀度指数均为秋季夏季春季冬季,呈逐年递增趋势。近年来,獐子岛海域浮游生物群落甲藻化和有毒化趋势明显,可能与海水营养盐比例失衡、海水酸化、北黄海冷水团、双壳贝类大规模养殖等有关。  相似文献   

19.
在2011年10月(代表秋季)和2012年4月(代表春季)对大亚湾海域浮游植物的种类组成、优势种和丰度进行了观测,实测数据采用Surfer 8.0软件进行绘图和插图制作,用SPSS 17.0软件进行主成分因子分析(PCA),同时用多元逐步回归分析方法,以主成分得分为解释变量,研究环境因子对浮游植物丰度的影响,以筛选出影响该海区浮游植物丰度分布的重要环境因子,并讨论了浮游植物丰度分布特征与环境因子的相关性及影响浮游植物分布的主要因素。分析结果表明:2个航次观测获得的浮游植物有4门31属51种(包括变型与变种),其中硅藻门的占优势,甲藻门的次之,黄藻与着色鞭毛藻门的较少。秋季浮游植物优势种有赤潮异湾藻Heterosigma akashiwo、中肋骨条藻Skeletonema costatum、刚毛根管藻Rhizosolenia setigera、尖刺菱形藻Nitzschia pungens和菱形海线藻Thalassionema nitzschioides;春季浮游植物优势种有叉状角藻Ceratium furca、微小原甲藻Prorocentrum minimum、梭角藻Ceratium fusus和三角角藻Ceratium tripos。秋季浮游植物丰度为1.56×104~8.03×104个/dm3,平均值为3.95×104个/dm3;春季浮游植物丰度为1.21×104~4.70×105个/dm3,平均值为7.84×104个/dm3。水温、pH值、磷酸盐和总磷是影响大亚湾海域浮游植物分布的主要因素。  相似文献   

20.
烟台套子湾海域秋季浮游植物群落的初步研究   总被引:1,自引:0,他引:1  
宁璇璇  纪灵  王刚  夏炳训  丁琳 《海洋通报》2011,30(4):425-429
根据2010年11月的调查数据,对套子湾海域浮游植物的群落结构进行了初步研究。共鉴定浮游植物3门24属43种,主要为温带近岸性和广布性种。其中,硅藻门20属35种,占总种数的81.40%,以圆筛藻属(Coscinodiscus) 和角毛藻属(Chaetoceros)的种类为主;甲藻类3属7种,占总种数的16.28%,由角藻属(Ceratium)、多甲藻属(Peridinium)及夜光藻(Noctiluca scintillans)组成;金藻门只有小等刺硅鞭藻(Dictyocha fibula)一种。浮游植  相似文献   

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