首页 | 本学科首页   官方微博 | 高级检索  
相似文献
 共查询到20条相似文献,搜索用时 640 毫秒
1.
1 IntroductionAmphipoda, an order of marine pelagic shell-fish, belongs to class Crustacea, subclass Malacost-raca (Chen and Shi,2002). Species of this ordercan be found all over the world, especially in tropi-cal and subtropical oceans. As fish diets, th…  相似文献   

2.
东海浮游翼足类(Pteropods)数量分布的研究   总被引:10,自引:1,他引:10  
徐兆礼 《海洋学报》2005,27(4):148-154
根据1997~2000年东海海域23°30'~33°00'N,118°30'~128°00'E的4个季节海洋调查资料,运用定量、定性方法,探讨了东海浮游翼足类总丰度的平面分布、季节变化及变化的动力学机制.结果表明,东海翼足类总丰度和出现频率有明显的季节变化,均为秋季最高,夏季次之,春季最低;总丰度在各个季节基本上呈东海南部高于北部、外海高于近海的分布趋势;春季的尖笔帽螺(Creseis acicula)、夏季的锥笔帽螺(Creseis virgula)、秋季的蝴蝶螺(Desmopterus papilio)和冬季的马蹄螔螺(Limacina trochiformis)是导致总丰度季节变化的最主要的种类;冬、春和夏3个季节丰度变化及4季总丰度的变化同表层或10m层水温有非常显著的线性相关关系,与底层温度及盐度的相关关系不显著.夏季翼足类高丰度区位于台湾暖流与黑潮暖流的分支处;从夏季到秋季,翼足类随着台湾暖流向北扩展,并在与长江冲淡水,闽浙沿岸水团,黄海水团等交汇处形成高丰度(大于500×10-2个/m3)和较高丰度(250×10-2~500×10-2个/m3)分布区.水温和海流是影响东海翼足类总丰度分布的主要环境因素.  相似文献   

3.
On the basis of seasonal investigations at 23°30'~33°00'N,118°30'~128°00'E of the East China Sea during 1997~2000,dynamics on the density and diversity of Ostracoda was discussed.Results showed that totally 26 species were identified.The Ostracoda diversity was opposite to the change of its density in most seasons which reflected an uneven assignment of Ostracoda density among its different species.The Ostracoda density was 0.70 ind./m3 in spring,1.72 ind./m3 in summer,2.57 ind./m3 in autumn and 0.90 ind./m3 in winter.Euconchoecia chierchiae in spring and winter,Euconchoecia maimai in summer and Cypridina dentata in autumn were main dominant species in each season.The Ostracoda density did not show an obvious linear relationship with the hydrologic factors in summer and autumn,but was related to the surface salinity in spring and the surface temperature in winter.Its high density areas mainly distributed in the north offshore in all the seasons while in the south offshore in winter and in spring,and the south nearshore in summer and autumn,implied the zooplankton was a typical warm water animal,whose high density distribution in autumn were located in a similar position to Todarodes pacificus,Navodon Septentrionalis,Scomber japonicus and other fishes in the sea,so as to be an important indicator for fishing ground.The main species dominating in Ostracoda now are different from the species twenty years ago probably attributes to global warming.  相似文献   

4.
On the basis of the four-season investigation in 23°30′~33°N and 118°30′~128°E of the East China Sea from 1997 to 2000, the seasonal distribution of Calanus sinicus was studied with aggregation intensity, regression contribution and other statistical methods. It was inferred that C. sinicus’s predominance presented from winter to summer, especially in spring and summer, because its dominance amounted to 0.62 and 0.29 respectively. The percent of its abundance in copepod abundance was 76.71% in summer, greater than 66.60% in spring, greater than 19.02% in winter, greater than 4.02% in autumn. The occurrence frequency in winter and spring was 83.08% and 93.89%, higher than that in summer and autumn, 76.71% and 73.87%. Compared with other dominant species of copepods, C. sinicus’s contribution to the copepod abundance was obviously greater than that of the other species in winter, summer and spring, but smaller in autumn. C. sinicus tended to have an aggregated distribution. The clumping index peaked in summer (50.19), followed in spring (19.60), declined in autumn (13.18) and was the lowest in winter (3.04). The abundance changed in different seasons and areas, relating to temperature but not salinity in spring and autumn, to salinity but not temperature in summer; to neither temperature nor salinity in winter. In spring and summer, its high abundance area was often located in the mixed water mass formed by the Taiwan Warm Current, the Huanghai Sea Cold Water Mass, the coastal water masses and the Changjiang Dilute Water. In spring and autumn, its abundance was affected by the warm current, as well as the runoff from continental rivers affected it in summer. It can be inferred that C. sinicus was adapted to wide salinity and temperature, as a euryhalinous and eurythermous species in the East China Sea.  相似文献   

5.
1IntroductionTunicates(Chordata:Thaliacea)are large pe-lagic gelatinous zooplankton.They can be used as in-dicator species for ocean currents and water bodies(Chen et al.,1980;Chen et al.,1988;Lin,1988,1990;Lin and Zhang,1993;Thompson,1948).They also play…  相似文献   

6.
7.
根据2009年8月至2010年6月4个季度月(夏、秋、冬、春季),对位于北黄海獐子岛附近海域所设的13个站进行的大型底栖动物生态调查所获得的资料,对该海域大型底栖动物的种数、密度和生物量的组成及季节变化进行分析研究,采用Shannon-Wiener指数(H’)、物种丰富度指数(D)和物种均匀度指数(J)分析该该海域大型底栖动物的物种多样性;并研究了该海域的次级生产力和P/B值的空间分布和季节变化。结果表明,北黄海獐子岛附近海域大型底栖动物全年总种数、年平均栖息密度和年平均生物量分别为211种、699.415个/m2和98.927 g/m2。各季度的种数(S)、平均密度D (个/m2)和平均生物量B (g/m2)的季节变化分别为: S春季(121)>S秋季(118)>S冬季(89)>S夏季(87),D春季(794.58)>D秋季(766.92)>D夏季(674.62)>D冬季(561.54),B春季(180.271)>B夏季(107.121)>B秋季(70.824)>B冬季(37.493)。全年物种多样性指数H’值、物种丰富度指数D值和物种均匀度指数J值分别为2.976、4.135和0.707,该海域大型底栖动物的夏季、秋季和春节平均密度季节变化不明显,但冬季明显较少。而平均生物量和种数的季节变化比较明显,春季较高,冬季较低。该海域的平均次级生产力为15.335g(AFDW)/(m2.a),相对较高。P/B值的平均值为1.239。  相似文献   

8.
张翠霞  张武昌  赵楠  肖天 《海洋学报》2011,33(1):127-137
于2006年11月19日至12月23日(秋季)和2007年2月22日至3月11日(冬季)在东海陆架区(25°-33°N,12°-127°30'E)的6个断面(E1-E6)调查分析了浮游生活的寡毛目纤毛虫的生态分布特点.结果表明:秋季纤毛虫丰度为0~1 795个/dm<'3>,生物量(C)为0~2.36 μg/dm<'3...  相似文献   

9.
东海浮游介形类(Ostracods)分布特征   总被引:7,自引:1,他引:7  
徐兆礼 《海洋学报》2006,28(2):101-108
根据1997~2000年东海(23°30'~33°00'N,118°30'~128°00'E)海域四季海洋调查资料,探讨了东海浮游介形类分布特征及与环境的关系.结果表明:东海浮游介形类丰度占浮游动物总丰度的3.47%;春、夏、秋和冬四季平均丰度分别为0.70,1.72,2.57和0.90个/m3;冬春季的短棒真浮萤(Euconchoecia chierchiae),夏季的后圆真浮萤(Euconchoecia maimai)和秋季的齿形海萤(Cypridi-na dentata)分别是各季的主要优势种;夏、秋季介形类总丰度与水文环境因子的线性相关性不显著,春季与表层盐度相关,冬季与表层温度相关.东海北部外海四季均有介形类高丰度区出现,但在东海北部近海长江口及其邻近舟山水域,介形类数量相对较低.在东海南部,冬春季高丰度区位于外海,夏秋季在近海.东海浮游介形类基本上是一大类较为典型的暖水性且具有集群行为的海洋浮游动物.介形类秋季高丰度区和较高丰度区的分布与太平洋褶柔鱼(Todarodes pacificus)、绿鳍马面鲀(Navodon Septentrionalis)、鲐鯵鱼类等渔场的位置基本一致,在渔业上有重要的意义.  相似文献   

10.
On the basis of the data of oceanographic survey in the East China Sea in four seasons during 1997~2000 (23°30′~33°00′N,118°30′~ 128°E), the variation of total biomass and diet biomass of zooplankton and their spatial-temporal distribution and relationship with the fishing ground of Engraulis japonicus are approached and analyzed. The results show that the average biomass is 65.32 mg/m3 in four seasons, autumn (86.18 mg/m3) being greater than summer (69.18 mg/m3) greater than spring (55.67 mg/m3) greater than winter (50.33 mg/m3). The average value of diet zooplankton hiomass is 40.9 mg/m3.The trends of horizontal distribution both in the total biomass and the diet biomass of zooplankton are similar. The high biomass region (250~500 mg/m3) is very limited, only accounting for 1% of the investigation area. Seasonal variation of the biomass is very remarkable in the west and north parts of East China Sea coastal waters (29°30'N,125°E). The horizontal distribution of diet zooplankton depends on the abundance distribution of crustacean. The distribution of diet zooplankton is related to the fishing ground of Engraulis japonicus and the high-density area of young fish and larval. In spring, the central fishing ground of Engraulis japonicus (>100 kg/h) and the high-density area of young fish and larval (>100 individuals per net) are located at the same place of high-density (100~250 mg/m3)area of diet zooplankton in the middle-southern part of East China Sea or the edge of its waters.  相似文献   

11.
Surveys were conducted in four seasons in the eastern Beibu Gulf from July 2006 to November 2007,to determine the ichthyoplankton composition,abundance,as well as environmental factors impacted on their spatiotemporal distributions.The fish eggs and larvae were sorted from 303 zooplankton quantitative samples,in which at least 1 order,60 families,31 genera and 61 species of fish eggs and larvae were identified.The species number was highest in summer whereas lowest in winter.With the most abundant fish egg (the average density was 2.41 ind./m 3),spring was the main spawning season,while the greatest mean density of fish larva was 1.35 ind./m 3 in summer.In the whole year around,fish eggs had the trends to aggregate in the nearshore of Guangxi coast,fish larvae were more abundant in the northern water.Relationships between fish eggs and larvae abundance and environmental factors were analyzed by using the Yield-Density model.The spatiotemporal distribution of ichthyoplankton in eastern Beibu Gulf was closely related to the Chl a concentration,and the optimal temperature,salinity and Chl a were 19.4-21.7 C,31.8-33.1 and 1.5-4.8 mg/m 3,respectively.Additionally,the distribution of fish larvae could be effected by ocean currents in summer and autumn.  相似文献   

12.
On the basis of the data of oceanographic survey in the East China Sea in four seasons during 1997-2000 (23°30'~33°00'N, 118°30'-128°E), the variation of total biomass and diet biomass of zooplankton and their spatial-temporal distribution and relationship with the fishing ground of Engraulis japonicus are approached and analyzed. The results show that the average biomass is 65.32 mg/m3 in four seasons, autumn (86.18 mg/m3) being greater than summer (69.18 mg/m3) greater than spring (55.67 mg/m3) greater than winter (50.33 mg/m3). The average value of diet zooplankton biomass is 40.9 mg/m3. The trends of horizontal distribution both in the total biomass and the diet biomass of zooplankton are similar. The high biomass region (250-500 mg/m3) is very limited, only accounting for 1% of the investigation area. Seasonal variation of the biomass is very remarkable in the west and north parts of East China Sea coastal waters ( 29°30'N,125°E). The horizontal distribution of diet zooplankton depends on the  相似文献   

13.
Samples were collected with a plankton net in the four seasonal cruises during 2006-2007 to study the seasonal variability of the zooplankton community in the southwest part of Huanghai Sea Cold Water Mass (HSCWM, Yellow Sea Cold Water Mass). The spatial and temporal variations of zooplankton species composition, biomass, abundance and biodiversity were examined. A total of 122 zooplankton species and 30 pelagic larvae were identified in the four cruises. Calanus sinicus and Aidanosagitta crassa were the most dominant species, and Themisto gaudichaudi and Euphausia pacifica were widely distributed in the HSCWM area. The spatial patterns of non-gelatinous zooplankton (removing the high water content groups) were similar to those of the total zooplankton biomass in autumn, but different significantly in the other three seasons. The seasonal means of zooplankton biomass in spring and summer were much higher than that in autumn and winter. The total zooplankton abundance averaged 283.5 ind./m~3 in spring (highest), 192.5 ind./m~3 in summer, 165.5 ind./m~3 in autumn and 65.9 ind./m~3 in winter (lowest), and the non-gelatinous groups contributed the most total abundance. Correlation analysis suggests that the non-gelatinous zooplankton biomass and abundance had a significant positive correlation in the whole year, but the relationship was insignificant between the total zooplankton biomass and abundance in spring and summer. The diversity index H of zooplankton community averaged 1.88 in this study, which was somewhat higher than historical results. Relatively low diversity in summer was related to the high dominance of Calanus sinicus, probably due to the strongest effect of the HSCWM in this season.  相似文献   

14.
根据2020年8月至2021年5月对渤海西南部浮游动物调查的4个航次数据,分析该海域水螅水母、栉水母群落结构和季节变化特征,讨论了环境因子对小型水母丰度的影响。研究发现,渤海西南部小型水母种类组成和丰度分布存在季节变化,全年调查共发现小型水母13种,11种水螅水母、2种栉水母;春、夏、秋、冬该海域水母种数分别为4种、9种、7种和2种,丰度均值分别为30.74 ind./m3、30.78 ind./m3、12.08 ind./m3、0.57 ind./m3;优势种为嵊山秀氏水母(Sugiura chengshanense)、八斑芮氏水母(Rathkea octopunctata)、锡兰和平水母(Eirene ceylonensis)、半球美螅水母(Clytia hemisphaerica)、球型侧腕水母(Pleurobrachia globosa),优势种季节更替率平均为91.67%,呈现明显季节演替。水温和盐度是影响渤海西南部小型水母丰度季节变化的主要环境因子,春季水温回升及适宜营养盐含量促进小型水母生长繁殖,夏季桡足类为小型水母提供了丰富的饵料促进其生长,秋季群落主要受盐度的影响。根...  相似文献   

15.
The seasonal size structure and spatial abundance distributions of Euphausia pacifica populations were investigated in the central part of southern Yellow Sea from August 2009 to May 2010.The abundance and biomass of E.pacifica were higher in spring and summer,and lower in autumn and winter.The mean abundance and biomass(calculated by carbon)were 74.94 ind./m~3 and 8.23 mg/m~3,respectively.Females with total length(TL)ranging between 10 and 19 mm in summer had a substantial contribution to the population biomass,whereas larvae of TL of 3–7 mm in spring were the main contributor to the population abundance.The sex ratio(female:male)showed a female bias in four seasons.Its value peaked in summer,and then decreased in autumn,spring,and winter successively.Cohort analysis revealed that the length-frequency distribution of E.pacifica could be characterized as one group with large animals(mean TL12 mm)accompanied by one or two subgroups of small individuals(mean TL7 mm).Regarding the spatial distribution,juveniles and adults of E.pacifica tend to concentrate in relatively deep water with low temperature(~11℃)and high salinity(32),whereas its larvae showed more abundance in inshore water with rich chlorophyll a,low salinity(32),and warm temperature(11℃),especially in summer and autumn.Associations changed seasonally between stage-specific abundance and environmental factors.  相似文献   

16.
于2009年7月20日至8月16日(夏季),2010年1月6日至30日(冬季),2010年10月26日至11月24日(秋季)和2011年4月30日至2011年5月24日(春季)在南海北部调查了微型异养鞭毛虫的生态分布特点。结果表明:春、夏、秋、冬的微型异养鞭毛虫丰度分别为0.05×103~1.93×103,0.03×103~2.65×103,0.09×103~2.05×103和0.04×103~1.84×103 cells/mL,生物量(以碳计)分别为0.56~19.50,0.04~24.11,0.96~14.80和0.29~22.26 μg/L。4个季节的微型异养鞭毛虫丰度均以2~5 μm粒级的为主,其所占比例超过65%,10~20 μm粒级所占比例通常低于10%。在水平分布上,微型异养鞭毛虫的丰度随离岸距离的增加逐渐降低;在垂直分布上,微型异养鞭毛虫的丰度随深度的增加逐渐降低,但夏季微型异养鞭毛虫丰度的高值多出现在次表层叶绿素a极大值层(DCM层)。微型异养鞭毛虫的丰度分布受到多重因素的交互影响,并且其所受调控模式在不同季节存在差异:春季和秋季微型异养鞭毛虫主要受下行调控;夏季微型异养鞭毛虫主要受上行调控;冬季上行和下行调控对微型异养鞭毛虫的影响相近。  相似文献   

17.
Ecological adaptation and ecological groups of pelagic ostracods were examined in the East China Sea (23°30′-33°00′N, 118°30′ -128°00′E), in relation to temperature and salinity. The data were collected in four surveys conducted from 1997 to 2000. The density, yield density, or negative exponent models were used to determine the optimal temperature and salinity of water for the thriving growth of pelagic ostracods. Thereafter, ecological groups and potential distribution patterns of pelagic ostracods were determined based on the predicted parameters such as optimal temperature and salinity, consulting the geographic distribution. The analytical results indicate that, among the numerical dominant pelagic ostracods in the East China Sea (ECS), Euconchoecia aculeata, E. elongata, E. chierchiae, E. maimai, and Cypridina dentata, etc. are offshore subtropical water species. These species are widely distributed in the area, and they can be brought by the warm current to north offshore during spring and winter. The predicated optimal temperature (OT) and optimal salinity (OS) for Paraconchoecia decipiens, P. echinata, P. spini- fera, P. oblonga, Conchoecia magna and Porroeciaporrecta are all greater than 25℃ and 34 separately. These species are mainly distributed in the waters of the Kuroshio, the Taiwan Warm Current, and the Taiwan Strait, and therefore are designated as ocean- ic tropical water species. On the other hand, Pseudoconchoecia concerttrica is considered as offshore subtropical water species based on its geographical distribution although its OT is 19℃. The other species, though their OSs are approximately 34 and with OTs ranging from 20° to 25℃, are considered as offshore subtropical water species because they were found to be widely distributed from the South China Sea to the East China Sea.  相似文献   

18.
厦门海域大型底栖动物两个优势种的发现及其数量分析   总被引:2,自引:0,他引:2  
根据2004年在厦门海域22个取样站获得的4个季度的大型底栖动物调查数据以及历史资料,发现软体动物双壳纲的光滑河蓝蛤(Potamocorbula laevis)是厦门海域大型底栖动物群落的局部、季节性优势种;环节动物多毛纲的昆士兰稚齿虫(Prionospio queenslandica)是局部优势、周年常见种。春季和夏季,光滑河蓝蛤在鼓浪屿附近海域的密度分别为1098.8个/m2和1720.0个/m2,夏季,在曾厝安附近海域的密度为3773.3个/m2,均占所在海域大型底栖动物密度的50%以上,而冬季和秋季,很少采集到光滑河蓝蛤。夏季和秋季,昆士兰稚齿虫在鼓浪屿附近海域的密度分别为871.3个/m2和232.5个/m2;从季度平均值看,昆士兰稚齿虫密度和生物量夏季最高,秋季次之,春季第三,冬季最低;昆士兰稚齿虫的优势度没有光滑河蓝蛤高,但在整个厦门海域均有一定的密度和生物量。本研究分析了光滑河蓝蛤、昆士兰稚齿虫数量与有机质、硫化物含量、水动力等环境因子之间的关系。  相似文献   

19.
2011年春、夏季黄、东海水团与水文结构分布特征   总被引:7,自引:5,他引:2  
根据2011年春季(4月)夏季(8月)两个航次调查的CTD温盐资料,获得观测期间黄、东海主要水团特征:(1)夏季黄海冷水团10℃等温线在黄海海域中部30m以深,影响范围西至122°E南至34°N,最低温度为6.2℃,比气候态平均冷水团温度低约2℃;(2)夏季冲淡水以长江口为中心,呈半圆形向外扩展,并无明显NE转向,30.00等盐线在32°N断面上东至124°E,南至29.5°N,扩展范围与往年相比偏西1°左右,而在SE方向较往年有明显延伸扩展。水文结构特征为:(1)春季,温跃层主要在南黄海中部以西,跃层强度仅为0.10—0.40℃/m;密跃层主要在长江口以东,跃层强度0.20—0.30kg/m4;(2)夏季,温跃层强度最高值在长江口东北,跃层强度达到2.41℃/m,上界深度5.5m,厚度2.5m;黄海温跃层强度普遍强于东海,主要是冷水团区域表底显著的温度差异造成;密跃层强度高值区在33°N断面西侧海区,强度达到1.38kg/m4,上界深度5.5m,厚度约为1.5m;沿长江冲淡水舌轴方向的密跃层强度为0.30—0.60kg/m4,自西向东逐渐减弱。  相似文献   

20.
福建宁德晴川湾海域水母群落特征及其潜在生态风险分析   总被引:1,自引:1,他引:0  
根据2018年1月(冬季)、4月(春季)、7月(夏季)和11月(秋季)在宁德晴川湾海域浮游动物调查的4个航次数据,分析该海域水母群落结构和季节变化特征,讨论了水母对宁德晴川湾核电站安全生产潜在的风险。结果表明:宁德晴川湾海域水母类种类组成、丰度分布和优势种演替均存在季节变化,春、夏、秋、冬该海域水母种数分别为7种、16种、9种和3种,丰度均值分别为(45.48±8.24)个/m3、(50.26±12.13)个/m3、(3.68±1.91)个/m3和(0.18±0.07)个/m3,首要优势种分别为印度感棒水母(Laodicea indica)、球型侧腕水母(Pleurobrachia globosa)、双生水母(Diphyes chamissonis)和耳状囊水母(Euphysa aurata),优势种类组成季节演替明显。春季和夏季水母的丰度与浮游动物的总丰度呈极显著相关,在夏季其数量与浮游动物中的桡足类数量呈显著相关(p<0.05,R=0.363),秋季和冬季水母群落的丰度主要受盐度的影响。秋、冬季该海域盐度、温度均较低,水母的丰度也较低。根据宁德晴川湾核电站附近海域水母分布特征,以水母丰度50 个/m3为风险阈值考虑,夏季为潜在高风险季节,需重点关注距核电站冷源取水口5~20 km海域;其次是春季,重点关注距取水口2.5~5 km海域;秋季和冬季基本不会因水母而引起核电站冷源安全事故发生。  相似文献   

设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号