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1.
三亚湾浮游动物数量分布及群落特征的季节变化   总被引:4,自引:0,他引:4  
根据三亚湾2005年春、夏、秋和冬季航次的调查资料,分析了这4个季度的浮游动物的种类组成、优势种、群落结构、丰度和生物量的时空变化。经过鉴定共有终生性浮游动物125种,阶段性浮游动物17种,其中毛颚类幼虫和短尾溞状幼虫是各个季度都出现的优势种。三亚湾的浮游动物可以分为河口类群、暖水沿岸类群和广布暖水外海类群。全年浮游动物平均丰度为95.91ind·m-3,浮游动物平均生物量为69.22mg·m-3;浮游动物丰度的季节分布是夏>秋>春>冬,平均生物量的季节分布是秋>夏>春>冬,总体上一般是夏秋季高于冬春季。冬季浮游动物丰度与浮游植物细胞总密度之间没有相关性。  相似文献   

2.
根据2015年夏(8月)、秋(10月)2季在诏安湾及毗邻海域开展的30个站浮游动物监测资料,研究了该海域浮游动物的种类组成、数量分布和多样性.结果显示:共鉴定浮游动物103种和浮游幼体24类,桡足类为绝对优势的类群.优势种有14种,锥形宽水蚤(Temora turbinata)、异体住囊虫(Oikopleura dioica)和强额孔雀水蚤(Parvocalanus crassirostris)是该海域重要的优势种群.生态类群以近岸暖水类群和外海广布类群为主.夏季浮游动物丰度平均为761个/m3,秋季为81个/m3;夏季浮游动物生物量平均为237mg/m3,秋季为52 mg/m3.夏季浮游动物种类数、丰度、生物量及变化幅度均明显高于秋季,夏季湾外浮游动物种类数、丰度、生物量及变化幅度均明显大于湾内,秋季湾外浮游动物种类数、丰度及变化幅度均明显大于湾内,夏、秋季浮游动物种类数和丰度总体分布均呈现由湾内往湾外逐渐增加趋势.夏季浮游动物多样性指数平均为2.46,秋季为3.14.与历史资料比较:本次调查海域浮游动物种类数和平均丰度均有较大幅度升高,但平均生物量有较大幅度下降.  相似文献   

3.
本文根据2004~2006年闽东沿岸(26°30′00″~27°10′00″N,119°59′40″~120°33′00″E)暖水季节6个航次的浮游动物调查资料,比较分析研究了调查区暖水季节的浮游动物种类组成、数量分布和优势种变化.3年调查结果表明,该海域出现的浮游动物种类数分别为151、127和144种,种类组成变化不大,强额孔雀哲水蚤(Pavocalanus crassirostri)、小拟哲水蚤(Paracalanus parvus)等在各航次中都占据明显优势地位;调查期间该海域的浮游动物群落面貌以近岸暖水种和外海热带种为主,这两类生态类群的浮游动物构成本海区的主要优势类群;生物量分布不均匀,总体平面分布趋势是:北高南低,从沿岸到近海,浮游动物生物量随盐度上升而下降;优势种分布极不均匀,聚块现象明显.  相似文献   

4.
1981年7月至1982年6月(每月1次)的周年调查结果表明:福建东山湾浮游动物的种类组成较丰富,已鉴定有176种,其中,暖水种占大多数;以暖水种和暖温带种为优势,分别在夏季和冬季形成总生物量高峰;阶段性浮游幼虫,特别是短尾类溞状幼虫等在夏季总生物量高峰中占有重要地位,以及多样性指数和均匀度的季节变化较显著等,显示了亚热带河口-港湾区浮游动物生态的基本特点。此外,东山湾浮游动物总生物量、种类数及多样性指数等的平面分布规律都较明显。  相似文献   

5.
福清湾及附近海域浮游动物的数量和分布   总被引:3,自引:0,他引:3  
林君卓 《台湾海峡》2008,27(1):58-63
本文分析了2005年10月和2006年5月在福清湾及其附近海域采集的浮游动物样品,结果表明,福清湾已鉴定的浮游动物有64种,10类浮游幼体.分为4个生态类群,包括河口低盐类群,近岸暖温类群,近岸暖水类群和广布外海类群.浮游动物物种多样性指数春季高于秋季.春季浮游动物总个体数均值为(161ind/m3)高于秋季的(83ind/m3),春季生物量均值为(67.7mg/m3)低于秋季的(87.7mg/m3);浮游动物总个体数的平面分布,春季湾内西部水域最高,海坛海峡最少;秋季福清湾东部水域最高,湾内西部水域最少.浮游动物生物量和总个体数的平面分布趋势基本一致.另外还对浮游动物的分布与环境因子的关系进行了分析.  相似文献   

6.
2009-08对乐清湾进行了生物调查。共鉴定浮游动物66种,浮游幼虫15类,分为半咸水河口类群、近海暖温带类群、近海暖水类群和大洋广布类群,其中近海暖水类群占主导地位。Ⅰ型网主要优势种有针刺拟哲水蚤、汤氏长足水蚤、太平洋纺锤水蚤、刺尾纺锤水蚤等;Ⅱ型网主要优势种有针刺拟哲水蚤、强额拟哲水蚤、太平洋纺锤水蚤、刺尾纺锤水蚤、短角长腹剑水蚤、简长腹剑水蚤、小长腹剑水蚤等。浮游动物优势种分布有明显差别,太平洋纺锤水蚤分布仅限于湾顶海区,小长腹剑水蚤密集区也在此区域,其它优势种则分布于乐清湾中部和湾口海区。浮游动物平均生物量为125.05mg/m3,平均丰度为234.00个/m3,数量分布呈现出从湾顶向湾口逐渐降低的趋势。  相似文献   

7.
海南西北部近岸海域浮游动物群落结构   总被引:1,自引:0,他引:1       下载免费PDF全文
为探讨海南西北部近岸海域浮游动物群落结构,根据2016年11月(秋季)、2017年2月(冬季)、2017年5月(春季)和2017年8月(夏季) 4个季节的浮游动物调查数据,对该海域浮游动物的种类组成、优势种及其生态类群、丰度和生物量进行了分析。结果表明:4个季节共鉴定浮游动物7门113属215种(含未定种),秋季最多(134种),冬季(113种)和春季(111种)较为接近,夏季(94种)最少,各季节均以桡足类和水螅水母类占优势。浮游动物种类的空间分布上,秋季和冬季整体呈现近岸和远岸较中间高,而春季和夏季由近岸到远岸呈逐渐增加的变化趋势。浮游动物种类随季节变动不大,但优势种更替较为明显,仅亚强次真哲水蚤(Subeucalanus subcrassus)和肥胖箭虫(Sagitta enflata)为4个季节共有优势种。优势种生态类群主要可分为暖温种、广温广盐种、近岸暖水种、热带暖水种及暖水广布种。浮游动物丰度均值秋季(124. 75 ind./m3)与冬季(152. 43ind./m3)相近,春季(64. 76 ind./m3)和夏季(74. 44 ind./m3)相近,春季、夏季的丰度均值要明显低于秋季、冬季,平面分布上秋季和冬季呈现近岸高远岸低,但不同的是水深在大于20 m以上的海域,冬季平均丰度要稍高于秋季,而春季和夏季呈现近岸低远岸高的变化特点。浮游动物生物量冬季(263. 68 mg/m3)最高,秋季(147. 38 mg/m3)次之,春季(59. 13 mg/m3)和夏季(61. 45 mg/m3)相近,平面分布上与丰度分布趋势相似。  相似文献   

8.
在2011年丰水期(7月)和2012年枯水期(3月),分别对钦州湾的内湾和外湾开展了浮游动物调查,研究了枯水期和丰水期钦州湾浮游动物的种类组成、数量分布和季节变化特征。丰水期和枯水期浮游动物种类数量分别为27种和44种,以优势度指数Y0.02确定的优势种丰水期和枯水期分别为3种和4种。丰水期浮游动物丰度为4.0~133.6ind/m3,平均丰度为50.9ind/m3;枯水期浮游动物丰度为1.2~1 725.0ind/m3,平均丰度为272.2ind/m3。丰水期浮游动物(包含鱼卵仔鱼)生物量为1.7~179.2mg/m3,平均生物量为44.0mg/m3;枯水期浮游动物(包含鱼卵仔鱼)生物量为3.1~3 530.0mg/m3,平均生物量为474.9mg/m3。无论是浮游动物的种类数量、丰度和生物量,均显示出内湾低于外湾的空间分布特征,以及枯水期高于丰水期的变化特征。钦州湾浮游动物的这种季节变化和空间分布特征主要是与浮游植物生物量、贝类养殖、环境的稳定度以及人为干扰等有着密切的关系。  相似文献   

9.
2006年10月、2007年1月、4月及7月对乐清湾海域浮游动物群落的种类组成、优势种、生态类群、水平分布的季节性变化特征进行了调查,分析了浮游动物群落分布与环境因子的关系。结果表明,在调查海域共鉴定出浮游动物82种(包括浮游幼体11种),隶属于15大类,其中秋季为46种、夏季为42种、春季为25种和冬季为16种。乐清湾浮游动物可分为近岸低盐类群、暖水性近海类群、暖温带近海类群和暖水性广布类群4个生态类群,其中近岸低盐类群在全年均占优势,其它类群则呈现明显的季节变化。中华哲水蚤Calanus sinicus、真刺唇角水蚤Labidocera euchaeta、针刺拟哲水蚤Paracalanus aculeatus和背针胸刺水蚤Centropages dorsispinatus为调查海域主要优势种。浮游动物生物量年平均值为82.7mg/m3,其大小依序为:夏季(121.1mg/m3)>秋季(119.2mg/m3)>春季(48.5mg/m3)>冬季(42.2mg/m3);丰度年平均值为82.1个/m3,其大小依序为:夏季(193.4个/m3)>秋季(73.7个/m3)>春季(53.4个/m3)>冬季(9.8个/m3)。相同季节浮游动物生物量和丰度的平面分布趋势类似,季节间则存在明显差异。相关性分析结果表明,浮游动物物种数与水温、盐度、叶绿素a质量浓度和浮游植物细胞密度均呈极显著相关;丰度与水温、叶绿素a质量浓度和浮游植物细胞密度呈极显著相关;生物量与水温、叶绿素a质量浓度呈极显著相关。与历史资料相比,近30a来浮游动物数量呈下降趋势,但群落结构和组成没有发生明显改变。  相似文献   

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根据1990年春季(4~5月)和秋季(10~11月)在舟山群岛附近海域所采集的浮游动物样本及相关环境资料,春季,共鉴定出浮游动物104种,秋季,共鉴定出浮游动物106种;分析了浮游动物生物量和丰度的平面分布、季节变动及其与环境因子的关系。结果表明:春、秋季调查海区的浮游动物种类数基本相同,但种类组成却发生了明显的变化,两个季节浮游动物的共同种只有54种,约50%的种类发生更替,其中桡足类和水螅水母类的种类更替较明显;浮游动物生物量和丰度春季高于秋季;浮游动物种类组成、生物量和丰度的变化与水文环境变化密切相关。  相似文献   

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鳚亚目 4 科 33 属 95 种,鰕虎鱼亚目 5 科 98 属 259 种,刺尾鱼亚目 5 科 11 属 65 种,鲈形目 19亚目 104 科 535 属 1799 种。  相似文献   

12.
Soil-sized particulates have been collected on board ship by a mesh technique from the lower troposphere of the North, Equatorial and South Atlantic Ocean, northern and southern Indian Ocean, South and East China Sea and various coastal localities.Spectrographic analysis reveals that, on average, the particulates have concentrations of Mn, Ni, Co, Ga, Cr, V, Ba, and Sr which are of the same order of magnitude as those in average crustal material. In contrast, the average concentrations of Pb, Sn, and Zn are one order of magnitude higher than those in average crustal material.Within this “world-wide” average there are significant geographical variations in the distributions of Pb, Sn, and Zn which may be related to anthropogenic sources.On the basis of trace-element distributions lower tropospheric soil-sized marine particulates have been divided into four genetic components; local, zonal, inter-zonal, and global. The proportions of these components vary geographically, and each component may have both a natural and an anthropogenic fraction.  相似文献   

13.
Tautog, Tautoga onitis, is an abundant species of fish in estuaries of the northeastern United States. Planktonic tautog larvae are abundant in summer in these estuaries, but there is little information on rates of growth of tautog larvae feeding on natural assemblages of food in the plankton. We examined abundance and growth of larval tautog and environmental factors during weekly sampling at three sites along a nearshore‐to‐offshore transect in Buzzards Bay, Massachusetts, USA during summer 1994. This is the first study of a robust sample size (336 larvae) to estimate growth rates of field‐caught planktonic tautog larvae feeding on natural diets, using the otolith daily‐growth‐increment method. The study was over the entire summer period when tautog larvae were in the plankton. The sampling sites contrasted in several environmental variables including temperature, dissolved oxygen (DO), and chlorophyll a concentration. There was a temporal progression in the abundance of tautog larvae over the summer, in relation to location and temperature. Tautog larvae were first present nearshore, with a pronounced peak in abundance occurring at the nearshore sites during the last 2 weeks in June. Larvae were absent at this time further offshore. From late June through August, larval abundance progressively decreased nearshore, but increased offshore although never approaching the abundance levels observed at the nearshore sites. The distribution and abundance of tautog larvae appeared to be related to a nearshore‐to‐offshore seasonal warming trend and a nearshore decrease in DO. Otoliths from 336 larvae ranging from 2.3 to 7.7 mm standard length had otolith increment counts ranging from 0 to 19 increments. Growth of larval tautog was estimated at 0.23 mm·day?1, and length of larvae prior to first increment formation was estimated at 2.8 mm indicating that first increment formation occurs 3–4 days after hatching at 2.2 mm. Despite spatial and temporal differences in environmental factors, there were no significant differences in growth rates at any of three given sites over time, or between sites. Because larval presence only occurred at a narrow range of temperature (17–23.5 °C) and DO (6.5–9.3 mg·l?1), in situ differences in growth did not appear to be because of differences in larval distribution and abundance patterns relative to these parameters.  相似文献   

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Concentrations of dissolved nutrients (NO3, PO4, Si), germanium species, arsenic species, tin, barium, dimethylsulfide and related parameters were measured along the salinity gradient in Charlotte Harbor. Phosphate enrichment from the phosphate industry on the Peace River promotes a productive diatom bloom near the river mouth where NO3 and Si are completely consumed. Inorganic germanium is completely depleted in this bloom by uptake into biogenic opal. The GeSi ratio taken up by diatoms is about 0·7 × 10?6, the same as that provided by the river flux, confirming that siliceous organisms incorporate germanium as an accidental trace replacement for silica. Monomethylgermanium and dimethylgermanium concentrations are undetectable in the Peace River, and increase linearly with increasing salinity to the seawater end of the bay, suggesting that these organogermanium species behave conservatively in estuaries, and are neither produced nor consumed during estuarine biogenic opal formation or dissolution. Inorganic arsenic displays slight removal in the bloom. Monomethylarsenic is produced both in the bloom and in mid-estuary, while dimethylarsenic is conservative in the bloom but produced in mid-estuary. The total production of methylarsenicals within the bay approximately balances the removal of inorganic arsenic, suggesting that most biological arsenic uptake in the estuary is biomethylated and released to the water column. Dimethylsulfide increases with increasing salinity in the estuary and shows evidence of removal, probably both by degassing and by microbial consumption. An input of DMS is observed in the central estuary. The behavior of total dissolvable tin shows no biological activity in the bloom or in mid-estuary, but does display a low-salinity input signal that parallels dissolved organic material, perhaps suggesting an association between tin and DOM. Barium displays dramatic input behavior at mid-salinities, probably due to slow release from clays deposited in the harbor after catastrophic phosphate slime spills into the Peace River.  相似文献   

18.
Three years of temperature data along two transects extending to 90 m depth, at Palau, Micronesia, show twice-a-day thermocline vertical displacements of commonly 50–100 m, and on one occasion 270 m. The internal wave occurred at a number of frequencies. There were a number of spectral peaks at diurnal and semi-diurnal frequencies, as well as intermediate and sub-inertial frequencies, less so at the inertial frequency. At Palau the waves generally did not travel around the island because there was no coherence between internal waves on either side of the island. The internal waves at a site 30 km offshore were out-of-phase with those on the island slopes, suggesting that the waves were generated on the island slope and then radiated away. Palau Island was thus a source of internal wave energy for the surrounding ocean. A numerical model suggests that the tidal and low-frequency currents flowing around the island form internal waves with maximum wave amplitude on the island slope and that these waves radiate away from the island. The model also suggests that the headland at the southern tip of Palau prevents the internal waves to rotate around the island. The large temperature fluctuations (commonly daily fluctuations ≈10 °C, peaking at 20 °C) appear responsible for generating a thermal stress responsible for a biologically depauperate biological community on the island slopes at depths between 60 and 120 m depth.  相似文献   

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In June 1981, dissolved Zn, Cd, Cu, Ni, Co, Fe, and Mn were determined from two detailed profiles in anoxic Baltic waters (with extra data for Fe and Mn from August 1979). Dramatic changes across the O2H2S interface occur in the abundances of Cu, Co, Fe, and Mn (by factors of ?100). The concentrations of Zn, Cd, and Ni at the redox front decrease by factors between 3 to 5.Equilibrium calculations are presented for varying concentrations of hydrogen sulfide and compared with the field data. The study strongly supports the assumption that the solubility of Zn, Cd, Cu, and Ni is greatly enhanced and controlled by the formation of bisulfide and(or) polysulfide complexes. Differences between predicted and measured concentrations of these elements are mainly evident at lower ΣH2S concentrations.Cobalt proved to be very mobile in anoxic regions, and the results indicate that the concentrations are limited by CoS precipitation. The iron (Fe2+) and manganese (Mn2+) distribution in sulfide-containing waters is controlled by total flux from sediment-water interfaces rather than by equilibrium concentrations of their solid phases (FeS and MnCO3). The concentrations of these metals are therefore expected to increase with prolonged stagnation periods in the basin.  相似文献   

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