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1.
南海南部上层水体中多孔放射虫的组成与分布特征   总被引:8,自引:3,他引:5  
通过对2002年5月采自南海南部11个站位的28个浮游分层拖网样品的定量研究,初步分析了南海南部上层水体中多孔放射虫的组成与分布特征。共鉴定出116属221种多孔放射虫,其中泡沫虫目123种,占总种数的55.7%;罩笼虫目98种,占总种数的44.3%。罩笼虫目在个体数量上占优势,罩笼虫目与泡沫虫目个体数量之比平均达1.73。多孔放射虫的属种组成呈现明显的热带暖水动物群的组合面貌,优势种相当突出,其组成与南海中北部海区及其它低纬度大洋相比存在一定差异,反映了南海南部海区独特的多孔放射虫属种组成特征。多孔放射虫丰度在不同水层中因受到不同环境因素的影响而呈现不同的平面分布趋势,惟一相似之处是高值多出现于西南或东北部海区;在垂直方向上基本呈随深度增加而减小的分布趋势,丰度和属种数最高值均出现于0—50m水层,在50m以深丰度和属种数均明显减少。各站位间简单分异度S变化幅度较大,在75—140种之间;而复合分异度H(s)变化幅度较小.在3.5-4.0之间。总体来说分异度值均比较高,表明南海南部上层水体中多孔放射虫种类多样性程度比较高,种群比较繁盛。  相似文献   

2.
为了解菲律宾海放射虫的区域分布特色,利用同样的样品处理方法,对菲律宾海及其邻近海域的44个表层沉积样中的放射虫进行对比分析,鉴定统计了500个属种,物种多样性较高。菲律宾海表层沉积物中放射虫的群落结构和丰度变化幅度较大,反映了菲律宾海更为复杂的区域生态环境或沉积环境;南海北部放射虫丰度非常高且罩笼虫目占据较大优势,表明南海北部区域营养盐和生物生产力较高;冲绳海槽放射虫丰度相对较低且泡沫虫目占据绝对优势,推测冲绳海槽的海底沉积环境可能不利于放射虫壳体的埋藏富集。RDA分析结果显示暖水种在冲绳海槽的分布与夏季125 m温度呈明显的正相关,可能与夏季黑潮次表层水的影响有关;在南海北部,暖水种的分布主要受冬季75 m硅酸盐和夏季200 m磷酸盐的影响控制,说明高浓度的硅酸盐可能更加有利于罩笼虫目的发育繁殖;菲律宾海主要是次表层水的环境因子影响着放射虫暖水种的分布,比如75 m冬季盐度、200 m年均溶解氧含量和125 m夏季温度。此外,菲律宾海中深层水(1000~3000 m)不同层深66个环境变量和生活于该水体中的5个冷水种的RDA分析结果,显示菲律宾海北部区域主要与1000 m硅酸盐浓度呈显著正相关,可能与富含硅酸盐的北太平洋中深层水南下进入菲律宾有关;而在菲律宾海中南部的分布则主要与1000 m硅酸盐浓度呈显著负相关,与2000 m溶解氧和2200 m磷酸盐和硝酸盐呈明显正相关,可能与具有高溶解氧低硅酸盐性质的绕极深层水由南端进入菲律宾海后,一部分水体向上进入菲律宾海中层水有关。  相似文献   

3.
对普里兹湾16个表层沉积物样品中的放射虫动物群进行了全属种鉴定和分析,共检出放射虫2目66属107种,其中罩笼虫目40属71种,泡沫虫目26属36种,前者的属种多样性和个体数量都显著高于后者。研究结果显示:普里兹湾放射虫多样性程度较低,但丰度较高,平均可达3.36万枚/g,呈现出陆架区湾口区冰架前缘的趋势,且湾西部高于东部,可能主要受研究区表层生产力、环流结构、沉积物类型和冷水团分布等海洋环境要素的影响。以Antarctissa strelkovi、Antarctissa denticulata为代表的Antarctissa group是该区最典型的优势种组合,平均百分含量高达42.43%,其分布主要受控于水体温度,其高含量具有指示冷水团分布的潜力,而该组合丰度的分布主要受环流和地形的影响;由Phormacantha hystrix、Plectacantha oikiskos和Rhizoplegmaboreale组成的特征种组合平均百分含量为12.54%,其丰度和含量的分布模式主要表征的是与环流结构有关的水团混合作用的强弱,对水深或离岸距离的指示作用并不明显。  相似文献   

4.
通过对台湾岛以东(角点坐标为22°N,122°E;22°N,124°30′E;24°N,125°25′E;24°N,122°E)海域67个表层沉积物样品的微体生物化石的研究,鉴定放射虫2目34科101属,178种(含21个未定种),其中泡沫虫目19科70属134种,罩笼虫目15科31属44种。对样品中保存的有孔虫化石亦进行了分析,并初步认为:影响该区微体生物化石分布的主要因素是温度、盐度、海水深度、海底沉积物、海底地形以及海流、水团等。对上述诸因素与微体生物间的关系进行了探讨。  相似文献   

5.
冲绳海槽中部表层沉积物中的放射虫   总被引:7,自引:2,他引:5  
1992年7月“向阳红16号”海洋调查船利用大洋50型抓斗在冲绳海槽中部(25°30’-30°N,125°-129°E)区域内获取表层沉积物样品88个。表层沉积物中的放射虫定量分析结果表明;愈近海槽放射虫的数量及属、种丰度值愈高,西侧槽坡离开槽区越远,放射虫数量及属种越渐少。而东侧槽被放射虫数量则表现了高、低值成点状分布的格局。表层沉积物中两大类放射虫的百分含量分别为泡沫虫约占87%,罩笼虫约占13%。另外根据分析结果,把本区分为3个小的沉积区:陆坡上部沉积区;陆被下部沉积区;海槽底部沉积区。  相似文献   

6.
杭州湾海域春、秋季鱼类种类组成和数量分布   总被引:8,自引:0,他引:8  
采用底层拖网法,用渔获率作为鱼类资源数量分布的指标,进行了杭州湾调查海域2012年5月(春季)、10月(秋季)2个季节的鱼类种类组成、区系特点、数量分布等研究。结果表明:(1)杭州湾海域春、秋两季共获得并鉴定出的鱼类有31种,隶属于9目15科,其中以石首鱼科和■虎鱼科的种类为最多,各有5种,分别占总种数的16.7%;鳀科鱼类次之,有4种,占总种数的13.3%,优势种有睛尾蝌蚪■虎鱼、龙头鱼、刀鲚、棘头梅童鱼;(2)根据鱼类适温性可将该海域的鱼类分为暖水性、暖温性和冷温性3种适温类型,以暖温性种类为主,暖水性种类次之,而冷温性种类极少,仅有1种;(3)根据其生态习性,可分为河口性、沿岸性和近海性3种生态类群;(4)渔获数量分布规律是春季在调查海域的内侧或者说中西部较高,而湾口较低,秋季则正好相反。  相似文献   

7.
2013—2014年在大连凌水湾海域进行了大型底栖动物月份调查。调查共采得大型底栖动物54种,包括环节动物门26种、软体动物门12种、节肢动物门类8种、棘皮动物门2种、纽形动物门1种、腔肠动物门2种、腕足动物1种。其中多毛类种类最多,共26种,占总种数的48.1%;其次是软体动物门12种,占总种数的22.2%;再次是甲壳类8种,占总种数的14.8%。除去个别大密度和大个体生物影响,2013—2014年大型底栖动物种类、栖息密度以及生物量,都呈现上升趋势,由多样性指数、优势度、均匀度、健康度等指数所表示的群落结构生态学特征显示,大型底栖动物群落结构较健康。  相似文献   

8.
乐清湾口海域春、秋季鱼类种类组成和数量分布   总被引:1,自引:0,他引:1  
根据2012年4月(春季)、10月(秋季)在乐清湾口的大小门岛海域开展拖网渔业资源调查所获得的鱼类数据, 用渔获率作为鱼类资源数量分布的指标, 对乐清湾口调查海域的鱼类种类组成、区系特点、数量分布等进行了分析。结果表明, 乐清湾口海域春、秋两季共获得并鉴定出的鱼类有49种, 隶属于10目26科,其中以鲈形目最多, 有20种, 占鱼类总种数的40.8%; 鲱形目次之, 有9种, 占鱼类总种数的18.4%; 优势种有龙头鱼和刀鲚; 数量是秋季较多且分布较均匀; 根据鱼类适温性可将该海域的鱼类分为暖水性和暖温性2种适温类型, 其中暖水性种类占55.1%; 同时, 根据其生态习性, 可分为河口性、沿岸性和近海性3种生态类群。  相似文献   

9.
大亚湾春秋季鱼类种类组成及年龄结构分析   总被引:1,自引:0,他引:1  
2006年4月和9月对大亚湾海域通过拖网和流刺网捕获的鱼类进行初步调查.结果表明,渔获物中出现18目76科135属200种鱼类,其中软骨鱼纲4目5科5属6种,占调查鱼类总种数的3.0%;硬骨鱼纲14目71科130属194种,占调查鱼类总种数的97.0%.根据其适温类型可分为暖水性种、暖温性种和冷温性种,其中暖水性鱼类有183种,占总种数的91.5%;暖温性鱼类有16种,占总种数的8.0%;冷温性鱼类仅有1种,占总种数的0.5%.渔获物中底层和近底层鱼类占多数,其中,底层鱼类共有74种,占总种数的37.0%;近底层鱼类共有68种,占总种数的34.0%;中上层鱼类共有45种,占总种数的22.5%;岩礁鱼类有13种,占总种数的6.5%.大亚湾鱼类的年龄普遍偏低,以1 a龄鱼为主.与相邻海区鱼类区系特征比较,大亚湾海域具有我国热带和亚热带性海湾的鱼类区系特征.  相似文献   

10.
根据2018年4月(春季)和10月(秋季)在舟山群岛外海域进行的渔业资源调查资料,分析了鱼类的种类组成、数量分布和优势种,并用典范对应分析方法分析了其与水文环境之间的关系。结果表明,舟山群岛外海域鱼类有106种,隶属于12目47科80属,春、秋季鱼类质量密度分别为210.50 kg/km2和829.06 kg/km2,尾数密度分别为8.08×103 ind/km2和165.94×103 ind/km2。春季鱼类资源密度在调查海域的西北部较高,东部较低,而秋季鱼类资源密度在东部海域较高,西北部海域较低。两个季节的鱼类优势种更替明显,春季优势种为黄鮟鱇(Lophius litulon)、日本红娘鱼(Lepidotrigla japonica)、细条天竺鲷(Apogon lineatus),秋季为细条天竺鲷、日本发光鲷(Acropom japonicum)。鱼类种数呈现显著的季节和空间变化,但是都以西部以及西北部靠近近岸岛屿的海域种类数较高,大部分鱼类栖息在50~80 m水深海域。典范对应分析结果表明,表层温度、底层温度、表层盐度是影响调查海域鱼类种类组成和数量分布的主要环境因子。  相似文献   

11.
The species and characteristics of Radiolaria in the surface sediments were systematcally investigated in the sea east of Taiwan Island. One hundred and seventy-eight species of Radiolaria (including 21 unidentified species) have been identified in the surface sediments, and they belong to 2 orders, 34 families and 101 genera. Among them there are 19 families, 70 genera, 134 species of Spumellaria and 15 families, 31 genera, 44 species of NasseUaria. Of the 178 species of Radiolaria, the individual number of Spumellaria amounts to 88.1% of the total individual number, and that of Nassellaria amounts to 11.9% of the total individual number. It is shown that most of the dominant species belong to the tropical and subtropical dominant species and are brought into the area mainly by the Kuroshio, and some affecting factors including the submarine topography, submarine sediments, upwelling current east of Taiwan Island and carbonate dissolution play a secondary role in forming the Radiolaria distributions.  相似文献   

12.
对冲绳海槽北部80个表层沉积样品中放射虫进行的定量研究表明,其丰度和分异度西北部低,东南部高,由西北向东南递增;从西北陆架到东南海槽放射虫分布可分为陆架低值区,海槽边缘中值区和中央高值区,放射虫的组成以泡沫虫目占绝对优势,总体面貌为热带大洋暖水动物群,沉积物中放射虫的分布与现代表层海水温度,盐度的分布和变化趋势一致,但与营养盐和实级生产力的分布呈负相关关系;同时,放射虫的分布又与研究区的海流和水团有密切关系,其中黑潮对其有控制性影响,沉积物类型极大地影响着放射虫的分布,放射虫的丰度和分异度明显地随粒度的增大和陆源物质含量的增加而减小,此外,放射虫的分岂有此理也显示了与沉积物中火山物质含量的密切相关性。  相似文献   

13.
A study of radiolarian fluxes collected during 1991–93 from time-series sediment traps deployed at 1071 and 3010 m water depth in the southern Bay of Bengal (SBBT) yielded 40 species/groups of radiolarians. Among the order Polycystina, the species of sub-order Spumellaria were by far the most abundant (∼95%) followed by sub-order Nassellaria (5%). This is contrary to reports from the Atlantic and Pacific Oceans and is attributed to the prevailing hyposaline condition resulting from the monsoonal rainfall. Higher radiolarian fluxes occurred during March–May, when moderate salinity and a high sea surface temperature (SST) regime prevailed at the trap site. R-mode cluster analysis of the radiolarian flux data revealed three assemblages represented by the cooler (A) and warmer (C) surface dwelling fauna (0–50 m) dominated by spumellarians, and a deeper dwelling (B) sub-surface fauna (50–100 m) associated with deep dwelling (>100 m) nassellarian species. Spongaster tetras tetras, a surface water radiolarian species, exhibited its preference for high SST and moderate salinity conditions during the pre-monsoon season (March–May). Radiolarian fluxes responded to seasonal changes in SST and salinity variations due to the monsoonal precipitation, and the freshwater runoff from the Indian rivers causing a hyposaline condition in the Bay of Bengal. Results imply that the radiolarian assemblages in the down core data may reveal the monsoonal history in the geological past.  相似文献   

14.
根据南沙海区17957-2柱1.34Ma以来的放射虫定量研究发现,在0.88-0.91Ma和1.14-1.16Ma两个时期放射虫堆积率和丰度突然降到最低值,造成两次丰度低值事件。第一次丰度低值事件与0.9Ma发生的“中更新世革命”事件有关。这两次丰度低值事件可能是由于高的放射虫碎壳率所反映的强硅质溶解作用、含量较高的碳酸盐和火山灰的稀释作用以及较低的表层初级生产力三者的共同作用所造成的,反映了硅质生物沉积过程的复杂性。  相似文献   

15.
Distribution of larger protozoans (armoured dinoflagellates, tintinnids, heliozoans, radiolarians and foraminiferans >64 μm) is presented for three major water masses of the Southern Ocean: the Polar Front region (PFr), the southern Antarctic Circumpolar Current (southern ACC) and the northern Weddell Gyre. Sampling took place during the SO-JGOFS cruise ANT X/6 of R/V Polarstern (October–November 1992) along a meridional transect at 6°W between 48°00′S and 59°30′S. Multinet samples (64 μm mesh size) were taken at six stations from the surface down to 500 m depth at five different depth intervals. In the upper 100 m of the water column abundances of larger protozoans varied between 94 and 10,930 ind. m–3, with highest abundances in the PFr, where phytoplankton blooms occurred, and lowest values in the Antarctic Circumpolar Current–Weddell Gyre Boundary (AWB). Foraminiferans and polycystine and smaller (<300 μm) phaeodarian radiolarians dominated larger protozoan assemblages in the PFr. In open water of the southern ACC, tintinnids, armoured dinoflagellates, foraminiferans and smaller (<300 μm) phaeodarian radiolarians were equally important. The heliozoans Sticholonche spp. and nassellarian radiolarians dominated assemblages in the Weddell Gyre and AWB. Larger protozoan biomasses ranged between 2 and 674 μg C m−3 and were always dominated by larger (>300 μm) phaeodarians. Highest biomasses were found in the AWB between 200 and 500 m depth. Standing stocks of larger protozoans constituted a negligible fraction of zooplankton biomass in the upper 200 m of the water column. In deeper layers of the ice-covered Weddell Gyre and AWB their biomasses, dominated by larger (>300 μm) phaeodarians, was significant contributing up to 45% to total larger protozoan and metazoan biomass. Analysis of correlation between distribution patterns and environmental conditions at the stations sampled indicate that spring distribution patterns of heterotrophic armoured dinoflagellates, polycystine radiolarians and foraminiferans follow productivity in the water column. Of the protozoan groups studied the smaller (<300 μm) phaeodarian radiolarians also showed a significant correlation with productivity during spring, however, results from previous studies do not suggest a consistent pattern. Spring distribution patterns of other larger protozoans were not related to differences in productivity in the water column, and effects such as ice-cover, grazing or silica limitation might be determining. Dead radiolarian skeletons constituted on average 27, 8 and 11% of the population of nassellarians, spumellarians and smaller (<300 μm) phaeodarians, respectively. The contribution of dead radiolarian skeletons to total radiolarian stocks varied with depth and water mass. Differences between live and skeleton assemblages composition were observed. These differences should be taken into consideration when interpreting the geological record.  相似文献   

16.
Biogenic silica (BSi) in marine sediments is an important indicator of siliceous organism distributions and paleoproductivities. Organisms that have BSi skeletons include diatoms, silicoflagellates, radiolarians and sponges. This study presents, for the first time, the distribution of biogenic siliceous fragments in shallow water sediments around Taiwan and the Sunda Shelf, which belong to this rarely studied region of the South China Sea (SCS). Thirty-one surface sediment samples were collected from intertidal to depths of 1,100?m. Only sponge spicules were found in this study and the abundance varied in the range of 3?C7,910?n?g?1 sediment. Combining previous studies with ours, from shallow to deep, it was observed that BSi composition in the surface sediment of this area changed from sponge spicules in the Sunda Shelf, followed by sponge spicules and radiolarians in the southwestern SCS, to sponge spicules, radiolarians and diatoms in the southern SCS. Based on this study, the abundance of sponge spicules correlated positively and negatively with water depth and sediment grain size when coral reef sites were excluded. The low spicule abundance in shallow waters may have resulted from local current conditions and the dilution effect through riverine input of terrestrial sediment. Other possible explanations for the varying spicule abundance among sites are the difference in local fauna, such as coral reefs which usually have high diversity and abundance of sponges. The findings provide additional information on the process of recent BSi deposition which may help future studies in sedimentology, paleogeography and paleoenvironments.  相似文献   

17.
台湾海峡浮游甲藻的分布特征和变化趋势   总被引:1,自引:0,他引:1  
根据2006-2007年“国家908”专项台湾海峡4个航次调查,分析该海域浮游甲藻的种类组成、群落结构和时空分布特征。共鉴定甲藻18属131种,其中高温高盐种为主体,占总种数的72.52%,其次为广温广盐种,占总种数的25.19%,近岸种仪占2.29%。夏季甲藻的种类最丰富,而春季甲藻的丰度最高。平均丰度为404.96×10^2cells/m3,其平面分布呈现从近岸向外海、从北向南递增的趋势。与1984-1985年的调查结果相比较,甲藻丰度的平面分布格局和季节变化趋势没有明显变化,但丰度增加3.01倍。从季节变化看,冷季甲藻丰度增加较为显著;从平面分布看,台湾海峡北部增加较多。此外,该海域甲藻群落结构也发生变化,种类多样性指数和均匀度上升,其丰度占浮游植物总丰度的比例由0.55%上升到1.02%。  相似文献   

18.
吕红红  向荣 《海洋学报》2016,38(2):93-103
现代活体浮游有孔虫的生态研究是其古环境重建应用的重要基础。根据黄、东海陆架2011年秋季采集的20个垂直浮游拖网样品,分析了该海域浮游有孔虫的秋季生态分布特征。结果表明,黄海秋季基本上没有浮游有孔虫的出现。东海共发现13种活体浮游有孔虫,主要优势属种依次为Globigerinoides sacculifer、Pulleniatina obliquiloculata、Globigerina bulloides、Neogloboquadrina dutertrei和Globigerinoides ruber。浮游有孔虫丰度整体上呈现东南高,西北低的分布格局,这种分布格局反映了浮游有孔虫在黄、东海陆架区的分布主要受外海水影响强弱控制。浮游有孔虫主要属种在东海陆架呈现明显的区域分布差异:暖水种G. sacculifer是秋季陆架海区的主要优势种,其分布格局与总丰度基本一致,相对含量从南至北、从东至西逐渐降低,主要受区域表层海水温度变化的控制。G. bulloides与G. sacculifer呈相反的含量分布变化,其高含量主要出现在东海中陆架,从北往南逐渐降低,此外,在闽浙沿岸也有较高含量,表明了温度和生产力是影响G. bulloides在黄、东海陆架分布的主要因素。秋季P. obliquiloculata和N. dutertrei的高含量主要出现在东海南部中陆架区和济州岛西南黄海暖流影响区,可能受暖水与生产力的共同制约。  相似文献   

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