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1.
The sea surface temperature (SST) of the East China Sea (ECS) increased in the past decades,which may have a great impact on the ecosystem of the ECS,including the changes in plankton-population structure.In this paper,the changes in peaked abundance of Calanus sinicus in the Changjiang River (Yangtze River) Estuary were compared between 1959 and 2002,based on the data collected from the seasonally oceanographic cruises and those performed in spring of 2005.It was much higher in spring compared with that in other seasons both in 1959 and 2002.Furthermore,in spring 2005,the time for occurrence and decrease of the peaked C.sinicus abundance advanced about one month, accompanying the increase in the sea surface water temperature (SST).It peaked in June and decreased in July in 1959,however,in 2005,it peaked in May and attenuated sharply in early June.The earlier decrease of peaked C.sinicus abundance may further deteriorate the ecosystem in the Changjiang River Estuary and north nearshore of the ECS.  相似文献   

2.
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   

3.
The objective of this study was to investigate whether there was distinctive seasonal and zonal variation in the species diversity, biomass, and element accumulation capacities of macroalgae in two major intertidal mangrove stand types (Avicennia marina assemblage andSonneratia apetala assemblage) in the Zhanjiang region of southern China. Over a year, 31 species in 15 genera were identified in both mangrove assem-blages, of which the dominant species wereCladophoropsis zollingeriand Enteromorpha clathrat.Macroal-gal species were significantly most abundant in spring (p〈0.05), followed by summer, winter, and autumn. Variation in the zonal distribution of macroalgal species was conspicuous in both intertidal mangrove as-semblages, with the greatest abundance in the middle zone, and the least in the front zone. Patterns in the seasonal and zonal variation in macroalgal biomass in theS. apetalaassemblage were similar to those of macroalgal species diversity in both mangrove assemblages. The seasonal patterns in tissue concentrations of 15 analyzed elements were not uniform among the macroalgaeC. zollingeri,E. clathrata, andGracilaria salicornia in theA. marina assemblage. All three species exhibited variation in their responses to ambient concentrations of different elements, implying their differential ability to absorb and selectively accumulate certain elements.  相似文献   

4.
Calanoida copepod, Drepanopus bispinosus occurred in both saline lakes, Burton ( S=40) and Fletcher ( S = 56) in Vestfold Hills, Antarctica. Evident differences between two populations in biology and physiology were observed in September and December, 1984. The population in the Burton lake was denser with stronger body and more tolerant to temperature and salinity than that in the Fletcher Lake, reflecting their possible differences of genetic or nongenetic adaptation. The population in the Burton lake has been adaptated to the lake environment, and the population in the Flethcer Lake is in the acclimatization course in the lake habitat.  相似文献   

5.
春、秋季南黄海浮游纤毛虫丰度及生物量的分布差异   总被引:1,自引:0,他引:1  
Seasonal variation of marine plankton spatial distribution is important in understanding the biological processes in the ocean.In this study,we studied spatial distribution of planktonic ciliate abundance and biomass in the central deep area(station depth greater than 60 m) and the coastal shallow area(station depth less than 60 m) of the southern Yellow Sea(32°–36.5°N,121°–125°E) in spring(April) and autumn(October–November) of 2006.Our results showed that both ciliate abundance and biomass in the surface waters were higher in spring((1 490±2 336)ind./L;(4.11±7.81) μg/L) than in autumn((972±823) ind./L;(1.11±1.18) μg/L,calculated by carbon).Ciliate abundance and biomass in the surface waters of the coastal shallow area were similar in spring and autumn.However,in the central deep area,those values were much higher in spring((1 878±2 893) ind./L;(5.99±10.10)μg/L) than in autumn((738±373) ind./L;(0.74±0.76) μg/L).High values of ciliate abundance and biomass occurred in the central deep area in spring and in the coastal shallow area in autumn.Mixotrophic ciliate Laboea strobila was abundant in the central deep area in spring,when a phytoplankton bloom occurred.However,in autumn,L.strobila was abundant in the coastal shallow area.Boreal tintinnid Ptychocyli obtusa was found in spring.Both L.strobila and P.obtusa were concentrated in the surface waters when their abundance was more than 1 000 ind./L.Peaks of these species were in the subsurface waters when their abundance was less than 400 ind./L.This study showed that both high abundance and biomass of ciliates occurred in different areas in southern Yellow Sea seasonally.  相似文献   

6.
Seasonal variations in zooplankton abundance,biomass,species diversity and community structure were investigated in the Sanmen Bay,China.Samples were collected from 15 stations,on the seasonal basis,in April(spring),July(summer) and October 2005(autumn) and January 2006(winter),respectively.The results show that zooplankton species number,abundance and biomass varied widely and had distinct spatial heterogeneity in the Sanmen Bay.A total of 72 species of zooplankton belonging to 56 genera and 17 groups of pelagic larvae were identified.The zooplankton species richness was strongly related to salinity.Based on hierarchical cluster analysis,zooplankton in this study area were classified into three groups:coastal,neritic and pelagic groups,which corresponded to the upper,middle and lower portion of the Sanmen Bay,respectively.The coastal low-saline species were dominant in the study area.The zooplankton abundance and biomass reached a peak in summer,moderate in spring and autumn,and the lowest in winter.Zooplankton abundance decreased from the upper to lower portion of the bay in April,when the highest biomass occurred in the middle portion of the bay.There were the same spatial distribution patterns for the biomass and abundance in July,with the maximum in the middle of the bay.However,zooplankton abundance was the highest in the middle of the bay in October,when maximum biomass occurred near the lower of the bay.Zooplankton abundance and biomass were evenly distributed in the Sanmen Bay in January.Spatial and temporal variations in zooplankton and their relationship with environmental factors were also analyzed.The BIOENV results indicate that the combination of chlorophyll a(Chl-a),salinity,dissolved inorganic nitrogen(DIN),dissolved oxygen(DO) and silicate(SiO3) was responsible for the variations in zooplankton community structure in the Sanmen Bay.The environmental changes played an important role in changes in the zooplankton community structure in the Sanmen Bay.  相似文献   

7.
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   

8.
There exists obvious difference in recapture rate of tagged shrimp in various sea areas and years in autumn season, but the majority of them (98%) are recaptured in the releasing year. Although the main portion of each shrimp group in the Bohai Sea has separate distribution area, they intermingle in autumn season to search for food, thus forming a principal fishing ground located in the central Bohai Sea.Those shrimps wintering in south-central portion of the Huanghai Sea are generally divided into two populations. One is called the Korean population, inhabiting along the western coast of Koera, which is less in abundance and smaller in shrimp size; and the other is called the Chinese population, inhibiting along the Bohai Sea coast and the Huanghai Sea coast of China, which is richer in abundance and larger in shrimp size. The spawning grounds of the latter extend throughout the Bohai Sea and off the Huanghai Sea coast of China, from the Yalujiang Estuary area in the north to the coastal waters of Haiz  相似文献   

9.
Professor Zhang Guofan, born in Haicheng, Liaoning Province, China in April 1954, graduatedfrom Xiamen University majoring in marine biology, gained his MS degree in South China SeaInstitute, the Chinese Academy of Sciences in 1982 and his Ph. D. in Institute of Oceanology, theChinese Academy of Sciences in 1992. Now he is professor of shellfish mariculture at DalianFisheries University and director of Key Laboratory of Mariculture Ecology, Ministry of Agriculture.Dr. Zhang has e…  相似文献   

10.
The seasonal variation of mixing layer depth(MLD) in the ocean is determined by a wind stress and a buoyance flux.A South China Sea(SCS) ocean data assimilation system is used to analyze the seasonal cycle of its MLD.It is found that the variability of MLD in the SCS is shallow in summer and deep in winter,as is the case in general.Owing to local atmosphere forcing and ocean dynamics,the seasonal variability shows a regional characteristic in the SCS.In the northern SCS,the MLD is shallow in summer and deep in winter,affected coherently by the wind stress and the buoyance flux.The variation of MLD in the west is close to that in the central SCS,influenced by the advection of strong western boundary currents.The eastern SCS presents an annual cycle,which is deep in summer and shallow in winter,primarily impacted by a heat flux on the air-sea interface.So regional characteristic needs to be cared in the analysis about the MLD of SCS.  相似文献   

11.
从2001年7月辽宁省盘锦市大洼对虾养殖厂大面积暴发红体病(全身发红,活动减弱,食欲减退,壳变硬,死亡率高)的凡纳滨对虾(Litopenaeus vannamei)肌肉组织中分离到3株优势菌,经回归感染证实其中一株为引发本次凡纳滨对虾红体病的病原菌,编号为0107。对该菌进行了生理生化鉴定和16S rRNA基因序列同源性分析,将其判定为副溶血弧菌(Vibrio parahaemolyticus)。药敏实验结果显示,该菌对头孢哌酮、头孢曲松等多种抗生素敏感,对氨苄西林、青霉素等抗生素不敏感。  相似文献   

12.
采用改良微孔板法建立哈维氏弧菌Vibrio harveyi TS-628菌株生物被膜体外模型,并进一步研究环境因子对哈维氏弧菌体外形成生物被膜的影响。结果发现,哈维氏弧菌TS-628菌株可以在聚苯乙烯板中形成生物被膜,并且该菌生物被膜的形成受起始菌液浓度、温度、pH等理化因子的显著影响。温度为30℃、NaCl质量分数为3%—6%、pH为7、孵育时间为36h是哈维氏弧菌形成生物被膜的最佳条件。此外哈维氏弧菌在分别经表皮黏液、鳃黏液、肠道黏液、肝脏提取液、脾脏提取液、肌肉提取液包被的基质上成膜效果显著,其中在经肝脏提取液包被的基质上形成的生物被膜量显著高于在其他生物基质上形成的生物被膜量(p<0.01)。  相似文献   

13.
养殖大菱鲆细菌性红体病病原菌的分离与鉴定   总被引:1,自引:0,他引:1       下载免费PDF全文
从患有红体病的养殖大菱鲆(Scophthalmus maximus)的肌肉中分离得到一株优势菌并记为H1.经人工注射感染证实H1即为引起养殖大菱鲆红体病的病原菌,其半致死量LD50为2.82×105CFU/mL,而低浓度(1.41×103 CFU/mL)没有造成死亡,但注射部位有脓肿现象,注射相同体积1.5%无菌生理盐水的对照组没有明显的症状,注射部位也无异常.革兰氏染色显示该菌为革兰氏阴性,菌体呈杆状,周生鞭毛.综合该菌的形态、常规生理生化特征和API32E鉴定结果,发现H1与迟钝爱德华氏菌的表性特征非常相似,相似率迭到99.9%.在分子水平上对其16SRNA基因序列的测定,同源性分析,结果表明H1与迟钝爱德华氏菌的亲缘关系最近,相似度达到99%.综合上述研究结果,将该菌株初步鉴定为迟钝爱德华氏茵(Edwardsiella tarda).  相似文献   

14.
Fresh and preserved (type material) specimens of the black ghost chimaera Hydrolagus melanophasma were compared for morphometric characteristics. A molecular comparison was also performed on two mitochondrial gene sequences (12S rRNA and 16S rRNA gene sequences). While significant differences in measurements were found, the differences were not attributable to sexual dimorphism or the quality of the specimens, but to the sample size and the type of statistical tests. The result of the genetic characterization showed that 12S rRNA and 16S rRNA genes represented robust molecular markers that characterized the species.  相似文献   

15.
养殖牙鲆鱼苗腹水症病原菌的鉴定及系统发育学分析   总被引:34,自引:7,他引:34       下载免费PDF全文
从患腹水症养殖牙鲆鱼苗分离到一株细菌B17,人工感染实验证实春具有致病性。用Biolog-GN细菌鉴定系统对B17进行测试,发现其与参考菌株的相似性较低,不能进行鉴定。常规生化测试表明,B17具有弧菌属的特征,其表型特征与Vibrio splendidus非常相似。为了进一步明确菌株B17的分类学地位,测定了其16SrRNA基因序列,分析了相关细菌相应序列的同源性,构建了系统发生树,结果表明菌株B17与V. splendidus的亲缘关系最近。综合上述结果,菌株B17可鉴定为V.splendidus。  相似文献   

16.
本研究从自然发病的养殖大黄鱼(Pseudosciaena crocea)肝脏处分离得到1株优势菌9L2,经形态学观察和传统生理生化鉴定,显示该菌为发酵型革兰氏阴性短杆菌,有动力,氧化酶阳性,水解赖氨酸及色氨酸等。利用Biolog细菌鉴定方法进行种属鉴定,确定9L2为维氏气单胞菌(Aeromonas veronii),相似性达100%。同时对其16S rDNA基因进行PCR扩增、测序和系统发育分析,结果表明该菌与气单胞菌属的菌株亲缘关系最近,与维氏气单胞菌(登录号为LMG13695)的16S rRNA基因序列相似性达99.79%。经人工腹腔注射感染吉富罗非鱼(Oreochromis niloticus)的试验结果表明,9L2对罗非鱼的半数致死剂量LD_(50)为1.08×10~3CFU/g。24种抗生素药敏试验结果表明,该菌株对诺氟沙星、新生霉素、呋喃妥因、头孢曲松等13种药物高度敏感,对洛美沙星、卡那霉素等5种药物中度敏感,对利福平、青霉素等6种药物产生耐药性。20种中药体外抑菌试验结果表明,其中11种对致病菌体外抑菌效果较好,平均抑菌浓度范围为0.11—7.20mg/mL。  相似文献   

17.
传统的形态鉴定主要依赖于分类者的经验和水平,容易产生分类错误。为提高物种鉴定的准确性,作者采用形态学与线粒体16S rRNA基因序列分析相结合的方式对广西北海涠洲岛采获的3种珍珠贝进行了鉴定。研究结果表明,基于形态学可将3种珍珠贝分别鉴定为企鹅珍珠贝(Pteria penguin)、宽珍珠贝(P.loveni)和中国珍珠贝(P.chinensis),但基于16S r RNA基因序列,形态学鉴定为P.loveni的标本应为P.lata。P.loveni和P.lata是两个完全独立的种,并非为同物异名。珍珠贝属16S rRNA基因序列的种间遗传距离明显大于种内遗传距离,适宜作为该属种类鉴定的分子标记。在基于16S r RNA基因序列构建的系统树中,相同种类的不同个体均形成单系群,并获得很高的支持率。分布于中国沿海的珍珠贝属种类应包括P.lata,是否有P.loveni的分布尚需进一步证实。  相似文献   

18.
养殖大菱鲆烂鳍病病原菌的鉴定及系统发育学研究   总被引:9,自引:0,他引:9  
从山东半岛3个养殖场各分离到一株大菱鲆烂鳍病的病原菌,均为革兰氏阴性,短杆状,极生鞭毛,有运动能力,菌落半透明。经常规生理生化特征测试和16SrRNA基因序列对比,表明它们都是同一种细菌。理化特征的结果显示这3株菌均与V.anguillarum的表性特征非常相似。对其16SrRNA基因序列进行分析,并构建了系统发育树,结果表明这些菌株与V.anguillarum亲缘关系最近。综合上述研究结果,将该菌鉴定为V.anguillarum.  相似文献   

19.
四个拟穴青蟹养殖池水环境中细菌群落结构的比较研究   总被引:2,自引:0,他引:2  
本研究在福建、广东沿海选取了四个拟穴青蟹养殖池(编号为FJ-CB、FJ-SC、GD-C、FJ-C)作为研究水样的采集地点,通过构建上述水样中细菌16S rRNA基因克隆文库来探究青蟹养殖水体环境中的菌群结构组成.从四个所构建文库中共获得201条16S rRNA核酸序列,分析结果表明:FJ-CB、FJ-SC、GD-C和FJ-C站位的优势菌群分别为红细菌目(Rhodobacterales,25.00%)、红细菌目(Rhodobacterales,30.88%)、蓝细菌(Cyanobacteria,39.58%)和蓝细菌(Cyanobacteria,62.16%);所构建文库中也检测到一些特有菌群序列,例如浮霉菌门(Planctomycetes)、疣微菌门(Verrucomicrobia)、异常球菌-栖热菌门(Deinococcus-Thermus)、绿弯菌门(Chloroflexi)等.基于不同养殖水环境中优势菌种、特有菌种的区别,一方面反映了不同养殖场管理方式的不同,另一方面也表明各养殖池水质营养程度的差异.综上所述,本研究揭示了各站位拟穴青蟹养殖水环境中基本菌群的组成特征,对于青蟹等甲壳类海洋动物养殖病害的有效防治具有重要参考价值.  相似文献   

20.
以南极海洋细菌为研究对象,采用2216E和MMC液体培养基结合的方法,从菌种库里筛选南极低温降解菌,进行石油烃降解率测定、表型特征确定和16SrRNA分子鉴定,构建系统发育树,并对南极低温降解菌NJ49的低温降解适应性进行了初步研究。结果表明,3株南极海洋细菌NJ41、NJ49和NJ289可以在以柴油为惟一碳源和能源的培养基中生长,被视为南极低温降解菌;16SrRNA分子鉴定结果表明,南极低温降解菌NJ41、NJ49和NJ289分别属于Planococcus、Shewanella和Pseudoalteromonas属;NJ49通过改变脂肪酸组分的膜修饰方式适应低温降解。  相似文献   

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