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1.
几种鳕鱼的生物学初步研究   总被引:6,自引:1,他引:6  
本文在调查与校核资料的基础上,报告了狭鳕(Theragra chalcogramma)、蓝鳕(Micromesistius poutassou)、远东宽突鳕(Eleginus gracilis)、大西洋鳕(Gadus morhua)、太平洋鳕(Gadus macrocephalus)和黑线鳕(Melanogrammus aeglefinus)等六种经济鳕雪类分类地位、区系性质与分布。并对上述鳕雪主要形态特征进行了详细的描述,建立了狭鳕等五种鳕鱼体长与总重关系式,以期找出各鱼种的生长发育规律。  相似文献   

2.
采用分步降温法冷冻保存太平洋鳕(Gadus macrocephalus)精液,并用扫描电镜和透射电镜技术研究了精子的超微结构损伤。分析了添加剂(蛋黄)及五种抗冻剂(PG(丙二醇)、DMSO(二甲基亚砜)、EG(乙二醇)、GLY(甘油)、MeOH(甲醇))不同浓度(8%、10%、12%、14%、16%、18%)对太平洋鳕精子冷冻保存效果的影响。实验结果表明,蛋黄能够显著提高太平洋鳕冷冻保存效果(P0.05);12%PG中添加10%蛋黄保存的冻融精子运动率最高(85.87%±1.6%),显著高于其他冻存组(P0.05)。添加蛋黄的12%浓度的DMSO组解冻后精子运动速率较高,平均直线速度、平均曲线速度、平均路径速度分别达到了(120.39±20.78)μm/s、(120.39±20.78)μm/s、(155.64±12.02)μm/s,与其他各实验组差异显著(P0.05)。通过扫描电镜和透射电镜观察新鲜和冻融后的鳕鱼精子发现,鲜精中75.5%精子形态结构正常、24.5%精子形态结构异常;运动率最高的冻精中67%精子形态结构正常、33%精子形态结构异常。超低温保存对太平洋鳕精子结构产生了显著影响,细胞膜破裂、线粒体肿胀变形,鞭毛脱落、断裂。  相似文献   

3.
通过传统形态学数据和框架结构数据相结合,应用方差、聚类、判别和主成分等4种多元分析方法,分析了太平洋双色鳗鲡与日本鳗鲡、美洲鳗鲡和花鳗鲡的形态差异。结果表明:(1)太平洋双色鳗鲡背鳍前端与臀鳍前端之间的垂线距离占全长的1.4%,属短鳍型鳗鲡。(2)太平洋双色鳗鲡与其它3种鳗鲡形态差异显著。在可数性状中,太平洋双色鳗鲡的总脊椎骨数显著小于日本鳗鲡,显著大于美洲鳗鲡和花鳗鲡,背鳍前脊椎骨数显著大于其它3种鳗鲡;在可量性状中,太平洋双色鳗鲡的吻长显著小于美洲鳗鲡和花鳗鲡,显著大于日本鳗鲡;在框架结构性状中,太平洋双色鳗鲡有6项性状与其它3种鳗鲡差异显著。(3)太平洋双色鳗鲡的背鳍起点与其它3种鳗鲡相比最靠后,背鳍起点在鳗鲡分类研究中可作为重要的框架结构定位点。本研究可为太平洋双色鳗鲡的合理引进和种质保护提供资料。  相似文献   

4.
江鳕和大头鳕头颅骨骼特征的比较研究   总被引:2,自引:0,他引:2  
对江鳕(Lota lota Linnaeus)和大头鳕(Gadus macrofephalus Tilesius)的头颅骨骼进行了描述和比较。研究结果表明:2种鱼均有发达的鼻骨、额骨、后耳骨和鳞片骨,上颌口缘由前颌骨构成,犁骨上具齿,上枕骨与额骨相接,左右顶骨分离。无眶蝶骨、基蝶骨、伪头中骨和辅上颌骨。2种鱼的区别主要在于骨块的形状、大小差异及嵴的发达程度的不同。  相似文献   

5.
黄海大头鳕胚胎发育过程   总被引:3,自引:0,他引:3  
驯化野生大头鳕(Gadus macrocephalus Tilesius)作为亲鱼,通过自然受精和人工授精两种方法获得受精卵,自然受精卵通过虹吸法收集。受精卵孵化条件为水温6~8℃,盐度32~33,pH7.8~8.2,微充气。在奥林巴斯SZ61解剖镜下对大头鳕的胚胎发育进行了观察,并使用CCD图像传感器拍照,描述了各发育时期的发育时序和形态特征。大头鳕受精卵为圆球形端黄卵,弱黏性,无油球,卵膜上具龟裂结构,卵子直径0.95~1.12mm,n=30,卵黄均匀透明。类似于大部分硬骨鱼类,其胚胎发育可分为胚盘形成期、卵裂期、桑椹期、囊胚期、原肠期、神经胚期、器官发生期、尾芽期、肌肉效应期。在水温6~8℃,盐度32~33的条件下,受精卵历时约336h完成胚胎发育过程,孵化出膜。在大头鳕胚胎发育过程中,具有4个不同于其他硬骨鱼类的地方:(1)发现早期分裂球具有不规则现象;(2)很多胚胎发育过程不出现柯氏囊,有柯氏囊的胚胎仅占10%左右,且出现晚,消失快;(3)胚胎孵化为仔鱼与发育进程关联性不大,孵化的仔鱼有3种主要形态;(4)胚胎各个时期都有较高死亡率,以原肠期最为严重。  相似文献   

6.
作为黄海的代表性冷温性鱼类,大头鳕(Gadus macrocephalus)的资源量近年逐渐上升趋势,其中幼鱼所占比重较大,种群丰度及补充都受到黄海冷水团的影响,作为2龄性成熟鱼种,探究其当年生和非当年生幼鱼分布和生长的季节变化及与黄海冷水团的关系对了解大头鳕的资源变动有重要意义。本研究基于2016年10月、2017年5和8月的调查结果,分析了黄海冷水团存在时期的海洋环境特征与大头鳕幼鱼分布及生长特征的关系。研究显示,春季,幼鱼主要分布于青海渔场、石岛渔场和连青石渔场,非当年生幼鱼和当年生幼鱼随栖息地水深分别呈东西两区块分布。夏季,幼鱼主要位于122.00°E以东、底温低于10℃的黄海中部较深海域,有少部分分布于黄海北部,这与黄海冷水团强盛时期南北低温中心的位置有关。秋季,黄海北部大头鳕幼鱼的渔获量明显减少,仅在石岛渔场和连青石渔场大头鳕的种群密度仍较高。广义相加模型(Generalized Additive Models, GAM)分析结果显示,温度和盐度对大头鳕幼鱼的资源丰度指数(单位捕捞努力量渔获量(Catch Per Unit Effort, CPUE))有显著影响,当栖息地水域盐度在31.90和32.80附近,底温在8.5℃左右时,大头鳕幼鱼的CPUE较高。体长-体重关系显示,春季,幼鱼呈负异速生长,夏秋季呈正异速生长,黄海冷水团强盛时期较高的有机质含量及初级生产力造成的丰富饵料可能是导致大头鳕夏秋季b值较高的原因,因此黄海冷水团的季节变化对大头鳕的分布和生长均有显著影响。  相似文献   

7.
青岛海域小眼绿鳍鱼耳石形态的初步研究   总被引:5,自引:0,他引:5  
利用2002年6~12月期间采自青岛海域商业渔获的286尾小眼绿鳍鱼(Chelidonichthys spinosus)标本,以耳石长、耳石宽、周长、面积、矩形趋近率、充实度为基本形态学参数,结合其中傅里叶变换获得的形态特征变量,研究了小眼绿鳍鱼幼鱼生长过程耳石形态的逐月变化特征.结果显示,小眼绿鳍鱼耳石为不规则卵圆形或近四边形,背部弧状隆起,腹部相对略平,前部有一明显缺刻,后部常呈锯齿状尖突.小眼绿鳍鱼耳石长、耳石重、耳石面积皆与体长呈显著相关,耳石长宽比与体长不呈显著相关.随着小眼绿鳍鱼生长,该鱼耳石形态特征随月份变化差异显著;经多因子方差分析和判别分析表明,研究期间小眼绿鳍鱼耳石形态可分为3个特征区间:6月份与其他月份间形态差异显著;7~9月耳石形态特征处于变化间状态;10~12月各方面形态特征趋于稳定.  相似文献   

8.
中国远洋作业渔场海表温度异常年际变动分析   总被引:1,自引:0,他引:1       下载免费PDF全文
基于美国国家海洋大气局(NOAA)气候预测中心月平均SST资料,利用时间序列的统计学特征分析了中国7个主要远洋作业渔场1982~2011年海表温度异常(SSTA)年际变动,用功率谱方法计算时间序列的显著变动周期,并用相关分析探讨了去除趋势项后的SSTA与南方涛动指数(Southern Oscillation Index,SOI)的相关性。结果表明,1982~2011年中国主要远洋作业渔场SSTA为–0.3~0.3℃,波动周期约为3~4 a,平均SSTA总体呈现上升趋势,与SOI存在显著的相关性(r=–0.509),说明渔场的SSTA与ENSO事件有着密切联系;从渔场SSTA升降趋势来看,除了东太平洋和东南太平洋SSTA出现下降趋势,其余渔场的SSTA均有一定程度的上升,其中西北太平洋SSTA上升最为显著;从渔场SSTA的变化周期来看,东太平洋和西南大西洋的SSTA变化周期为3~4 a,东南太平洋为4 a,西太平洋为5 a,其余的短期周期性较不明显,约为10 a;与SOI时间序列进行相关分析得到,东太平洋、中大西洋以及西南大西洋均与SOI存在显著的相关性,相关系数分别为–0.895、0.471和–0.598,其余渔场与SOI无显著相关。通过各渔场间的对比得到以下特征:赤道附近海域东太平洋SSTA变化往往与西太平洋和中大西洋反相,而与印度洋同相;中纬度海域的3个渔场中,南半球中纬度渔场温度变化要比北半球中纬度渔场小;东、西印度洋SSTA存在显著相关性,印度洋内部SSTA正负变化情况基本一致。  相似文献   

9.
单毛尖头水蚤Arietell usunisetosus n.sp.(桡足亚纲,哲水蚤目,尖头水蚤科,尖头水蚤属)模式标本(2♀)系采自太平洋中部热带水域.它有若干明显不同于本属其他已知种的形态特征,如雌性尾叉不对称,左叉外缘隆起呈瘤状;第5对胸足瘤状内肢顶端各具1长刚毛,宽舌状的外肢末端不具末刺等.  相似文献   

10.
研究了太平洋鳕(Gadus macrocephalus)繁殖期性腺发育组织学、性成熟系数(GSI)和肝重指数(HSI)、性腺抽提液中睾酮(T)和雌二醇(E2)含量,分析了这些指标在太平洋鳕繁殖过程中的生理作用。研究表明:太平洋鳕卵巢从12月开始进入Ⅳ期,精巢于11月进入Ⅳ期,两者均在翌年2月达到成熟。雌性个体中,卵巢组织中T和E_2含量在12月显著升高(P0.05),雄性个体中,精巢组织中T和E2含量在11月底显著升高(P0.05),到12月下旬维持在稳定状态,雌雄鱼性腺中T和E_2含量均在翌年1月达到峰值,在3月显著下降(P0.05),之后一直保持较低水平直到下个性腺成熟期。研究结果表明,性腺发育成熟期,太平洋鳕性腺中T和E_2含量变化显著,与GSI变化趋势呈正相关,与HSI变化趋势呈负相关,说明T和E_2对太平洋鳕的性腺发育成熟具有重要作用。  相似文献   

11.
The principal features of the marine ecosystems in the Barents and Norwegian Seas and some of their responses to climate variations are described. The physical oceanography is dominated by the influx of warm, high-salinity Atlantic Waters from the south and cold, low-salinity waters from the Arctic. Seasonal ice forms in the Barents Sea with maximum coverage typically in March–April. The total mean annual primary production rates are similar in the Barents and Norwegian Seas (80–90 g C m−2), although in the Barents, the production is higher in the Atlantic than in the ice covered Arctic Waters. The zooplankton is dominated by Calanus species, C. finmarchicus in the Atlantic Waters of the Norwegian and Barents Seas, and C. glacialis in the Arctic Waters of the Barents Sea. The fish species in the Norwegian Sea are mostly pelagics such as herring (Clupea harengus) and blue whiting (Micromesistius poutassou), while in the Barents Sea there are both pelagics (capelin (Mallotus villosus Müller), herring, and polar cod (Boreogadus saida Lepechin)) and demersals (cod (Gadus morhua L.) and haddock (Melanogrammus aeglefinus)). The latter two species spawn in the Norwegian Sea along the slope edge (haddock) or along the coast (cod) and drift into the Barents Sea. Marine mammals and seabirds, although comprising only a relatively small percentage of the biomass and production in the region, play an important role as consumers of zooplankton and small fish. While top-down control by predators certainly is significant within the two regions, there is also ample evidence of bottom-up control. Climate variability influences the distribution of several fish species, such as cod, herring and blue whiting, with northward shifts during extended warm periods and southward movements during cool periods. Climate-driven increases in primary and secondary production also lead to increased fish production through higher abundance and improved growth rates.  相似文献   

12.
Inter‐decadal and geographic variations in the diets of Steller sea lion, Eumetopias jubatus, were examined based on the contents of 408 stomachs collected from coastal areas around Hokkaido Island during the periods 1994–1998 and 2005–2012. The most important prey species in the 1990s were gadid fishes (walleye pollock [Gadus chalcogrammus], Pacific cod [Gadus microcephalus] and saffron cod [Eleginus gracilis]). The frequency of occurrence and gravimetric contribution of gadids decreased in the 2000s latter period at three study sites (Rausu, Shakotan and Rebun) and were replaced by Okhotsk Atka mackerel (Pleurogrammus azonus) and smooth lumpsucker (Aptocyclus ventricosus). However, analysis based on gravimetric composition indicated that the dietary diversity of prey showed only a slight inter‐decadal difference, reflecting the wide diversity of prey ingested during both study periods. These results indicate that Steller sea lions along the Hokkaido coast are opportunistic feeders that utilize a wide variety of prey, and appear to feed mainly upon prey that is easily obtained.  相似文献   

13.
The southern blue whiting Micromesistius australis (Norman, 1937) is found in two geographically distinct areas, the South Atlantic and south‐west Pacific Oceans. To date there has been no appraisal of the genetic relationships between the populations in these two areas. Here, we present analyses of New Zealand and Falkland southern blue whiting using mini‐ and microsatellite loci. Two out of six loci show highly significant allele frequency heterogeneities between the two areas, strongly suggesting genetically distinct populations.  相似文献   

14.
Rüdiger  Berghahn 《Marine Ecology》1996,17(1-3):251-260
Abstract. The brown shrimp Crangon crungon is considered to be a key species in the coastal waters of the North Sea and in particular in the Wadden Sea, since it occurs in masses and acts as both a highly efficient predator and important prey. The Wadden Sea is the nursery ground for brown shrimp. In 1990, a mass invasion of O-group whiting ( Merlangius merlangus ) reduced Crangon numbers to almost zero. Similar events, which had previously been reported in the 19th century, were observed in 1959 (whiting), 1970 (cod, Gadus morhua ), and 1983 (cod and whiting).
The 1990 invasion and the decline of the shrimp stock are documented on the basis of surveys that are compared with the years preceding and following. Consequences for the food web in the Wadden Sea and the reasons for the complete recovery of the shrimp stock in each case within one year after its collapse are discussed with regard to the Crangon crungon behaviour and reproductive potential. Sampling error and the impact of fisheries are also considered.  相似文献   

15.
16.
Dietary samples collected at Campbell Island in summer 1997 indicate that southern blue whiting (Micromesistius australis) formed the bulk of the food of black‐browed albatrosses (Diomedea melanophrys impavida) during the chick‐rearing period. Birds preyed upon a single size class of fish with a mode at 80–90 mm standard length; fish were 4–5 months old and belonged to the 0+ age group. Satellite tracking showed that, when performing trips of short duration, adult albatrosses foraged within the 1000 m depth contour in the subantarctic zone north of Campbell Island. The feeding ecology of albatrosses thus suggests that juvenile (0+) southern blue whiting are pelagic and occur in dense schools in the top 5 m of the water column over the Campbell Plateau during the summer months. The high reliance of birds on juvenile southern blue whiting during the chick‐rearing period has implications for the management of the southern blue whiting fishery and the conservation of black‐browed albatrosses and other marine predators occurring in the New Zealand subantarctic area.  相似文献   

17.
The ontogenetic, seasonal, bathymetric and regional variations in the feeding spectrum of 922 specimens of southern blue whiting Micromesistius australis and 512 specimens of hoki Macruronus magellanicus were studied on the Falkland Islands’ shelf (Southwest Atlantic) between November 1999 and April 2003. A total of 49 different prey items were found in the stomach contents of the two species, with the hyperiid Themisto gaudichaudii and Euphausiacea being amongst the most important prey. Although the species composition did not change over fish size, the proportions of individual prey items in their diets did, with an increase in T. gaudichaudii and Euphausiacea with increasing fish size in southern blue whiting. The opposite occurred in hoki. Seasonal variations in the diet were found to mirror the seasonal abundance of prey around the Falkland Islands for the two species. Intra-specific differences in the diet of both predators reflected the distribution of prey, which in turn was determined by the water structure in the two regions sampled, leading to very different diets. In the limited time that the two species occupied the same space there was little or no competition resulting in almost total segregation of their trophic niches in space and time.  相似文献   

18.
The black scabbardfish is a deep water species of high commercial interest in the NE Atlantic. Specimens were collected from commercial trawls to the west of the British Isles and from longliners operating near Madeira between September 2008 and May 2010. Stomach content analysis was confined to samples from the northern area, because of a high number of empty stomachs from Madeira. Stable isotope analyses identified that black scabbardfish feeds on species with epipelagic and benthopelagic affinities. For the west of British Isles, the δN values were significantly different between seasons suggesting a change in the diet throughout the year. Black scabbardfish have higher δN and δC values compared with other co-occurring benthopelagic feeders and lower nitrogen values than the true benthic predators and/or scavengers. Comparison with stable isotope analysis in samples from Madeira indicated that black scabbardfish feed at a similar trophic level and has the same trophic niche width in both areas, assuming similar baseline isotope compositions. The diet in the northern area comprised fish (68% N), crustaceans (22% N) and cephalopods (15% N) with blue whiting (Micromesistius poutassou) constituting 40% of the prey. Seasonal shift in diet was observed, with a predominance of blue whiting (70%) in the first quarter of the year, shifting to a more diverse diet in the remainder of the year. These results indicate that the diet of black scabbardfish is closely linked with the seasonal migration of blue whiting and that they likely select prey in proportion to availability. This study demonstrates that the combined used of both methods can elucidate the trophic ecology of black scabbardfish, in situations where conventional methods alone provide insufficient data.  相似文献   

19.
The food and feeding habits of hoki (Macruronus novaezelandiae), southern blue whiting (Micromesistius australis), javelin fish (Lepi‐dorhynchus denticulatus), ling (Genypterus blacodes), smooth rattail (Coelorinchus aspercephalus), silverside (Argentina elongata), and small‐scaled notothenid (Notothenia microlepidota) sampled from the Campbell Plateau in 1979 were examined. The importance of prey items in the diet has been assessed by an ‘index of relative importance’, which combines measurements of frequency of occurrence, number, and weight of prey. Hoki, southern blue whiting, and javelin fish are pelagic feeders. Hoki preyed largely on natant decapod crustaceans, amphipods, and myctophid and photichthyid fishes. The main prey of southern blue whiting were amphipods, natant decapods, and euphausiids. Javelin fish fed on natant decapods, amphipods, and small squid. Seasonal and regional differences in feeding, and dietary changes with length of fish were evident. Ling, smooth rattail, silverside, and small‐scaled notothenid are predominantly benthic feeders. Ling preyed on natant decapods, macrourid fishes, and small hoki. The diet of rattail comprised natant decapod crustaceans, opal fishes (Hemerocoetes spp.), and poly‐chaetes. Silverside fed almost solely on salps. Salps, amphipods, brachyuran crustaceans, and opal fishes were the main prey of small‐scaled notothenid.  相似文献   

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