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1.
大眼金枪鱼渔业现状和生物学研究进展   总被引:1,自引:0,他引:1  
结合各海区大眼金枪鱼的产量,对大眼金枪鱼在各海区的渔业历史和现状,按照不同渔具进行了分析。并对其分布、运动模式、牛理特性、年龄和生长、繁殖、食性以及种群结构等生物学作了具体的阐述。  相似文献   

2.
中西太平洋金枪鱼渔业的现状和展望(1)   总被引:13,自引:0,他引:13  
本文主要介绍了中西太平洋金枪鱼渔业的现状,较详细概述最近几年鲣鱼、黄鳍金枪鱼、大眼金枪鱼和长鳍金枪鱼的渔获量变化和渔场分布,主要远洋渔业国家和地区四种作业方式的生产情况。提供国内远洋渔业公司参考。  相似文献   

3.
金枪鱼渔业和虾类渔业一样,是世界性重要的渔业。金枪鱼(蓝金枪、副金枪、长鳍金枪、黄鳍金枪鱼等)是大洋洄游性鱼类,广泛分布于太平洋、印度洋、大西洋,其中以太平洋的产量为最高(约占70%),其次是大西洋和印度洋。  相似文献   

4.
上世纪80年代以来,金枪鱼渔业发展相当迅速,已成为当前世界海洋渔业重要组成之一.金枪鱼渔业中的鱼类主要指黄鳍金枪鱼、大眼金枪鱼,长鳍金枪鱼、蓝鳍金枪鱼,鲣鱼等五种,有的包括箭鱼和旗鱼等.  相似文献   

5.
海山是海底重要的生物栖息地类型之一,是研究海洋生物多样性的热点区域。黄鳍金枪鱼(Thunnus albacares)广泛分布于中西太平洋,具有极高的生态和经济价值,然而,鲜有关于海山及其相关特征对黄鳍金枪鱼资源丰度和分布影响的研究。基于2010—2021年中西太平洋渔业委员会(Western and Central Pacific Fisheries Commission, WCPFC)汇总的延绳钓和围网渔业数据结合海山特征数据,采用广义加性模型(Generalized additive model, GAM)分析两种不同捕捞方式的黄鳍金枪鱼单位捕捞努力量渔获量(Catch per unit effort, CPUE)与海山相关特征之间的关系。结果表明,中西太平洋两种渔业方式的黄鳍金枪鱼渔获量主要来源于海山区域,海山特征对两种渔业黄鳍金枪鱼的CPUE均产生了极显著性影响(P<0.001)。在延绳钓渔业中,较高的CPUE出现在山顶深度、粗糙度、底面积和海山密度较小、坡度较缓的区域;而在围网渔业中,较高的CPUE则出现在粗糙度较小、山顶深度较大、底面积较大、较陡峭且密集的海山区域。研...  相似文献   

6.
金枪鱼类的渔场环境奈须敬二金枪鱼类包括金枪鱼(鲢)、副金枪鱼、黄鳍金枪鱼、南方金枪鱼及长鳍金枪鱼等,在世界海域分布很广,除北冰洋外,各大洋均有踪迹。在南半球,以南方金枪鱼渔场的水温最低,它分布于亚寒带海域。副金枪鱼及黄鳍金枪鱼分布于热带一温带海域,而...  相似文献   

7.
西沙群岛附近海区金枪鱼类仔稚鱼的调查研究报告   总被引:1,自引:0,他引:1  
张仁斋 《水产学报》1981,5(4):301-316
本文是根据,1975年1月至1976年5月,在西沙群岛附近海区采集到的金枪鱼类仔稚鱼标本,进行研究鉴定的结果。共鉴定了双棱线鲅、鲣、鲔、扁舵鲣、金枪鱼、黄鳍金枪鱼和副金枪鱼等7种,作了形态描述,并对它们的分布和产卵期等作了初步探索。  相似文献   

8.
根据2013年中水集团远洋股份有限公司的两艘金枪鱼延绳钓船的渔场数据、放钓数据以及渔获物数据,研究了全年各月份渔场分布情况及主要渔获物单位捕捞努力量渔获量变化。结果表明,渔获物包括长鳍金枪鱼、黄鳍金枪鱼、大眼金枪鱼、旗鱼类等,根据相对重要性指数,确定优势种为黄鳍金枪鱼和长鳍金枪鱼,其相对多度分别为75%和10%。长鳍金枪鱼的日均高产单位捕捞努力量渔获量渔区集中在S 15°~17°纬度区间以及南部S 26°~27°纬度区间,黄鳍金枪鱼高单位捕捞努力量渔获量渔区集中分布在S 8°~13°的纬度区间,长鳍金枪鱼高产渔区海表温度集中在20~22℃和27~30℃,黄鳍金枪鱼高产渔区则集中在海表温度28~29℃海域。  相似文献   

9.
黄鳍金枪鱼垂直移动及水层分布研究进展   总被引:1,自引:0,他引:1  
黄鳍金枪鱼(Thunnus albacares)为大洋性高度洄游鱼种,具有高速和深水游动能力,能够快速下潜至温跃层(20℃等温线)以下冷水区域觅食,最大深度甚至超过1000 m[1-4]。黄鳍金枪鱼垂直分布受海洋环境和饵料生物影响,进而影响渔船捕捞和效率[5]。因此获悉黄鳍金枪鱼垂直分布特征,不仅能辅助远洋渔场作业,对了解黄鳍金枪鱼鱼群垂直移动规律、分布习性和资源评估也至关重要。笔者综合国内外研究进展,综述了黄鳍金枪鱼垂直活动研究方法、垂直活动和水层分布及其影响因素在渔业生产和改进资源评估中应用,并对未来的研究内容进行展望。  相似文献   

10.
2003年中西太平洋金枪鱼渔业生产状况   总被引:3,自引:1,他引:3  
中西太平洋海区的鲣鱼、金枪鱼类产量2002年为198万t占全球总产量410.5万t的48%,几乎接近一半,表明是一个金枪鱼类的重要渔场。另则,我国约有一半的远洋金枪鱼渔船在中西太平洋生产作业,又可见对我国远洋渔业的发展之重要。因此,现将对该海区的鲣鱼、黄鳍金枪鱼、大眼金枪鱼、长鳍金枪鱼四鱼种的生产和资源状况整理如下,仅供参考。  相似文献   

11.
中西太平洋金枪鱼围网黄鳍金枪鱼渔获时空分析   总被引:3,自引:4,他引:3  
沈建华  崔雪森 《海洋渔业》2006,28(2):129-135
中西太平洋的金枪鱼围网渔业目前的年产量约在1×106t左右,其中黄鳍金枪鱼占有很重要的地位。本文通过对围网捕获的黄鳍金枪鱼渔获数据进行时间序列以及空间位置变化等时空分析,试图找出其变化规律以及趋势。结果表明,20世纪70年代以来,随着渔船数的增加,中西太平洋围网捕获的黄鳍金枪鱼渔获量分布,从太平洋岛屿近海逐渐向太平洋热带中部海域扩展。渔获量经度重心随着中西太平洋金枪鱼围网渔业的发展有向东移动的趋势,70年代在128°E附近,到80年代在145°E左右,90年代在152°E左右,近年在155°E左右。而黄鳍金枪鱼渔获量纬度重心位于赤道区域,70年代在3°30′N附近,80年代在0°30′N左右,90年代在0°40′S左右,近年在1°20′S左右。经纬度5°×5°小区范围内10年内的最高总产量则从70年代的8×104t,增加到90年代超过20×104t。渔获量空间分布除了随着渔业发展向外海扩展以外,还受到被称为南方涛动的ENSO现象的明显影响,一般来说渔获量经度中心在厄尔尼诺年比较偏东,在拉尼娜年比较偏西,渔获量纬度重心在厄尔尼诺年或次年比较偏南,在拉尼娜次年比较偏北。此外,黄鳍金枪鱼渔获量经度重心在厄尔尼诺年变化比较大,渔获量纬度重心在厄尔尼诺年或次年变化比较大。  相似文献   

12.
《水生生物资源》2000,13(4):233-240
Since 1991, fishing operations on tuna schools associated with drifting Fish Aggregating Devices (FADs) have become widespread in the purse seine fishery in the Gulf of Guinea. In the offshore South Sherbro area (0–5° N, 10–20° W), FAD-associated catches represent about 75 % of the total catch. This FAD fishery exploits concentrations of skipjack mixed with a smaller amount of bigeye and yellowfin tuna of similar size (46 cm), and some large yellowfin. Catches on unassociated tuna schools are mainly composed of large yellowfin in breeding phase and skipjack. Here we studied tuna diet in relation with the aggregation mode (FAD-associated or unassociated tuna schools), species, and size. The stomach contents of around 800 fish were analysed. Numerous empty stomachs were found, especially in fish caught under FADs. Diets were similar for all small-size tuna sharing the same aggregation type. Small tuna mainly feed on Vinciguerria nimbaria (Photichthyidae), a mesopelagic fish of the micronekton, whereas large tuna mainly feed on Scombridae, mixed with Cubiceps pauciradiatus (Nomeidae) when they were caught in unassociated schools. The feeding habits of tuna are discussed with emphasis on the behavior of V. nimbaria. Estimations of the daily ration of similarly sized tuna with the same aggregation mode were very close. The low estimated rations for small, FAD-associated tuna show that logs do not have a trophic function, but rather are a refuge. In contrast, FADs seem to influence the diet of large tuna because of the Scombridae prey that probably is associated to the FAD.  相似文献   

13.
中西太平洋金枪鱼围网渔获物组成分析   总被引:7,自引:6,他引:1  
根据 2 0 0 4年 7月 2 8日至 9月 1日在中西太平洋海域的金枪鱼围网生产调查结果 ,以及“金汇 2号”2 0 0 3年全年的生产数据 ,对中西太平洋金枪鱼围网渔获物组成进行了初步分析。结果显示 ,渔获物种类有鲣鱼 (Katsuwonuspelamis)、黄鳍金枪鱼 (Thunnusalbacares)和大眼金枪鱼 (Thunnusobesus)等 19种 ;渔获物重量组成中鲣鱼占 70 .5 1% ,黄鳍金枪鱼占 2 6 .92 % ,其它鱼类占 2 .5 6 % ;鲣鱼的叉长范围为 2 7~ 81cm ,优势叉长组为 4 0~ 5 0cm ,占 4 1% ;黄鳍金枪鱼叉长范围为 32~ 16 5cm ,优势叉长组为 5 0~ 70cm ,占 33% ,另一优势叉长组为 110~ 130cm ,占 2 0 % ;渔获物重量组成存在海域差异 ,在 16 2°E以东海域鲣鱼比例高于以西海域 ,黄鳍金枪鱼则是在 16 2°E以西海域的比例较高。  相似文献   

14.
To analyze the effects of mesoscale eddies, sea surface temperature (SST), and gear configuration on the catch of Atlantic bluefin (Thunnus thynnus), yellowfin (Thunnus albacares), and bigeye tuna (Thunnus obesus) and swordfish (Xiphias gladius) in the U.S. northwest Atlantic longline fishery, we constructed multivariate statistical models relating these variables to the catch of the four species in 62 121 longline hauls made between 1993 and 2005. During the same 13‐year period, 103 anticyclonic eddies and 269 cyclonic eddies were detected by our algorithm in the region 30–55°N, 30–80°W. Our results show that tuna and swordfish catches were associated with different eddy structures. Bluefin tuna catch was highest in anticyclonic eddies whereas yellowfin and bigeye tuna catches were highest in cyclonic eddies. Swordfish catch was found preferentially in regions outside of eddies. Our study confirms that the common practice of targeting tuna with day sets and swordfish with night sets is effective. In addition, bluefin tuna and swordfish catches responded to most of the variables we tested in the opposite directions. Bluefin tuna catch was negatively correlated with longitude and the number of light sticks used whereas swordfish catch was positively correlated with these two variables. We argue that overfishing of bluefin tuna can be alleviated and that swordfish can be targeted more efficiently by avoiding fishing in anticyclonic eddies and in near‐shore waters and using more light sticks and fishing at night in our study area, although further studies are needed to propose a solid oceanography‐based management plan for catch selection.  相似文献   

15.
中西太平洋金枪鱼围网鲣鱼渔获量时空分布分析   总被引:8,自引:6,他引:8  
中西太平洋的金枪鱼围网渔业目前的年产量约在100×104t左右,其中鲣鱼占有很重要的地位。本文通过对20世纪70年代以来围网捕获的鲣鱼渔获数据进行时间序列以及空间位置变化等时空分析,试图找出其变化规律以及趋势。结果表明,从20世纪70年代以来,随着渔船数的增加,中西太平洋的围网捕获的鲣鱼渔获量分布,从太平洋岛屿近海逐渐向太平洋热带中部海域扩展。渔获量经度重心随着中西太平洋金枪鱼围网渔业的发展有向东移动的趋势,70年代在128°E附近变化,80年代在144°E左右,90年代在153°E左右,近年在158°E左右变化。而鲣鱼渔获量纬度重心位于赤道区域,70年代在2°N附近,80年代在1°30′S左右,90年代在2°50′S左右,近年在2°55′S左右变化。经纬度5°×5°单个小区范围内10年内的最高总产量则从70年代的11×104t,增加到90年代超过了69×104t。渔获量空间分布除了随着渔业发展向外海向赤道以南扩展以外,还受南方涛动(ENSO)现象的明显影响,一般来说在相邻的数年中渔获量经度中心在厄尔尼诺年比较偏东,在拉尼娜年比较偏西。  相似文献   

16.
中东太平洋金枪鱼延绳钓渔获物组成分析   总被引:4,自引:2,他引:2  
根据2000年9月至2002年8月两年的中东太平洋金枪鱼延绳钓探捕调查结果,对延绳钓渔获物组成进行了初步分析。结果显示,延绳钓的主要渔获种类有肥壮金枪鱼(Thunnus obesus)和黄鳍金怆鱼(Thunnus albacares)等15种大洋性鱼类,渔获物中金枪鱼类分别占重量和尾数的76.41%和76.91%,旗鱼类占11.05%和7.83%.鲨鱼类占10.80%和12.08%,其他鱼类占1.73%和3.18%。相对重要性指标(IRI)表明,延绳钓渔业以肥壮金枪鱼和黄鳍金枪鱼为目标鱼种,其他大型中上层经济鱼类为兼捕对象。各渔获种类的渔获重量组成比例月间变化和海域变化明显。  相似文献   

17.
近十年来,越南将南海的金枪鱼资源作为其"外向型"渔业的重要支撑,不断增加捕捞强度,产量逐年升高。本文总结了越南发展南海金枪鱼渔业的过程,分析了南海金枪鱼资源的开发趋势。越南现代化的金枪鱼捕捞技术主要来自日本,使用的渔具主要有金枪鱼延绳钓、手钓、刺网和小型围网,捕捞的种类主要为鲣鱼、黄鳍金枪鱼和大眼金枪鱼,主要作业区域在西沙群岛南部海域和南沙群岛海域。越南2009年金枪鱼的产量已达到5.9×104t,计划2015年达到30×104t。根据越南海洋渔业研究所(RIMF)的评估,南海中西部的金枪鱼资源量为66~67×104t,可捕量23.3×104t,其中鲣鱼的可捕量21.6×104t,黄鳍金枪鱼和大眼金枪鱼的可捕量1.7×104t。随着全球金枪鱼捕捞配额的缩减和越南"外向型"渔业经济的发展,越南将继续加强对南海金枪鱼资源的开发。  相似文献   

18.
Catch composition, catch rates, hooking location, and status at release at haulback were monitored during 81 experimental sets (launches and hauling fishing per day) in a commercial pelagic longline fishery targeting tuna in the equatorial South Atlantic Ocean. Circle hooks (size 18/0, 0° offset) and J-style hooks (size 9/0, 10° offset) with squid baits were deployed in an alternating fashion. The catch composition was not significantly different for most species between the two types of hooks, except for bigeye tuna, which showed a significantly higher proportion of catches on the circle hook (p ? 0.001) and for sailfish, pelagic stingray, and leatherback sea turtle, which had higher catch rates on the J-style hook (p = 0.018, p ? 0.001, and p = 0.044, respectively). Bigeye and yellowfin tuna showed significantly higher rates of survival at the time of gear retrieval with circle hooks, and circle hooks hooked bigeye tuna, yellowfin tuna, swordfish, and sailfish significantly more often externally than internally. Our results suggest that the use of size 18/0, 0° offset circle hooks in the equatorial pelagic longline fishery may increase the survival of bycatch species at the time of gear retrieval with minimal effects on the catches of target species.  相似文献   

19.
A better understanding of the relationships between oceanic environments and fishing conditions could make the utilization of fish more efficient, profitable, and sustainable. The current lack of high‐precision subsurface seawater information has long been a constraint on fishery research. Using near‐real‐time Argo observations, this paper presents a new approach called gradient‐dependent optimal interpolation. This approach provides daily subsurface oceanic environmental information according to fishery dates and locations. An experiment was conducted in the western and central Pacific Ocean using yellowfin tuna (YFT) catch data in August 2017. The results of seawater temperature and salinity represented differences of less than ±0.5°C and ±0.05, respectively, according to verification of error analysis and truth‐finding comparisons. After applying the constructed temperature and salinity profiles, we described the relationship between subsurface information and yellowfin tuna catch distribution. Statistical analysis revealed that yellowfin tuna were more adapted to warmer and saltier seawater. At the near‐surface (<5 m), the most suitable temperature was 28–29°C, although yellowfin tuna can endure a temperature range from 11 to 12°C at a depth of 300 m. The corresponding upper boundary of the thermocline was approximately 75 m, with a mean strength of 0.074°C/m, and the most suitable salinity for yellowfin tuna was 34.5–36.0 at depths shallower than 300 m. These results indicated that the constructed subsurface information was very close to the true values and they had high spatial and temporal accuracy.  相似文献   

20.
The physical environment directly influences the distribution, abundance, physiology and phenology of marine species. Relating species presence to physical ocean characteristics to determine habitat associations is fundamental to the management of marine species. However, direct observation of highly mobile animals in the open ocean, such as tunas and billfish, is challenging and expensive. As a result, detailed data on habitat preferences using electronic tags have only been collected for the large iconic, valuable or endangered species. An alternative is to use commercial fishery catch data matched with historical ocean data to infer habitat associations. Using catch information from an Australian longline fishery and Bayesian hierarchical models, we investigate the influence of environmental variables on the catch distribution of yellowfin tuna (Thunnus albacares). The focus was to understand the relative importance of space, time and ocean conditions on the catch of this pelagic predator. We found that pelagic regions with elevated eddy kinetic energy, a shallow surface mixed layer and relatively high concentrations of chlorophyll a are all associated with high yellowfin tuna catch in the Tasman Sea. The time and space information incorporated in the analysis, while important, were less informative than oceanic variables in explaining catch. An inspection of model prediction errors identified clumping of errors at margins of ocean features, such as eddies and frontal features, which indicate that these models could be improved by including representations of dynamic ocean processes which affect the catch of yellowfin tuna.  相似文献   

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