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21.
An artificial oyster‐shell reef for the culture and stock enhancement of sea cucumber,Apostichopus japonicus,in shallow seawater
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Libin Zhang Tao Zhang Qinzeng Xu Tianlong Qiu Hongsheng Yang Shilin Liu 《Aquaculture Research》2015,46(9):2260-2269
Because of its high nutritional value and health benefits, aquaculture production of Apostichopus japonicus in China is the largest of any single species. Therefore, the development of new farming methods is of considerable significance. In this study, discarded oyster shells have been used to create an artificial reef for the culture of this species. The results have shown that from 6th March 2009 to 26th November 2009, the wet weight of sea cucumber increased from 49.57 ± 1.16 to 79.87 ± 1.46 g ind?1. Between 16th July and 18th October, the specific growth rate and daily weight gain of A. japonicus differed significantly from other periods. Population density was higher within the reef compared with outside the reef area, and the difference was significant (P < 0.01). The maximum distance between A. japonicus individuals within the reef area on 3rd March and 16th July was 65.0 ± 3.3 and 62.9 ± 4.4 cm, respectively, but the difference was not significant (P > 0.05). The diatom species attached to the oyster shells were similar to those found in the stomach content of A. japonicus. In conclusion, the oyster‐shell reef provides a suitable habitat and shelter for the culture of the sea cucumber, A. japonicus. 相似文献
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23.
The influence of dietary fatty acid and fasting on the hepatic lipid metabolism of barramundi (Lates calcarifer)
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Bruno Araújo Michael Salini Brett Glencross Nicholas Wade 《Aquaculture Research》2017,48(7):3879-3893
For many fish species, dietary fish oil (FO) has been substituted with other oils such as poultry oil (PO) without affecting growth performance. However, in barramundi, the mechanisms by which fatty acid metabolism is regulated are poorly understood, and the effects of FO substitution are unknown. This study defined changes in the expression of genes controlling the metabolism of fatty acids in barramundi over a 24‐h time period after a single meal. From one to 12 h after a single feeding event, the expression of fatty acid synthesis genes in the liver was upregulated, while genes involved in the β‐oxidation showed minimal alteration. However, the expression of β‐oxidation genes was significantly correlated with the expression of genes regulating fatty acid synthesis. In a second experiment, the changes in liver fatty acid composition and gene expression were defined after FO was substituted with PO. Liver fatty acid profile reflected the diet composition, with some subtle exceptions supporting the enrichment of certain long‐chain polyunsaturated fatty acids in the liver. The fish from all experimental groups preferentially retained more docosahexaenoic acid than eicosapentaenoic acid in the liver, suggesting a bioconversion of this fatty acid to intermediate fatty acids. Replacement of FO with PO significantly regulated genes controlling both fatty acid synthesis and catabolism pathways, potentially related to a higher percentage of monounsaturated fatty acids, in the livers of fish fed these diets. The results demonstrated that diet composition significantly altered the lipid metabolism in barramundi and that there was a balance between direct dietary effects and endogenous synthetic capacity. 相似文献
24.
仿刺参肠道潜在益生菌对稚参生长、免疫及抗病力的影响 总被引:2,自引:1,他引:2
以稚参期仿刺参为研究对象,探讨了分离自仿刺参肠道的潜在益生菌在稚参养殖中的应用效果。采用16S rDNA序列分析法将3株潜在益生菌分别鉴定为Bacillus sp.(GSC-1)、Bacillus sp.(GSC-2)和Enterococcus sp.(GSC-3)。分别以103、105或107 CFU/mL的GSC-1、GSC-2、GSC-3或灿烂弧菌浸浴稚参以检验潜在益生菌对稚参期仿刺参的安全性,7 d后各潜在益生菌浸浴组的稚参成活率均高于同浓度的灿烂弧菌处理组;GSC-1和GSC-3在实验浓度下对稚参成活率无显著影响(P>0.05),可作为稚参的潜在益生菌;而107 CFU/mL GSC-2浸浴组稚参的成活率显著低于对照组(P<0.05),因此GSC-2不适合作为稚参的潜在益生菌。将潜在益生菌GSC-1和GSC-3以109 CFU/g的比例与鼠尾藻粉混合后饲养稚参20 d,潜在益生菌处理组的稚参成活率、特定生长率和变色率均高于对照组,其中GSC-1处理组稚参的成活率和变色率显著提高(P<0.05),GSC-3处理组稚参的成活率和特定生长率显著提高(P<0.05);与对照组相比,潜在益生菌GSC-1和GSC-3均有效增加了稚参的总菌数(P<0.05),GSC-1还有效降低了稚参的弧菌数(P<0.05);潜在益生菌GSC-1和GSC-3均可显著提高稚参体组织中的酚氧化酶和溶菌酶活力(P<0.05),GSC-1亦显著提高了其酸性磷酸酶和超氧化物歧化酶活力(P<0.05);GSC-1和GSC-3处理组稚参的抗灿烂弧菌感染能力均高于对照组,其中GSC-3显著降低了灿烂弧菌攻毒后稚参的死亡率(P<0.05)。综上所述,潜在益生菌GSC-1和GSC-3对稚参期刺参安全无毒,能够促进稚参的健康生长并提高其抗病能力,因而GSC-1和GSC-3均可作为益生菌应用于稚参养殖中。 相似文献
25.
26.
Cloning and expression analysis of innate immune genes from red sea bream to assess different susceptibility to megalocytivirus infection
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As suggested by the Office International des Epizooties (OIE), fishes belonging to the genus Oplegnathus are more sensitive to megalocytivirus infection than other fish species including red sea bream (Pagrus major). To assess the roles of the innate immune response to these different susceptibilities, we cloned the genes encoding inflammatory factors including IL‐8 and COX‐2, and the antiviral factor like Mx from red sea bream for the first time and performed phylogenetic and structural analysis. Analysed expression levels of IL‐1β, IL‐8 and COX‐2 and the antiviral factor like Mx genes performed with in vivo challenge experiment showed no difference in inflammatory gene expression or respiratory burst activity between red sea bream and rock bream (Oplegnathus fasciatus). However, the Mx gene expression levels in red sea bream were markedly higher than those in rock bream, suggesting the importance of type I interferon (IFN)‐induced proteins, particularly Mx, during megalocytivirus infection, rather than inflammation‐related genes. The in vitro challenge experiments using embryonic primary cultures derived from both fish species showed no difference in cytopathic effects (CPE), viral replication profiles, and inflammatory and Mx gene expression pattern between the two fish species. 相似文献
27.
The static or declining supply of fish oil from industrial fisheries demands the search of alternatives, such as plant (vegetable)
oils, for diets in expanding marine aquaculture. Vegetable oils are rich in C18 polyunsaturated fatty acids but devoid of the n-3 highly unsaturated fatty acids in fish oils. Previous studies, primarily
with salmonids, have shown that including vegetable oils in their diets increased hepatocyte fatty acid desaturation. In the
present study, we have investigated the effects of dietary partial substitution of fish oil (FO) with rapeseed oil (RO), linseed
oil (LO) and olive oil (OO) on the desaturation /elongation and, -oxidation capacities of [1-14C]18:3n-3 in isolated hepatocytes from European sea bass (Dicentrarchus labrax L.), in a simultaneous combined assay. Fish were fed during 34 weeks with diets containing 100% FO, or RO, LO and OO, each
included at 60% with the balance being met by FO, with no detrimental effect upon growth or survival. The highest total desaturation
rates were found in hepatocytes of fish fed FO diet (0.52±0.08 pmol/h/mg protein) and OO diet (0.43±0.09 pmol/h/mg protein),
which represented 3.2% and 2.7% of total [1-14C]18:3n-3 incorporated, respectively. In contrast, lowest desaturation rates were presented by hepatocytes of fish fed LO
and RO diets (0.23±0.06 and 0.14±0.05 pmol/h/mg protein, respectively) represented 1.4% and 0.9% of total [1-14C]18:3n-3 incorporated, respectively. The rates of [1-14C]18:3n-3 β-oxidized were between 11-fold and 35-fold higher than desaturation. However, no significant differences were observed
among β-oxidation activities in hepatocytes of fish fed any of the diets. The present study demonstrated that the European
sea bass, as a carnivorous marine fish, presented a ‘marine’ fish pattern in the metabolism of 18:3n-3 to 20:5n-3 and 22:6n-3.
This species appeared to have all the enzymic activities necessary to produce 22:6n-3 but presented only extremely low rates
of fatty acid bioconversion. Furthermore, nutritional regulation of hepatocyte fatty acid desaturation was minimal, and dietary
vegetable oils did not increase desaturase activities, and in RO and LO treatments the activity was significantly lower.
This revised version was published online in July 2006 with corrections to the Cover Date. 相似文献
28.
Peng Zhang Shuanglin Dong Fang Wang Han Wang Wei Gao Yi Yan 《Aquaculture Research》2012,43(11):1611-1619
Sea cucumber, Apostichopus japonicus (Selenca), tolerates salinity fluctuations inhabiting intertide zone. This study deals with growth, food intake, food conversion and the bioenergetic responses of the red variant (wet weight of 2.60 ± 0.11g) and green variant (wet weight of 2.56 ± 0.08 g) A. japonicus to different salinities of 22, 26, 30, 34, and 38 psu at 16.5 ± 0.5°C. The results showed that salinity had a significant effect on specific growth rate (SGR) of both green and red variants A. japonicus (P < 0.05). Both colour variants of sea cucumber had highest SGR at 30 psu, and then decreased when salinity below or above this point. Maximum SGR (the green 1.07 ± 0.08% day?1, the red 1.14 ± 0.09% day?1 respectively) is related with maximum food intake (FI) and highest food conversion efficiency (FCE) (P < 0.05) occurring at 30 psu. Only under 22 psu, the green variant grew faster than the red variant (P < 0.05), and under other four salinity treatments there was no significant difference between SGR of two colour variant holothruians (P > 0.05). Values of adaptable salinity scope for green and red variants sea cucumber survival are 18.5~39 psu and 20.9~38.6 psu respectively. The average energy budget formula of sea cucumber at 30 psu was: 100C = 6G +42F +3U+49R (C, energy ingested; G, energy for growth; F, energy loss as faeces; U, energy used for ammonia excretion; R, energy loss for respiration). The sea cucumber had maximum energy ingested (C) and highest proportion of energy for growth (G) at 30 psu, and then decreased when salinity is above or below this salinity. Both red and green variants of A. japonicus deposited for growth were very low, and the energy loss in faeces and energy for respiration accounted for the majority of assimilation energy. The result clearly showed that the optimum condition for farming green and red variants A. japonicus, both with respect growth and energy allocation, is the salinity scope of 26 ~ 30 psu. 相似文献
29.
David G Ainley Nadav Nur Joseph T Eastman Grant Ballard Claire L Parkinson Clive W Evans Arthur L. DeVries 《Fish and Fisheries》2013,14(3):343-363
We report the analyses of a dataset spanning 39 years of near‐annual fishing for Dissostichus mawsoni in McMurdo Sound, Antarctica, 1972–2011. Data on total length, condition and catch per unit effort (CPUE) were derived from the > 5500 fish caught, the large majority of which were measured, tagged and released. Contrary to expectation, the length frequency of the McMurdo Sound catch was dominated by fish in the upper two‐thirds of the overall distribution exhibited in the industrial catch for the Ross Sea shelf. Fish length and condition increased from the early 1970s to the early 1990s and then decreased. Fish length positively correlated with Ross Sea ice extent in early spring, a relationship possibly caused by more ice encouraging larger fish to move farther south over the shelf and into the study area. Fish condition positively correlated with the amount of open water in the Ross Sea during the previous summer (Feb), perhaps reflecting greater availability of prey with the higher productivity that more open water brings. Decreasing fish size corresponds to the onset of the fishery, which targets the large individuals. CPUE was constant through 2001 and then decreased dramatically. We hypothesize that this decrease is related to the industrial fishery, which began in the 1996–97 austral summer, and concentrates effort over the ice‐free Ross Sea continental slope. As a result of limited prey choices and close coupling among mesopredators of the region, Antarctic toothfish included, the fishery appears to be dramatically altering the trophic structure of the Ross Sea. 相似文献
30.
我国海洋牧场建设回顾与展望 总被引:7,自引:12,他引:7
海洋牧场是基于海洋生态学原理和现代海洋工程技术,充分利用自然生产力,在特定海域科学培育和管理渔业资源而形成的人工渔场。海洋牧场的特点包括以增加渔业资源量为目的、具有明确的边界和权属、苗种主要来源于人工育苗或驯化、通过放流或移植进入自然海域、主要以天然饵料为食和对资源实施科学管理等。早在1965年,我国学者曾呈奎先生就原创性地提出在海洋中通过人工控制种植或养殖海洋生物,建设"牧场"的理念。上世纪八十年代以来,我国海洋牧场经历了从增殖放流、人工鱼礁建设到系统化的海洋牧场发展过程,在取得巨大成就的同时,也面临着海洋牧场的涵义应用过于宽泛、缺乏统筹规划和科学论证、忽视海洋牧场生态作用以及忽视项目评估和系统管理等问题。展望未来,我国的海洋牧场建设应在"生态优先、陆海统筹、三产贯通、四化同步、创新跨越"的发展理念指导下,加强海洋牧场建设的宏观引导、推动海洋牧场体系化建设、实施海洋牧场企业化运营,在获得经济效益的同时,实现产业繁荣和保持健康生态系统的和谐统一。 相似文献