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1.
为阐明全球气候变暖和微塑料复合胁迫对长牡蛎(Crassostrea gigas)免疫应答、氧化应激和能量代谢的影响,本研究采用3个微塑料(microplastics, MPs)水平[无微塑料、小粒径聚苯乙烯微塑料(SPS-MPs,6μm)和大粒径聚苯乙烯微塑料(LPS-MPs,50~60μm)]和2个温度水平(20℃和25℃)对长牡蛎进行了为期21 d的单一和复合暴露,检测分析了各组长牡蛎血细胞功能[吞噬活性、活性氧(reactive oxygen species,ROS)含量]、糖原含量以及免疫相关基因表达的变化。研究结果表明,SPS-MPs暴露能增加长牡蛎血淋巴细胞中ROS含量,降低血细胞吞噬活性,揭示SPS-MPs毒性作用更强。升温与微塑料的协同作用增加了长牡蛎消化腺组织中的糖原含量。实时荧光定量PCR结果显示,升温与SPS-MPs复合暴露组长牡蛎消化腺组织通过上调热休克蛋白90 (heat shock protein90, HSP90)、核因子κB抑制蛋白(inhibitor of NF-κB, IκB)和p53基因表达量进行免疫应答;升温与微塑料的拮抗作用增加了鳃组织p53基...  相似文献   
2.
选取数量性状有较大差异的6个近江牡蛎(Crassostrea hongkongensis)作为亲本,成功建赢了9个半同胞家系,并对各个家系的受精、孵化、成活和早期生长的情况进行比较。结果显示,各家系子代的受精率、9孵化率和成活率均受亲本成熟度的影响;各家系的早期生长中,家系CH1、CH4和CH7的生长率大于其他家系;近江牡蛎幼虫的早期生长阶段受母本效应影响明显。  相似文献   
3.
太平洋牡蛎三倍体诱导及苗种培育技术研究   总被引:1,自引:0,他引:1  
本文报道了采用细胞松弛素B(CB)诱导太平洋牡蛎三倍体的研究结果。研究结果表明,CB浓度为0.25mg/L,处理时间约20分钟,诱导三倍体的倍化率可达75%,至D型幼虫的孵化率为40-50%。1992-1996年其培育出三倍体贝苗1846.4万枚。  相似文献   
4.
亚硒酸钠和牡蛎多糖合成硒化牡蛎多糖(SeOPS),纤维素DE-52分离纯化,红外光谱结构表征。DPPH·,ABTS+和·OH清除作用及铁还原力测定SeOPS抗氧化活性。MTT法检测SeOPS抑制肿瘤细胞增殖能力,采用流式细胞术检测SeOPS对细胞周期和凋亡的影响。结果表明,SeOPS具有清除DPPH·和ABTS+作用,IC50值分别为7.102 mg/m L和2.243 mg/m L。·OH及铁还原力清除效果与牡蛎多糖(OPS)无显著差别。SeOPS阻滞人宫颈癌(Hela)细胞G0/G1期及肝癌(HepG2) S期的发育,诱导细胞凋亡,从而抑制肿瘤细胞的增殖。  相似文献   
5.
Pacific oysters (Crassostrea gigas) may bio-accumulate high levels of paralytic shellfish toxins (PST) during harmful algal blooms of the genus Alexandrium. These blooms regularly occur in coastal waters, affecting oyster health and marketability. The aim of our study was to analyse the PST-sensitivity of nerves of Pacific oysters in relation with toxin bio-accumulation. The results show that C. gigas nerves have micromolar range of saxitoxin (STX) sensitivity, thus providing intermediate STX sensitivity compared to other bivalve species. However, theses nerves were much less sensitive to tetrodotoxin. The STX-sensitivity of compound nerve action potential (CNAP) recorded from oysters experimentally fed with Alexandrium minutum (toxic-alga-exposed oysters), or Tisochrysis lutea, a non-toxic microalga (control oysters), revealed that oysters could be separated into STX-resistant and STX-sensitive categories, regardless of the diet. Moreover, the percentage of toxin-sensitive nerves was lower, and the STX concentration necessary to inhibit 50% of CNAP higher, in recently toxic-alga-exposed oysters than in control bivalves. However, no obvious correlation was observed between nerve sensitivity to STX and the STX content in oyster digestive glands. None of the nerves isolated from wild and farmed oysters was detected to be sensitive to tetrodotoxin. In conclusion, this study highlights the good potential of cerebrovisceral nerves of Pacific oysters for electrophysiological and pharmacological studies. In addition, this study shows, for the first time, that C. gigas nerves have micromolar range of STX sensitivity. The STX sensitivity decreases, at least temporary, upon recent oyster exposure to dinoflagellates producing PST under natural, but not experimental environment.  相似文献   
6.
The multidisciplinary project “MOREST” aims to improve our understanding of causes of summer mortality in Crassostrea gigas juveniles in France and to reduce its impact on oyster production. As part of the MOREST project, 43 full-sib families nested within 17 half-sib families were produced, planted out and tested in 3 sites during summer 2001 to assess to what extent genetic variability exists for this trait. A strong genetic basis was found for survival as narrow-sense heritability estimates ranged from 0.47 to 1.08, with higher values in sites where summer mortality was higher. Genetic correlations across sites were positive and very high for survival, indicating no genotype by environment interaction. In contrast, lower genetic variation was observed for growth in all sites. Finally, genetic correlations between growth and survival were low, in all sites. Selective breeding in a single site should therefore be an efficient means of improving survival in oysters less than one year old along the French Atlantic and Channel coastlines with only very limited effects on growth. As yield mostly depends on survival and growth, this approach should significantly improve harvestable yield. Possible reasons why a high genetic variance for survival appears to be maintained in wild populations are discussed.  相似文献   
7.
Oyster seed production in hatchery and nursery systems has relied on the production of microalgae, which is cost effective, but often unpredictable. The development of a satisfactory substitute diet would greatly reduce production costs of hatchery operations. Single cell detritus (SCD) production from seaweed (Porphyra haitanensis) may have great potential as a partial substitute for microalgae. In this experiment, a technique for producing SCD was developed and the product was used as a partial substitute for microalgae for the nursery culture of juvenile tropical oysters (Crassostrea belcheri) in a hatchery setting. A reverse osmosis technique was used on ground seaweed (particle size <200 μm) immersed in freshwater and placed on a shaker at 100 rpm for 2 h before being returned to seawater. This technique was shown to be highly effective for SCD production with a density of 33.7 ± 7.0 × 104 cell mL?1 and the percentage of SCD particle diameter <20 μm was 89.2%. A partial replacement of microalgae with SCD was found to be unsuitable for nursing oyster larvae. For juvenile oysters (shell width 1.85 ± 0.03 mm and shell length 1.78 ± 0.06 mm) substituting 75% of microalgae with SCD showed lower absolute shell growth, and lower daily yields and survival rates when compared to rates substituting 50% or lower substitution with SCD, or 100% microalgae (P < 0.05). It was found that substituting 50% of the traditional microalgae with SCD produced from seaweed (P. haitanensis) can be used as a partial microalgae substitute for the nursery culture of the juvenile tropical oyster.  相似文献   
8.
The Portuguese oyster Crassostrea angulata shows great potential in oyster farming. The conservation of pure populations of this species is important for production diversification and biodiversity preservation. In this way, the zootechnological development for seed hatchery production is extremely important. Broodstock conditioning is a key step in the process of rearing bivalves in a hatchery. Many factors regulate the reproductive cycle, being food one of the most important ones. To evaluate the effect of different diets on C. angulata reproductive performance, broodstock were conditioned with different food regimes formulated fundamentally by flagellates (Diet 1 – Pavlova lutheri and Isochrysis galbana clone T‐ISO; Diet 2 – P. lutheri, T‐ISO and Skeletonema costatum) and constituted fundamentally by diatoms (Diet 3 – S. costatum and Chaetoceros calcitrans; Diet 4 – P. lutheri, S. costatum and C. calcitrans). During conditioning, samples of oysters were collected to evaluate condition index, gonadal development and biochemical composition. At the end of the conditioning period, oysters were induced to spawn to evaluate reproductive output (fecundity, fertilization rate and D‐larvae development). The diets had an impact on the gametogenesis process, energy storage and reproductive output performance, being the best results those obtained in broodstock fed with the diatoms‐predominant diets. However, those fed with diets majority flagellates had an unsuccessful performance. Holistic approaches incorporating all results in this study reveal and reinforce the idea that the diatom species used presented the nutritional requirements to C. angulata broodstock, being essential in the conditioning phase.  相似文献   
9.
为保证生食葡萄牙牡蛎(Crassostrea angulata)的安全,在贝水比1∶10、水交换率3次/h、水温28℃、盐度28的条件下,采用流水式紫外线杀菌方法净化48 h,检测净化前后13个卫生指标的变化;净化后的牡蛎在冷藏(4℃)和冷冻(-18℃)两种条件下贮藏7 d以上;检测贮藏过程中菌落总数、大肠菌群和主要营养成分的变化。结果显示,经过48 h净化,菌落总数和大肠菌群含量均大幅下降,重金属、化学污染物等指标变化不大;两种贮藏条件下,菌落总数和大肠菌群都呈先下降再上升的变化,但始终处于安全水平内;蛋白质、脂肪、糖原含量缓慢下降,乳酸含量快速上升。研究表明,葡萄牙牡蛎在紫外线杀菌净化48 h后,至少在冷藏6 d或冷冻11 d内可以保证食品安全。  相似文献   
10.
于2006年对岩牡蛎Crassostrea nippona的人工育苗技术进行了初步研究。结果表明:种贝促熟时,其最佳放养密度为120个/m3;催产时,用阴干并伴随升温的方法,其催产效果较好;岩牡蛎受精卵的孵化密度在120粒/mL以下时,可获得较为理想的孵化效果;幼体培养密度为10个/mL时,其成活率和日增长率较高;幼体培育期间,将金藻和扁藻按1∶1混合投喂,培育效果较好。  相似文献   
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