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791.
以溴化硫代乙酰胆碱作为底物,测定了底物浓度、温度和pH值对麦穗鱼(Pseudorasbora parva)、草金鱼(Carasiusauratus)、尼罗罗非鱼(Tilapia nilotica)、食蚊鱼(Gambusiaaffinis)和虹鳟(Salmogairdneri)等5种淡水鱼脑乙酰胆碱酯酶(AChE)活性的影响,并用聚丙烯酰胺凝胶电泳法对脑AChE进行了分离。研究结果表明,除麦穗鱼和草金鱼外,其余各种鱼的脑AChE均有质的差异。因此,不宜通过AChE对一种抑制剂的敏感顺序,来推测对另一种抑制剂的敏感顺序。除AChE之外,鱼脑中还发现有其它类型的酯酶存在。它们在鱼脑中的生理学意义,特别是在决定抗性中所起的作用,还需做进一步研究。 相似文献
792.
松花江鱼类系污染现状研究 总被引:1,自引:0,他引:1
松花江主要工业汞源根治后,该江吉林市至三岔河口和三岔河口至同江江段总汞与甲基汞已分别降到轻、中度污染水平。各江段鱼类总汞与甲基汞污染水平均表现出:肉食性鱼类>杂食性鱼类>植物食性鱼类;底层鱼类>中、上层鱼类;无鳞鱼类>有鳞鱼类。各江段每种鱼类肌肉中甲基汞含量与总汞含量之间呈明显的正相关关系,与脲酶、乳酸脱氢酶活力之间呈明显的负相关关系。鱼类肌肉中总汞含量与江水中总汞含量之间呈明显的多元直线、多元对数和多元指数回归关系;鱼类肌肉中甲基汞含量与江水中甲基汞含量之间呈明显的多元对数回归关系。 相似文献
793.
794.
污染物对鱼类的甲状腺激素干扰效应及其作用机制 总被引:1,自引:0,他引:1
环境中可以影响生物体甲状腺激素合成、运输、作用和代谢等过程的化学污染物称为甲状腺激素干扰物(TDCs),TDCs被认为是继环境雌激素之后最重要的一类内分泌干扰物.鱼类甲状腺的结构、甲状腺激素的转运和功能等与哺乳动物有较大差别.与哺乳动物相比,污染物干扰鱼类甲状腺激素的研究还较为缺乏.在介绍鱼类甲状腺结构、功能以及甲状腺激素在鱼体内动态过程的基础上,分析了污染物对鱼类的甲状腺激素干扰效应及其作用机制,探讨了今后鱼类甲状腺激素干扰研究的主要方向.污染物能对鱼类甲状腺激素水平、相关酶活性及甲状腺结构等产生直接影响;同时,污染物还可以通过干扰鱼类甲状腺系统对由甲状腺激素调节的重要生理过程如生长、繁殖和发育等产生间接影响.污染物主要通过干扰鱼类甲状腺激素的合成与分泌、转运、清除以及与甲状腺激素受体(TR)的相互作用等机制对鱼类产生不利影响.在污染物对鱼类甲状腺激素干扰的研究中,今后应重点关注环境中"新型"卤化有机污染物、鱼类早期发育过程与甲状腺激素干扰效应的关系、TR介导机制以及TDCs的筛选方法等. 相似文献
795.
为了解长三角地区食用鱼中短链氯化石蜡(SCCPs)的污染特征,根据当地人的食鱼习惯,在上海采集了不同营养级的食用鱼8种,共计68尾,测定了肌肉中SCCPs含量并分析了其同族体的分布模式.结果表明,食用鱼肌肉中SCCPs的含量(干重,dw)范围为36~801 ng.g-1;同族体分布以C10-和C11-SCCPs为主,随着碳链长度的增加,SCCPs同族体含量所占比例随之降低,并且均以低氯(Cl6~Cl8)取代的SCCPs为主要组成部分,相对丰度之和占总丰度的61.46%~82.50%.上海食用鱼中SCCPs的含量在世界范围内处于中等水平,其分布模式与国内外研究一致. 相似文献
796.
Rask M Saxén R Ruuhijärvi J Arvola L Järvinen M Koskelainen U Outola I Vuorinen PJ 《Journal of environmental radioactivity》2012,103(1):41-47
We summarize the patterns of 137Cs activity concentrations and transfer into fish and other biota in four small forest lakes in southern Finland during a twenty-year period following the Chernobyl accident in April 1986. The results from summer 1986 showed fastest accumulation of 137Cs into planktivorous fishes, i.e. along the shortest food chains. Since 1987, the highest annual mean values of 137Cs have been recorded in fish occupying the highest trophic levels, for perch (Perca fluviatilis) 13,600 Bq/kg (ww) and for pike (Esox lucius) 20,700 Bq/kg (ww). At the same time, activity concentrations of 137Cs in crustacean zooplankton and Asellus aquaticus have ranged between 1000 and 19,500 Bq/kg (dw). In 2006, 5-28% of the 1987 137Cs activity concentration levels were still present in perch and pike. Since 1989 their 137Cs activity concentrations in oligohumic seepage lakes have remained significantly higher than in polyhumic drainage lakes due to the increased transfer of 137Cs into fish in the seepage lakes with lower electrolyte concentrations, longer water retention times and lower sedimentation rate. 相似文献
797.
Louise Anderson Peter Houk Mark G. R. Miller Javier Cuetos-Bueno Curtis Graham Kriskitina Kanemoto Elizabeth Terk Elizabeth McLeod Maria Beger 《Conservation biology》2022,36(3):e13866
Localized stressors compound the ongoing climate-driven decline of coral reefs, requiring natural resource managers to work with rapidly shifting paradigms. Trait-based adaptive management (TBAM) is a new framework to help address changing conditions by choosing and implementing management actions specific to species groups that share key traits, vulnerabilities, and management responses. In TBAM maintenance of functioning ecosystems is balanced with provisioning for human subsistence and livelihoods. We first identified trait-based groups of food fish in a Pacific coral reef with hierarchical clustering. Positing that trait-based groups performing comparable functions respond similarly to both stressors and management actions, we ascertained biophysical and socioeconomic drivers of trait-group biomass and evaluated their vulnerabilities with generalized additive models. Clustering identified 7 trait groups from 131 species. Groups responded to different drivers and displayed divergent vulnerabilities; human activities emerged as important predictors of community structuring. Biomass of small, solitary reef-associated species increased with distance from key fishing ports, and large, solitary piscivores exhibited a decline in biomass with distance from a port. Group biomass also varied in response to different habitat types, the presence or absence of reported dynamite fishing activity, and exposure to wave energy. The differential vulnerabilities of trait groups revealed how the community structure of food fishes is driven by different aspects of resource use and habitat. This inherent variability in the responses of trait-based groups presents opportunities to apply selective TBAM strategies for complex, multispecies fisheries. This approach can be widely adjusted to suit local contexts and priorities. 相似文献
798.
为提高油田集输管道CO2腐蚀速率预测的准确性,针对原始广义回归神经网络(GRNN)预测精度低的问题,提出改进的群智能算法优化原始GRNN的预测模型;分别使用GRNN模型、人工鱼群算法(AFSA)优化的GRNN(AFSA-GRNN)模型和自适应改进的AFSA-GRNN(IAFSA-GRNN)模型预测X65管线钢的CO2腐蚀速率。结果表明:采用AFSA和IAFSA优化光滑因子S后,能大大提高GRNN模型的预测精度,预测结果的平均相对误差由36.09%分别减小至7.20%和6.90%;与AFSA相比,IAFSA优化的GRNN不仅具有更高的预测精度,还具有更快的收敛速度。AFSA-GRNN在第164次迭代计算时收敛,而IAFSA-GRNN在第109次迭代计算时收敛,说明AFSA经自适应优化能提高优化过程的收敛速度和GRNN的预测精度。 相似文献
799.
800.
Imogen R. Marshall Chris J. Brauer Scotte D. Wedderburn Nick S. Whiterod Michael P. Hammer Thomas C. Barnes Catherine R. M. Attard Luciana M. Möller Luciano B. Beheregaray 《Conservation biology》2022,36(4):e13889
Restoration programs in the form of ex-situ breeding combined with reintroductions are becoming critical to counteract demographic declines and species losses. Such programs are increasingly using genetic management to improve conservation outcomes. However, the lack of long-term monitoring of genetic indicators following reintroduction prevents assessments of the trajectory and persistence of reintroduced populations. We carried out an extensive monitoring program in the wild for a threatened small-bodied fish (southern pygmy perch, Nannoperca australis) to assess the long-term genomic effects of its captive breeding and reintroduction. The species was rescued prior to its extirpation from the terminal lakes of Australia's Murray-Darling Basin, and then used for genetically informed captive breeding and reintroductions. Subsequent annual or biannual monitoring of abundance, fitness, and occupancy over a period of 11 years, combined with postreintroduction genetic sampling, revealed survival and recruitment of reintroduced fish. Genomic analyses based on data from the original wild rescued, captive born, and reintroduced cohorts revealed low inbreeding and strong maintenance of neutral and candidate adaptive genomic diversity across multiple generations. An increasing trend in the effective population size of the reintroduced population was consistent with field monitoring data in demonstrating successful re-establishment of the species. This provides a rare empirical example that the adaptive potential of a locally extinct population can be maintained during genetically informed ex-situ conservation breeding and reintroduction into the wild. Strategies to improve biodiversity restoration via ex-situ conservation should include genetic-based captive breeding and longitudinal monitoring of standing genomic variation in reintroduced populations. 相似文献