毒死蜱对二倍体和三倍体非洲鲶鱼营养参数的影响

IF 1.3 4区 生物学 Q3 MARINE & FRESHWATER BIOLOGY
Aquatic Biology Pub Date : 2017-08-09 DOI:10.3354/AB00678
S. Karbalaei, A. Karami, M. Ebrahimi, M. F. Jahromi, A. Ismail, J. Liang, S. Simpson, Sharifah Norkhadijah S. Ismail, Y. Goh
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引用次数: 9

摘要

关于污染胁迫下生物体倍性状态对生理参数影响的信息缺乏。此外,人们对鱼类暴露于污染物后营养价值的变化知之甚少。全同胞幼鱼gariepinus暴露于毒死蜱3个浓度(平均浓度分别为8.9、17.5和28.0 μg l−1)21 d。未暴露于毒死蜱的二倍体和三倍体鱼肌肉中3种脂肪酸(FAs)的含量差异显著。毒死蜱对二倍体肌肉中大部分氨基酸、部分脂肪酸、蛋白质和水分含量均有影响,而对三倍体肌肉中部分脂肪酸和灰分含量有影响。这项工作代表了三倍体动物对环境应激反应中FAs和近似组成变化的首次研究。毒死蜱暴露后三倍体的营养价值变化较小,说明三倍体比二倍体对环境胁迫的适应性更强。毒死蜱暴露后二倍体加里平Clarias gariepinus肌肉蛋白质含量及AA和FA组成发生显著变化,提示其可作为水体环境污染的敏感指标。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Changes in nutritional parameters in diploid and triploid African catfish Clarias gariepinus following chlorpyrifos exposure
There is a paucity of information about the influence of ploidy status on physiological parameters in organisms following contaminant stress. Also, little is known about the changes in nutritional values of fishes in response to the exposure to contaminants. Full-sibling juvenile Clarias gariepinus were exposed to 3 levels (mean measured 8.9, 17.5, or 28.0 μg l−1) of chlorpyrifos for 21 d. The levels of 3 fatty acids (FAs) in the muscle were significantly different between unexposed diploid and triploid fish. In the chlorpyrifos-exposed fish, the levels of most amino acids (AAs), some FAs, protein, and moisture content were affected in the muscle of diploids, while the levels of some FAs and ash content were changed in the muscle of triploid fish. This work represents the first study of changes in FAs and proximate composition in triploid animals in response to environmental stressors. Fewer changes of nutritional values in triploid C. gariepinus under chlorpyrifos exposure may indicate higher adaptability of triploids than diploids towards environmental stressors. Significant changes in the muscle protein content and AA and FA compositions in diploid Clarias gariepinus in response to chlorpyrifos exposure suggest their application as sensitive indicators of aquatic environmental pollution.
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来源期刊
Aquatic Biology
Aquatic Biology 生物-海洋与淡水生物学
CiteScore
2.70
自引率
0.00%
发文量
7
审稿时长
3 months
期刊介绍: AB publishes rigorously refereed and carefully selected Feature Articles, Research Articles, Reviews and Notes, as well as Comments/Reply Comments (for details see MEPS 228:1), Theme Sections, Opinion Pieces (previously called ''As I See It'') (for details consult the Guidelines for Authors) concerned with the biology, physiology, biochemistry and genetics (including the ’omics‘) of all aquatic organisms under laboratory and field conditions, and at all levels of organisation and investigation. Areas covered include: -Biological aspects of biota: Evolution and speciation; life histories; biodiversity, biogeography and phylogeography; population genetics; biological connectedness between marine and freshwater biota; paleobiology of aquatic environments; invasive species. -Biochemical and physiological aspects of aquatic life; synthesis and conversion of organic matter (mechanisms of auto- and heterotrophy, digestion, respiration, nutrition); thermo-, ion, osmo- and volume-regulation; stress and stress resistance; metabolism and energy budgets; non-genetic and genetic adaptation. -Species interactions: Environment–organism and organism–organism interrelationships; predation: defenses (physical and chemical); symbioses. -Molecular biology of aquatic life. -Behavior: Orientation in space and time; migrations; feeding and reproductive behavior; agonistic behavior. -Toxicology and water-quality effects on organisms; anthropogenic impacts on aquatic biota (e.g. pollution, fisheries); stream regulation and restoration. -Theoretical biology: mathematical modelling of biological processes and species interactions. -Methodology and equipment employed in aquatic biological research; underwater exploration and experimentation. -Exploitation of aquatic biota: Fisheries; cultivation of aquatic organisms: use, management, protection and conservation of living aquatic resources. -Reproduction and development in marine, brackish and freshwater organisms
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