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31.
紫外线辐射对西伯利亚鲟精子活力和寿命的影响 总被引:1,自引:0,他引:1
研究了不同剂量紫外线辐射(254nm,UVC)对西伯利亚鲟精子活力和寿命的影响.结果表明:紫外线辐射对精子的活力、快速运动时间和寿命均具有显著性影响.其中,精子活力随辐射剂量的增加而呈先迅速下降,后迅速上升,再迅速下降的趋势;精子快速运动时间的变化趋势与活力相似;精子寿命随辐射剂量的增加呈缓慢下降的趋势.当辐射剂量达288mJ.cm-2时,精子无快速运动,当辐射剂量达324mJ.cm-2时,精子活力和寿命均降为0.根据Hertwig效应判断,辐射剂量216mJ.cm-2为西伯利亚鲟精子灭活的最适剂量. 相似文献
32.
长江口中华鲟幼鱼对底质的选择 总被引:4,自引:0,他引:4
采用单因子实验方法,研究了中华鲟幼鱼对沙(直径<0.2 cm)、小砾石(直径1~2 cm)、中砾石(直径4~5 cm)、大砾石(直径13~15 cm)4种底质类型的选择.结果表明:单尾鱼实验时,中华鲟幼鱼(体长283.0 mm±18.6 mm,体质量86.2 g±17.8 g,n=30)在4种底质中的时间百分比分别为沙51.50%±21.20%、小砾石20.27%±9.70%、中砾石18.03%±6.17%、大砾石10.20%±11.20%,幼鱼在沙底质中时间明显长于其它3种底质,且差异极显著(P<0.01);多尾鱼实验时,中华鲟幼鱼(体长278.0 mm±14.3 mm,体质量79.2 g±19.6 g,n=30)在4种底质中的数量百分比分别为沙46.25%±8.06%、小砾石19.38%±7.72%、中砾石18.75%±7.19%、大砾石15.63%±8.92%,幼鱼在沙质底质中的数量明显高于其它3种底质,且差异极显著(P<0.01);多尾鱼实验中,活动鱼(在水层中游动,不贴底)在4种底质中的数量无显著差异(P>0.05);非活动鱼(贴底游动或静止)在沙底质中的数量显著高于其它3种底质(P<0.01).单尾鱼(从时间角度)和多尾鱼(从数量角度)实验均表明,中华鲟幼鱼明显选择沙底质. 相似文献
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Eleven of 34 sturgeons caught in the River Volga classified morphologically as Acipenser gueldenstaedtii were identified as Acipenser baerii from sequence analysis of the mitochondrial cytochrome- b gene. The Caspian Sea and its tributaries including the Volga are not native habitats of A. baerii . No A. baerii haplotype was observed in A. gueldenstaedtii from the Sea of Azov or the South Caspian Sea. Genetic contamination of A. gueldenstaedtii with A. baerii or A. baerii hybrids has occurred in the Volga. Crosses and backcrosses of these specimens with native A. gueldenstaedtii resulted in the loss of the morphological diagnostic A. baerii features. These findings are of special concern for conservation and management programmes, as well as for specimen identification for caviar trading control. 相似文献
37.
R. Carmona M. GarcíaGallego† A. Sanz† A. Domezaín‡ M. V. OstosGarrido§ 《Journal of fish biology》2004,64(2):553-566
Modifications in the chloride (mitochondria‐rich) and pavement cells of the gill epithelia of the Adriatic sturgeon Acipenser naccarii after their transfer under hypertonic environmental conditions (salinity 35) were examined by light and electron microscopy. In contrast to freshwater specimens, seawater‐acclimated fish showed a marked increase in the number and size of chloride cells. Ultrastructural modifications included: presence of a slightly invaginated apical crypt, a darker cytoplasm, a more compact tubular system, a major increase in cisternae from Golgi apparatus stacks and flattened‐out sacs with dilated ends that produced an increase in lateral and basal cell surfaces. All these changes indicated enhanced cellular activity. Pavement cells, which largely covered the chloride cells on the gill filament and lamella, exhibited a complex system of microridges on their apical surface. Typical features included numerous desmosomes that characterized the intercellular junction, and the presence in the apical cytoplasm of bundles of filaments and of electro‐dense vesicles in freshwater fish or clear vesicles in seawater‐acclimated animals. 相似文献
38.
Robin D. Calfee Holly J. Puglis Edward E. Little William G. Brumbaugh Christopher A. Mebane 《Journal of visualized experiments : JoVE》2016,(108)
Behavioral responses of aquatic organisms to environmental contaminants can be precursors of other effects such as survival, growth, or reproduction. However, these responses may be subtle, and measurement can be challenging. Using juvenile white sturgeon (Acipenser transmontanus) with copper exposures, this paper illustrates techniques used for quantifying behavioral responses using computer assisted video and digital image analysis. In previous studies severe impairments in swimming behavior were observed among early life stage white sturgeon during acute and chronic exposures to copper. Sturgeon behavior was rapidly impaired and to the extent that survival in the field would be jeopardized, as fish would be swept downstream, or readily captured by predators. The objectives of this investigation were to illustrate protocols to quantify swimming activity during a series of acute copper exposures to determine time to effect during early lifestage development, and to understand the significance of these responses relative to survival of these vulnerable early lifestage fish. With mortality being on a time continuum, determining when copper first affects swimming ability helps us to understand the implications for population level effects. The techniques used are readily adaptable to experimental designs with other organisms and stressors. 相似文献
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Genetic effects of habitat restoration in the Laurentian Great Lakes: an assessment of lake sturgeon origin and genetic diversity
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Lake sturgeon (Acipenser fulvescens) have experienced significant habitat loss, resulting in reduced population sizes. Three artificial reefs were built in the Huron‐Erie corridor in the Great Lakes to replace lost spawning habitat. Genetic data were collected to determine the source and numbers of adult lake sturgeon spawning on the reefs and to determine if the founder effect resulted in reduced genetic diversity. DNA was extracted from larval tail clips and 12 microsatellite loci were amplified. Larval genotypes were then compared to 22 previously studied spawning lake sturgeon populations in the Great Lakes to determine the source of the parental population. The effective number of breeders (Nb) was calculated for each reef cohort. The larval genotypes were then compared to the source population to determine if there were any losses in genetic diversity that are indicative of the founder effect. The St. Clair and Detroit River adult populations were found to be the source parental population for the larvae collected on all three artificial reefs. There were large numbers of contributing adults relative to the number of sampled larvae. There was no significant difference between levels of genetic diversity in the source population and larval samples from the artificial reefs; however, there is some evidence for a genetic bottleneck in the reef populations likely due to the founder effect. Habitat restoration in the Huron‐Erie corridor is likely resulting in increased habitat for the large lake sturgeon population in the system and in maintenance of the population's genetic diversity. 相似文献