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1.
温度和盐度与细角螺幼体生存、生长及发育的关系   总被引:3,自引:0,他引:3  
以细角螺幼体为试验材料,探索温度和盐度单因子及双因子结合与细角螺幼体生存、生长和发育的相互关系.单因子温度与盐度对其幼体的影响试验结果表明:幼体适温范围为20~35℃,最适温度范围为25~30℃;幼体适合盐度为18~35,最适盐度范围为26~35.双因子结合试验结果表明:温度对幼体生存、生长和变态的影响比盐度更显著,细角螺幼体的最佳温度为25℃,最佳盐度为30.  相似文献   

2.
采用静水呼吸室法,研究了温度、盐度和两种麻醉剂(丁香油、MS-222)对体质量为(6.44±0.59)g的大泷六线鱼幼鱼耗氧率和排氨率的影响。实验分别设置了5个温度梯度(8℃、12℃、16℃、20℃、24℃),5个盐度梯度(15‰、20‰、25‰、30‰、35‰),6个丁香油浓度梯度(0、8、16、24、32、40 mg/L)和5个MS-222浓度梯度(0、10、20、30、40 mg/L)。结果显示,温度、盐度和两种麻醉剂均对耗氧率和排氨率有显著性影响。8℃时,耗氧率和排氨率最低,随温度升高先升高后降低,且均在20℃时达到峰值;盐度30‰时,耗氧率和排氨率最低,盐度升高或降低都会导致耗氧率和排氨率升高;丁香油和MS-222均能有效降低大泷六线鱼的耗氧率和排氨率,其中丁香油的降低效果更为明显;丁香油浓度为24 mg/L时或MS-222为20 mg/L时可使大泷六线鱼处于深度镇定期,结合耗氧率及排氨率变化,认为上述浓度是大泷六线鱼幼鱼保活运输的最佳浓度;本研究所有处理组的O∶N比值范围均在14.77~24.11之间,表明适宜温度和盐度条件下,大泷六线鱼幼鱼主要由蛋白质和脂肪提供能量。研究认为,适度降温、自然盐度和适宜浓度的麻醉剂处理均可显著降低大泷六线鱼幼鱼的呼吸代谢强度,其中丁香油相比MS-222作用效果更加明显。本研究结果为实现大泷六线鱼高质量运输提供了科学参考。  相似文献   

3.
温度和盐度对几种大型海藻生长率和NH4-N吸收的影响   总被引:19,自引:3,他引:19  
刘静雯  董双林  马甡 《海洋学报》2001,23(2):109-116
温度和盐度对细基江蓠繁枝变型(Gracilaria tenuistipitata var.liui)、孔石莼(Ulva pertusa)和蜈蚣藻(Grateloupia filicina)生长率及细基江蓠繁枝变型NH4-N吸收的影响进行了实验研究.结果表明,温度和盐度对上述3种海藻生长率及NH4-N吸收均有显著影响.3种海藻的生长适宜温度和盐度范围分别为细基江蓠繁枝变型20~30℃,15~30,孔石莼15~25℃,15~40,蜈蚣藻20~25℃,25~35;最大日特定生长率(SGR)分别为8.66%,12.28%,2.24%;N饥饿细基江蓠繁枝变型对NH4-N的吸收存在短期的快吸收.细基江蓠繁枝变型NH4-N吸收的最适温度和盐度范围分别为15~25℃,10~25.生长率及NH4-N吸收速率与温度和盐度之间分别存在以下关系:SGRG.t.=0.873(S-5.487)(T-9.007)e(-0.0708S-0.0745T);SGRU.p.=0.222(S-2.665)e-0.047S(T-9.98)e-0.00057(T-9.98)2.7;SGRG.f.=2.6×10-4(S-10.856)(T-11.704)e0.156T-3.36×10-6STe0.219T;Vupt=11.812(S-4.081)(T-9.221)e-0.1S-0.148T.  相似文献   

4.
以自然成熟的亲虾为材料,观察并描述了墨吉明对虾(Fenneropenaeus merguiensis)从受精卵到幼体孵化出膜的胚胎发育过程。结果显示,在水温29°C,盐度28的条件下,墨吉明对虾整个胚胎发育过程需要11h左右。水温和盐度对幼体出膜时间和受精卵的孵化率均有显著的影响(P0.05)。孵化水温从32°C下降到23°C时,幼体出膜时间由555min(9.25h)增加到1108min(18.46h)。胚胎发育的最适水温为26—32°C,在此温度范围内,墨吉明对虾的幼体出膜时间与水温呈负相关。胚胎发育的最适盐度25—35,在此范围内,墨吉明对虾的幼体出膜时间和孵化率均无显著差异(P0.05),说明墨吉明对虾的胚胎发育的盐度范围较广。  相似文献   

5.
在工厂化条件下,通过控制养殖用水的不同温度、盐度,对绿鳍马面鲀幼鱼的存活及生长情况进行观测研究。结果表明:平均全长(42.66±5.23)mm的幼鱼存活的适宜温度为21~30℃,高于30℃时会引起大量死亡;体长和体质量生长的最适温度为21~24℃,高于24℃则生长速度减慢。幼鱼存活的适宜盐度为10~45,体长和体质量生长的最适盐度为25~35,超出此范围生长速度明显降低。  相似文献   

6.
饵料、温度和盐度对两种海洋桡足类摄食与排粪的影响   总被引:1,自引:0,他引:1  
中华哲水蚤是中国近海典型的浮游桡足类,猛水蚤是青岛胶州湾和汇泉湾常见底栖桡足类,研究2种海洋桡足类的摄食和排粪规律可为大量培养桡足类提供最佳条件。论文研究了在6种不同饵料(球等鞭金藻、亚心形扁藻、小球藻、绿色巴夫藻、三角褐指藻、小新月菱形藻)的条件下,温度和盐度对中华哲水蚤和猛水蚤摄食和排粪的影响。温度和盐度对2种桡足类摄食和排粪的影响具有种间差异性。中华哲水蚤在15℃的摄食率、滤水率和排粪率高于在20和25℃的摄食率、滤水率和排粪率。在15、20和25℃3个温度范围内,猛水蚤的摄食率、滤水率和排粪率随温度升高而升高。在20~36盐度范围内,中华哲水蚤的摄食率、滤水率和排粪率随盐度的升高先升高后降低,在盐度为28时达到最大值,猛水蚤的摄食率、滤水率和排粪率随盐度升高而逐渐降低,猛水蚤摄食和排粪的最适盐度为20。温度和盐度实验均表明,在6种饵料中,亚心形扁藻和球等鞭金藻有利于中华哲水蚤的摄食,球等鞭金藻有利于猛水蚤的摄食,而小球藻对2种桡足类的摄食均不利。  相似文献   

7.
就盐度和温度对毛蚶(Scapharca subcrenata)受精卵孵化和幼虫生长的影响做了研究.结果表明,毛蚶受精卵孵化的最适温度为25~30℃,随着温度的升高,孵化速度成正相关;适宜盐度为18~30,在盐度18~26的条件下,盐度和孵化率成正相关,畸形率差异不显著.幼体生长的适宜温度为25~30℃,最适盐度为20~25.在温、盐都适宜的范围内,两者交互作用不显著,而当其中一个条件为极限时,交互作用显著,同时幼虫生长的温、盐范围比受精卵孵化适宜范围更广.  相似文献   

8.
天津厚蟹对盐度和温度的耐受性   总被引:1,自引:0,他引:1  
徐敬明 《海洋学报》2014,36(2):93-98
研究了天津厚蟹Helice tientsinensis对盐度和温度的耐受性。天津厚蟹对盐度的耐受能力极强,在温度9~34℃盐度为0的淡水介质中均能存活96h以上;在10℃、20℃及30℃的高渗介质中暴露96h后,天津厚蟹全部存活的盐度分别是65、56和50,全部死亡的盐度分别为83、74和68。天津厚蟹对低温的耐受力较强,在0、30和50盐度水平下,耐受低温的能力差别较大,能耐受96h的最低温度分别是9℃、2℃和6℃。天津厚蟹对高温也有较强的耐受能力,在0、30和50盐度水平下,分别在34℃、36℃和35℃下能耐受96h;盐度50温度38℃时,在开始的24h内无死亡,但48h后死亡率急剧上升,同样规律也出现在30和0溶液中,前者温度是39℃,后者为35℃。研究结果还表明盐度和温度的交互效应显著,二者的交互作用对天津厚蟹的存活亦有显著性影响(P0.05),温度升高(从10℃到20℃再到30℃)致使其耐盐能力显著下降,而盐度的剧烈变化(从30到50或从30到0)也致使其耐温能力显著下降。  相似文献   

9.
中国对虾(Penaeus chinensis)氮收支的初步研究   总被引:5,自引:2,他引:3  
张硕  董双林  王芳 《海洋学报》1999,21(6):81-86
研究在20、25和30℃的正常海水(盐度为31)和5个盐度、水温为25℃条件下,分别测定了3个规格中国对虾摄食沙蚕和配合饲料的氮收支。研究结果表明,中国对虾的氮摄食率随温度的升高而增大,随体重的增加而减小;盐度为5时氮摄食率最小为11.78mg·g-1d-1,盐度为13时最大为13.88mg·g-1d-1.生长氮的比例随温度的升高显着减小;盐度为20的生长氮比例最大为26.52%,此时的特定生长率也最大为7.8%,盐度为5时的最小。中国对虾摄食沙蚕和配合饲料的平均氮收支模式分别为100I=27.63G+3.58E+1.66F+67.13U;100I=18.34G+4.10E+6.07F+71.49U.  相似文献   

10.
2007年3月,将采集于湛江雷州的波纹巴非蛤Paphia undulate,根据其个体大小分为A组和B组,外壳长度分别为(4.51±0.17)cm和(3.69±0.11) cm,并采用Winkler碘量法和次溴酸盐氧化法分别测定了其单位质量的耗氧率、排氨率及其氧氮比(O∶N),研究了盐度和规格对波纹巴非蛤代谢的影响.实...  相似文献   

11.
This study aims to examine the effect of increased salinity on the photosynthetic activity of the Mediterranean seagrass Posidonia oceanica in a laboratory mesocosm system. To do this, large rhizome fragments were transplanted in a mesocosm laboratory system and maintained at 37 (ambient salinity, control treatment), 39, 41 and 43 (hypersaline treatments) for 47 days. Pigment content, light absorption, photosynthetic characteristics (derived from P vs. E curves and fluorescence parameters), and shoot size, growth rates and net shoot change were determined at the end of the experimental period. Both net and gross photosynthetic rates of plants under hypersaline conditions were significantly reduced, with rates some 25–33% and 13–20% lower than in control plants. The pigment content (Chla, Chlb, Chlb:Chla molar ratio, total carotenoids and carotenoids:Chla ratio), leaf absorptance and maximum quantum yield of PSII (Fv/Fm) of control plants showed little or no changes under hypersaline conditions, which suggests that alterations to the capacity of the photosynthetic apparatus to capture and process light were not responsible for the reduced photosynthetic rates. In contrast, dark respiration rates increased substantially, with mean values up to 98% higher than in control leaves. These results suggest that the respiratory demands of the osmoregulatory process are likely to be responsible for the observed decrease in photosynthetic rates, although alterations to photosynthetic carbon assimilation and reduction could also be involved. As a consequence, leaf carbon balance was considerably impaired and leaf growth rates decreased as salinity increased above the ambient (control) salinity. No significant differences were found in the percentage of net shoot change, but mean values were clearly negative at salinity levels of 41 and 43. Results presented here indicate that photosynthesis of P. oceanica is highly sensitive to hypersaline stress and that it likely account for the decline in leaf growth and shoot survival reported in this and previous studies in response to even small increments of the ambient salinity.  相似文献   

12.
Seawater salinity is greatly influenced by tide, evaporation and rain falls. In this study, we investigated the growth and photosynthetic responses of zygote-derivedUlva fasciata Delile germlings to sh...  相似文献   

13.
采用PAM叶绿素荧光技术,于2013年5月在厦门大嶝岛潮间带,对不同底质类型(泥质、泥砂质和砂质)底栖微藻的光合作用特征进行了初步研究.结果显示:底栖微藻的光合系统II最大光量子效率(Fv/Fm)呈泥质(0.33)〉泥砂质(0.28)〉砂质(0.01);底栖微藻叶绿素a含量亦呈上述变化趋势.不同温度(15-35℃)和不同光照透射率(0-100%)的短期(0.5-2.0 h)培养实验表明,底栖微藻光合作用的最适温度(27℃左右)接近于环境温度,体现了其对生长环境的适应;过高的温度(35℃及以上)会抑制光合作用活性,进而限制其生长;此外,光照实验表明底栖微藻可通过自身的运动和变化来适应光照强度的变化,不同底质类型可能存在不同的光适应策略.  相似文献   

14.
Ecological adaptation and ecological groups of pelagic ostracods were examined in the East China Sea (23°30′-33°00′N, 118°30′ -128°00′E), in relation to temperature and salinity. The data were collected in four surveys conducted from 1997 to 2000. The density, yield density, or negative exponent models were used to determine the optimal temperature and salinity of water for the thriving growth of pelagic ostracods. Thereafter, ecological groups and potential distribution patterns of pelagic ostracods were determined based on the predicted parameters such as optimal temperature and salinity, consulting the geographic distribution. The analytical results indicate that, among the numerical dominant pelagic ostracods in the East China Sea (ECS), Euconchoecia aculeata, E. elongata, E. chierchiae, E. maimai, and Cypridina dentata, etc. are offshore subtropical water species. These species are widely distributed in the area, and they can be brought by the warm current to north offshore during spring and winter. The predicated optimal temperature (OT) and optimal salinity (OS) for Paraconchoecia decipiens, P. echinata, P. spini- fera, P. oblonga, Conchoecia magna and Porroeciaporrecta are all greater than 25℃ and 34 separately. These species are mainly distributed in the waters of the Kuroshio, the Taiwan Warm Current, and the Taiwan Strait, and therefore are designated as ocean- ic tropical water species. On the other hand, Pseudoconchoecia concerttrica is considered as offshore subtropical water species based on its geographical distribution although its OT is 19℃. The other species, though their OSs are approximately 34 and with OTs ranging from 20° to 25℃, are considered as offshore subtropical water species because they were found to be widely distributed from the South China Sea to the East China Sea.  相似文献   

15.
α-1,4-葡聚糖裂解酶的动力学性质研究   总被引:1,自引:0,他引:1  
红藻中的α-1,4-葡聚糖裂解酶是红藻淀粉的降解酶,除了 红藻淀粉外,它还可以作用于多种底物。文中分别以PNPG和可溶性淀粉作底物,以龙须菜的 几个品系作为材料,研究了该酶促反应的动力学方面的性质。以 PNPG作为底物,该酶在60m in内酶促反应速度与保温时间成线性关系;在野生型龙须菜品系中该酶的最适反应温度是50 ℃,在两种突变型品系中是40℃;最适pH范围在4.4~5.5;底物浓度是4mmol/L时达到最大反 应速度;葡萄糖对该酶促反应有明显的抑制作用。以可溶性淀粉作为底物,在反应60 min内 酶反应速度与保温时间成线性关系;最适反应温度为50℃;最适pH范围在5.0~5.8;底物浓 度是8mg/mL时达到最大反应速度;葡萄糖对可溶性淀粉的抑制作用比对PNPG的弱。  相似文献   

16.
海水温度和盐度对泥蚶幼虫和稚贝生长及存活的影响   总被引:24,自引:0,他引:24  
1996~1997和1999年在浙江省乐清市东发水产育苗场和福建省宁德市四海水产育苗场分别研究了海水温度和盐度对泥蚶浮游幼虫和稚贝生长及存活的影响,结果表明,泥蚶浮游幼虫的适宜温度为25~33℃,最适生长温度为28~30℃.稚贝的适宜温度为15~35℃,最适生长温度为25~30℃.浮游幼虫的适宜盐度为16.54~30.02,最适生长盐度为1654~23.38;稚贝的适宜盐度为10.01~30.02,最适生长盐度为10.01~23.38.泥蚶幼虫和稚贝对高温和低盐海水有较强的适应能力,这与它们夏季的繁殖期和自然分布于内湾河口区是相适应的.  相似文献   

17.
Abstract. The Adriatic brown macroalga Fucus virsoides (DON.) J. Ac (Fucales, Phaeophyceae) was investigated with particular respect to basic physiological features such as photosynthesis, dark carbon fixation, and respiration. Values obtained are expressed in various reference systems. Chemical composition of the fronds and physiological activity (photosynthesis/dark fixation along with the respective carboxytating enzymes (ribulose-1,5-bisphophate carboxylase and phosphoenol-pyruvate carboxykinase) show longitudinal profiles. Temperature characteristics of photosynthesis in long-term adapted specimens indicate reduced productivity at temperatures exceeding 20 °C. Photosynthesis during atmospheric exposure is markedly increased under moderate desiccation. Photosynthetic rates steadily decline under reduced salinity of the incubation medium, while respiration is stimulated. Net primary productivity of a F. virsoides stand at 15 °C ambient average temperature, tidal exposure for maximally 2–3 hours and light-dark regime = 12: 12 is calculated as 4.8-5.4 g C m-2d-1. Culture experiments with polluted incubation media provide evidence that excessive nutrients including nitrate and phosphate as well as high concentrations of heavy metals (Zn, Co, Mn) cause severe growth-rate reduction which may account for the steady decrease of F. virsoides in its natural habitat. The results are discussed with emphasis on the autecology of F. virsoides and its relationships to Atlantic representatives of the genus.  相似文献   

18.
Four species in the genus Navicula were isolated using the serial dilution method. Based on scanning electron microscopy(SEM) and sequence comparisons of two segments of genes(small ribosomal subunit and large subunit of Rubisco), the species were identified as Navicula perminuta, N. pseudacceptata, N. vara, and N. rhynchocephala. Based on phylogenetic analysis and culture trials, there was a close relationship between N. perminuta and N. vara. Growth of these species was evaluated using measurements of optical density at 680 nm(OD680) under various environmental factors. Results showed that the optimum culture conditions were 25℃, 50–100 μmol photons m-2 s-1, pH 8.0, and salinities from 25 to 30. However, the favorable salinity for N. perminuta was surprisingly high at 35. Nutrient requirement analysis demonstrated that growth of Navicula depended on the availability of SiO32-. Their relative growth rates(RGR) peaked at the highest tested level(0.25 mmol/L). The optimal concentrations of NO3- and PO43- were 3.6 mmol/L and 0.18 mmol/L, respectively. Culture of these Navicula species for abalone or sea cucumber aquaculture should take these factors into consideration.  相似文献   

19.
5种海水养殖鱼类幼鱼的耗氧率及窒息点   总被引:1,自引:0,他引:1  
为鱼类苗种运输和养殖过程中溶解氧的科学调控提供理论依据,采用密闭式呼吸实验法探究了20、25和30 ℃水温下豹纹鳃棘鲈Plectropomus leopardus、驼背鲈Cromileptes altivelis、棕点石斑鱼Epinephelus fuscoguttatus、赤点石斑鱼Epinephelus akaara和珍珠龙胆石斑鱼5种海水养殖鱼类幼鱼(体重范围为53.6~84.5 g)的耗氧率和窒息点。结果表明:在盐度为30的条件下,5种海水养殖鱼类幼鱼的耗氧率和窒息点均随水温的升高而升高。同水温下的耗氧率,豹纹鳃棘鲈为最高, 20、25和30 ℃水温下分别为0.15、0.21和0.31 mg/(g·h);珍珠龙胆石斑鱼为最低,20、25和30 ℃水温下分别为0.08、0.15和0.16 mg/(g·h)。同水温下窒息点,驼背鲈为最高, 20、25和30 ℃水温下分别为1.00、1.12和1.21 mg/L ;珍珠龙胆石斑鱼为最低, 20、25和30 ℃水温下分别为0.19、0.24和0.25 mg/L。  相似文献   

20.
采用室内实验生态学方法对华贵栉孔扇贝的耗氧率和排氨率进行了研究。旨在为华贵栉孔扇贝养殖容量的调查及生态生理的研究提供参考,并可为海洋生态系统动力学和贝类能量学研究提供科学依据。实验结果表明,在实验温度(13—33℃)范围内,华贵栉孔扇贝的耗氧率(OR)和排氨率(NR)与体重(W)都呈负相关,可以用Y=aW-b表示。华贵栉孔扇贝的耗氧率和温度的关系可以表示为OR=-c+b1T-b2T2。在13—28℃温度范围内,华贵栉孔扇贝的耗氧率随温度的升高而增加,28℃时,耗氧率达到最大值,温度升高到33℃时,耗氧率反而下降。而排氨率与温度的关系可以表示为1NR=c1edT,在实验温度范围内,排氨率随温度的升高则呈持续升高趋势。华贵栉孔扇贝呼吸和排泄Q10值范围分别为0.466—2.471和1.129—2.437。在23—28℃温度范围内,不同规格华贵栉孔扇贝的耗氧率和排氨率的比值(原子数O:N)较高。方差分析表明,体重、温度及二者的交互作用对华贵栉孔扇贝的耗氧率和排氨率均有极显著的影响(P0.01)。华贵栉孔扇贝的日常代谢明显高于标准代谢,耗氧率和排氨率平均值分别提高29.9%和69.4%。  相似文献   

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