139 resultados para 368


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银鲫(Carassius auratus gibelio Bloch)由于其独特的遗传背景和繁殖方式而成为研究进化遗传学和选择育种的一个独特的模式生物。到目前为止,我们对新疆额尔齐斯河水系银鲫群体的多样性状况一直知之甚少。为了更好地了解额尔齐斯河水系银鲫群体的克隆多样性状况,本研究中,我们采集了来自新疆额尔齐斯河水系的4个鲫鱼群体。通过流式细胞术分析血细胞样品,结果证实这些鲫鱼均为三倍体银鲫。通过血清转铁蛋白电泳表型分析,我们从这些银鲫群体中鉴定出总共8个不同的克隆。在这些鉴定的克隆中,有4个克隆(克隆A

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2007年4月18日~5月1日,利用SIMRAD EY60回声探测仪(又称鱼探仪)对三峡水库坝前到丰都干流以及9条主要支流进行了水声学探测。采用垂直探测结合"之"字形路线的方法对库区整个水体鱼类的分布状况进行了研究。调查水域长度约有600km,回波数据分成1232个片段进行分析。结果表明:在5m以下水层,体长大于6cm的鱼类在该区域平均密度为567.68尾/dam3,且鱼类分布不均匀。在巫山至奉节江段鱼类的密度最低,密度的平均值和标准误(mean±S.E)为(8.1±0.47)尾/dam3;在忠县到丰都江

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<正> 环境胁迫(environmental stress)是指环境对鱼类所处的生存状态产生的压力,可以分为急性环境胁迫和慢性环境胁迫。捉捞(handling)和干扰(disturbance)等引起急性环境胁迫,而水质逐渐恶化和高密度放养等造成慢性胁迫。随着世界人口的增长和消费水平的提高,世界渔业也得到了长足的发展。但与此同时,由于人类活动范围的扩大、程度的加深,

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近年来,在广东潮州各养鳗场,每年3-5月和10-12月,广泛流行一种危害严重的鳗鲡肝肾病,给鳗鲡养殖业造成严重损失。本文记述了该病的症状,重点研究鳗肝肾病的病原菌。作者从患肝肾病的病鳗肝脏、肾脏和胃液中分离到10株致病菌。根据分离株的形态、培养、生化特性,8株致病菌特性一致,鉴定为迟饨爱德华氏菌(EdwardsiellatardaEwingetMcwhorter)另外两株菌特性相同被鉴定为运动性Aeronlonassp.。研究结果阐明了鳗鲡肝肾病主要是由E.tarda引起的爱德华氏菌病,部分病例是由E.t

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<正> 蓝藻(蓝细菌)是一种分布广泛,结构简单的原核生物。不象其它的光合细菌,蓝藻含有叶绿素a,并且象真核藻和高等植物一样,以分解水作为光合电子传递的电子源。有许多种蓝藻能够固氮。大多数丝状蓝藻具有营养胞和异形胞。异形胞是厌氧的固氮场所。异形胞也是谷氨酸合成酶同化新固定的NH_4~+的场所。营养胞具有完整的光合作用系统,异形胞缺乏光系统Ⅱ的活力,并不能合成Calvin循环中的关键酶1.5-二磷酸

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<正> 微生物作为饲料添加剂有其独特的优越性,有些已投入使用,并显示了明显的效果。微生物饲料添加剂资源的开发利用已日益引起国内外科学界和产业部门的重视。本文报道的是应用DL.1菌株培养物作为饲料添加剂饲养草鱼、团头鲂试验结果及其所起的促长作用。

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用直接致癌物N-甲基亚硝基胍或需经酶活化才有活性的致癌原苯并(a)芘、苯并(a)蒽处理草鱼原代肝细胞培养物后,用放射自显影方法测出有明显的DNA修复合成。对照有标记~3H-胸腺嘧啶核苷的细胞非常少,证明草鱼原代肝细胞中DNA复制水平很低。 ~3H-胸腺嘧啶核苷掺入鱼原代肝细胞DNA的量与各种致癌物及致癌原的浓度有关。这表明鱼肝细胞有能力将致癌原代谢成能损伤DNA的致癌物,从而刺激DNA的修复。 BHC(六六六)可以诱导草鱼原代肝细胞培养物的DNA修复,但氯化镉没有活性。 本报告表明致癌物可诱导鱼肝细胞的D

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Notholca dongtingensis n.sp. was found in the second largest lake of China, Dongting Lake. It is related to Notholca labis Gosse, 1887 and N. kozhovi Vassilijewa & Kutikova, 1969. Its main distinguishing taxonomic features are a square-oval lorica, very short anterior spines, anterior lateral spines curving outwards and protrusile posterior margin of the ventral plate.

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Population dynamics of Chaoborus flavicans larvae of various instars was studied from November 1986 to December 1987 in a eutrophic, fish-free pond, Japan. First and 2nd instar larvae were observed from late April to late October, indicating a reproductive period of about half a year. C. flavicans overwintered in the 4th instar larvae. In water column samples, total density of all instars was 680-23 680 m(-2), and pupal density 0-2 600 m(-2); larvae of the Ist, 2nd, and 3rd instars showed 5-6 density peaks in 1987, suggesting that 5-6 generations occur during a year (peaks of the 4th instar larvae were not clear, probably due to their longer development than those of younger instars). In sediment samples, no Ist and 2nd instar larvae were found, 3rd instar larvae were found occasionally but density of the 4th instar larvae was 280-18 600 m(-2), and pupal density varied between 0-502 m(-2). Fouth instar larvae accumulated in sediment in the cold season and in the water column in the warm season; high temperature and low oxygen concentration were the most important factors limiting the distribution of larvae in the sediment in summer in the NIES pond. The dry weight of total C. flavicans larvae was 0.08-4.2 g m(-2) in sediment samples and 24-599 mu g l(-1) (0.10-2.40 g m(-2)) in water column samples. Comparisons of maximum densities in the NIES pond in different years and in waters of different trophic status show that density is generally higher in eutrophic than in oligotrophic habitats.

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Since its completion in 1973 the Danjiangkou Dam has markedly changed downstream flows, water levels, temperatures, sediment loads and other water quality characteristics in downstream reaches of the Hanjiang River. There have been changes in the growth, spawning behaviour and overwintering condition of local fish populations, in the composition and abundance of food organisms and in the composition of the commercial fish catch. Despite the changed environment and the absence of a fish pass, fish populations are still able to grow and spawn under the new regime. Where conditions are like those of the Hanjiang River, dams may not necessarily have calamitous consequences for fishery production.