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1.
The complete sequence of the carp mitochondrial genome of 16,575 base pairs has been determined. The carp mitochondrial genome encodes the same set of genes (13 proteins, 2 rRNAs, and 22 tRNAs) as do other vertebrate mitochondrial DNAs. Comparison of this teleostean mitochondrial genome with those of other vertebrates reveals a similar gene order and compact genomic organization. The codon usage of proteins of carp mitochondrial genome is similar to that of other vertebrates. The phylogenetic relationship for mitochondrial protein genes is more apparent than that for the mitochondrial tRNA and rRNA genes.Correspondence to: F. Huang  相似文献   
2.
杭绮  毛树坚 《动物学研究》1993,14(4):367-373
以草鱼ZC7901细胞株为材料,观察鱼类细胞从间期染色质到中期染色体的包装过程。主要通过(1)分裂期与间期细胞融合,诱导染色体早熟凝集;(2)染色体“伸长”处理;(3)培养细胞的低渗处理;(4)染色质辅展等方法,制作染色体标本,进行扫描和透射电镜观察。观察表明,鱼类染色质的基本结构与哺乳类细胞相同,也是直径约10nm的核丝。染色体的色装有两种形式:一种是多级螺旋化形成直径约300nm的染色单体,  相似文献   
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4.
1.白鲢鱼与黄鳝血清转铁蛋白在分离纯化上的差异。2.用SDS-PAGE测定分子量,白鲢鱼血清转铁蛋白有两个组份,分子量分别为77kD和70kD;黄鳝血清转铁蛋白为单一组份,分子量为68.1 kD。3.白鲢鱼与黄鳝血清转铁蛋白都含糖,但都不与ConA-Sepharose柱结合。4.白鲢鱼与黄鳝血清转铁蛋白氨基酸组成的测定和比较。5.白鲢鱼与黄鳝血清转铁蛋白用胰蛋白酶在相同条件下进行酶解,白鲢鱼能得到分子量在37kD左右的二个片段,而黄鳝则几乎不能被胰蛋白酶酶解。6.白鲢鱼血清转铁蛋白在404.5nm处有一特异吸收峰,而黄鳝则在407.5nm处。  相似文献   
5.
鲤肠道正常菌群的研究   总被引:24,自引:1,他引:24  
本实验用稀释滴种的定量方法,对淡水养殖地中健康鲤肠道内的10种菌群进行了定性、定量分析,并对结果进行统计学处理,得到鲤肠菌群的一些生理值。结果表明鲤肠道中需氧、兼性厌氧优势菌是气单胞菌和酵母菌,厌氧优势菌是拟杆菌。对不同时间、不同温度条件下同一养殖池中鲤肠道菌群的测定结果比较表明:葡萄球菌、假单胞菌差异显著(p<0.05),气单胞菌、大肠杆菌、需氧芽胞杆菌、酵母菌、乳酸杆菌、双歧杆菌、拟杆菌、梭状芽胞杆菌差异不显著(p>0.05),表明该8种菌群在鲤肠道中的菌数处于相对稳定状态,属于肠道正常菌群。  相似文献   
6.
鲤鳃表面结构扫描电镜研究   总被引:31,自引:0,他引:31  
鲤的鳃丝表面显示了由三边形一六边形不等的表皮细胞,呈现出各种图案式的结构。  相似文献   
7.
The different components of 86Rb+ influx (a marker for K+ influx) were measured in erythrocytes of 10°C and 30°C-acclimated carp. Passive influx was similar in both acclimation groups and was stimulated by increased temperature. The active and facilitated components of 86Rb+ influx plateaued above 15°C in 10°C-acclimated carp and above 25°C in 30°C-acclimated carp. The furosemide-sensitive component, an ill-defined facilitated mechanism, was particularly affected by high temperatures. The influx rates of each acclimation group at 50°C were almost identical but at higher temperatures, the influx rates for 30°C-acclimated carp were substantially greater than for the 10°C-acclimated fish.  相似文献   
8.
In all the vertebrates, synthesis of melatonin and its rhythm-generating enzyme arylalkylamine N-acetyltransferase (AANAT) reaches its peak in the pineal during the night in a daily light-dark cycle, but the role of different neuronal signals in their regulation were unknown for any fish. Hence, the authors used specific agonist and antagonists of receptors for different neuronal signals and regulators of intracellular calcium (Ca2+) and adenosine 3',5'-cyclic monophosphate (cAMP) in vitro to study their effects on the abundance of AANAT and titer of melatonin in the carp (Catla catla) pineal. Western blot analysis followed by quantitative analysis of respective immunoblot data for AANAT protein, radioimmunoassay of melatonin, and spectrophotometric analysis of Ca2+ in the pineal revealed stimulatory effects of both adrenergic (α1 and β1) and dopaminergic (D1) agonists and cholinergic (both nicotinic and muscarinic) antagonists, inhibition by both adrenergic and dopaminergic antagonists and cholinergic agonists, but independent of the influence of any agonists or antagonists of α2-adrenergic receptors. Band intensity of AANAT and concentration of melatonin in the pineal were also enhanced by the intracellular calcium-releasing agent, activators of both calcium channel and adenylate cyclase, and phophodiesterase inhibitor, but suppressed by inhibitor of calcium channel and adenylate cyclase as well as activator of phophodiesterase. Moreover, an inhibitory effect of light on the pineal AANAT and melatonin was blocked by both cAMP and proteasomal proteolysis inhibitor MG132. Collectively, these data suggest that dark-induced abundance of AANAT and melatonin synthesis in the carp pineal are a multineuronal function, in which both adrenergic (α1 and β1, but not α2) and dopaminergic signals are stimulatory, whereas cholinergic signals are inhibitory. This study also provides indications, though arguably not conclusive evidence, that in either case the neuronal mechanisms follow a signal-transduction pathway in which Ca2+ and cAMP may act as the intracellular messengers. It also appears that proteasomal proteolysis is a conserved event in the regulation of AANAT activity in vertebrates. (Author correspondence: )  相似文献   
9.
Maisstärke, Maisquellstärke, Weizenstärke, Weizenquellstärke, Kartoffelstärke oder Maniokmehl werden in Anteilen von 41% bzw. 46,7% (Maniokmehl) einer Basalration zugemischt. Jede Versuchsration wurde an insgesamt 33 Karpfen (Cyprinus carpio L.) (drei Becken mit je 11 Karpfen) in einer Menge von 1,8‐ 2,0 % der Lebendmasse über eine einheitliche Versuchsdauer von 118 Tagen ab einer mittleren Lebendmasse von 146 g verfüttert. Die 4 Rationen auf Basis von Mais‐ bzw. Weizenstärke weisen insgesamt die gleiche, hohe Energieverdaulichkeit von etwa 90% auf. Die Zumischung von Kartoffelstärke bzw. von Maniokmehl verringert die Energieverdaulichkeit um 5 % bzw. 3% signifikant. Das Wachstum und der Futteraufwand werden durch die unterschiedlichen Stärkearten nicht beeinflußt. Zu Versuchsende weisen die Karpfen eine mittlere Masse von 520 g auf. Die Ganzkörper haben insgesamt mittlere Gehalte an Rohasche, Rohprotein und Gesamtfett bzw. Energie von 2,8, 15,7,9,4% bzw. 7,4 kJ pro g Frischmasse. Allerdings führt die Zumischung von Kartoffelstärke bzw. Maniokmehl zu einer deutlich geringeren Energieretention gegenüber Mais‐ und Weizenstärke, da die Trockensübstanz‐, Fett‐ und Energiegehalte dieser Karpfen signifikant niedriger sind.  相似文献   
10.
Hypoxia induced apoptosis has been studied extensively in many mammalian cell lines but there are only a few studies using whole animal models. We investigated the response of the intact liver to hypoxia in a hypoxia tolerant fish, the carp (Cyprinus carpio, L). We exposed carp to hypoxia for up to 42 days, using oxygen level (0.5 mgO2/L) that were slightly higher than the critical oxygen level of carp. There was extensive DNA damage in liver cells, especially during the first week of exposure, indicated by a massive TUNEL signal. However there was no change in cell proliferation, cell number or size, no increase in caspase-3 activity, no increase in single stranded DNA and this, combined with a number of other observations, led us to conclude there was no increase in apoptosis in the liver during hypoxia. There was up-regulation of some anti-apoptotic genes and proteins (Bcl-2, HSP70, p27) and down-regulation of some pro-apoptotic genes (Tetraspanin 5 and Cell death activator). The cells appeared to enter cell cycle arrest, presumably to allow repair of damaged DNA. As there was no change in cell proliferation and cell number, the damaged cells were not entering apoptosis and must have recovered during prolonged hypoxia.  相似文献   
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