[Objective] The aim was to carry out isozyme analysis of jin silver carp (Hypophthalmichthys molitrix Var Jing). [Method] The isozyme of AAT, EST, α-GPD, GPI, IDH, LDH, MDH, ME, PGM and PROT of muscles and liver in t...[Objective] The aim was to carry out isozyme analysis of jin silver carp (Hypophthalmichthys molitrix Var Jing). [Method] The isozyme of AAT, EST, α-GPD, GPI, IDH, LDH, MDH, ME, PGM and PROT of muscles and liver in two populations of the silver carp (Hypophthalmichthys molitrix): Jin silver carp (a breed through selective breeding) and artificially propagated population bought from Jingzhou city, Hubei Province were examined by horizontal starch gel electrophoresis. [Result] Eighteen loci were observed in two populations. Two loci of GPI* and PGM* in Jing silver carp population and the locus of GPI* in Jingzhou population were polymorphic. The proportions of polymorphic loci (maximum allele frequency≤0.99) of Jing silver carp and Jingzhou populations were 11.11% and 5.56% respectively, expected heterozygosity were 0.015 0 and 0.001 1 respectively. The Nei’s genetic distances were 0.000 59 between two populations. The result of chi-square test of the GPI* gene in two populations showed that their genetic structure has very significant difference. [Conclusion] This study provided a theoretical basis for large-scale extension of Jing silver carp.展开更多
Among fresh water fishes, silver carp because of fast growth rate and desired meat quality, is a dominant species in polyculture systems in Iran. This fish mainly feed on phytoplankton. In present survey kidney and in...Among fresh water fishes, silver carp because of fast growth rate and desired meat quality, is a dominant species in polyculture systems in Iran. This fish mainly feed on phytoplankton. In present survey kidney and intestine of 120 silver carp (Hypophtalmictys molitrix) from 4 regions in Khuzestan province-Iran have been studied. Tissue samples were provided from kidney and intestine and sectioned by routine method after paraffin embedding and finally stained with hematoxilin and eosin (H & E). The microscopic results were analyzed qualitatively and quantitatively. Microscopical analysis showed that kidney tissue had lesions including: edema, necrosis, uroliths, hemorrhage and degeneration. In different regions, fishes showed different prevalence of lesions. Edema and urolith were the most prevalent lesions (30 and 25 percent respectively). In histometric analysis the diameter of layers of intestine in some of the fish farms were significantly higher than the other regions. This increase was because of increase in muscular layer. The intensity of all lesions was estimated as light according to distribution of lesions. The probable cause of these lesions may be the high stocking density, intoxication, water quality problem such as excessive carbon dioxide. The only lesion in intestine was the excessive proliferation of mucus cells that this lesion may be created due to the improper plankton diet.展开更多
研究了硫酸铜、福尔马林、高锰酸钾和敌百虫4种渔药对鲢(Hypophthalmichthys molitrix)鱼种的急性毒性。结果显示:硫酸铜的24 h LC50为7.71 mg/L,48 h LC50为6.11 mg/L,安全浓度为1.15 mg/L;福尔马林的24 hLC50为48.17 mg/L,48 h LC50为...研究了硫酸铜、福尔马林、高锰酸钾和敌百虫4种渔药对鲢(Hypophthalmichthys molitrix)鱼种的急性毒性。结果显示:硫酸铜的24 h LC50为7.71 mg/L,48 h LC50为6.11 mg/L,安全浓度为1.15 mg/L;福尔马林的24 hLC50为48.17 mg/L,48 h LC50为36.25 mg/L,安全浓度为6.16 mg/L;高锰酸钾的24 h LC50为3.87 mg/L,48 hLC50为2.75 mg/L,安全浓度为1.74 mg/L;敌百虫的24 h LC50为11.96 mg/L,48 h LC50为9.39 mg/L,安全浓度为0.42 mg/L。结果表明,敌百虫可安全使用,硫酸铜和福尔马林需慎用,高锰酸钾不适宜在鲢鱼种的防病中使用。展开更多
文摘[Objective] The aim was to carry out isozyme analysis of jin silver carp (Hypophthalmichthys molitrix Var Jing). [Method] The isozyme of AAT, EST, α-GPD, GPI, IDH, LDH, MDH, ME, PGM and PROT of muscles and liver in two populations of the silver carp (Hypophthalmichthys molitrix): Jin silver carp (a breed through selective breeding) and artificially propagated population bought from Jingzhou city, Hubei Province were examined by horizontal starch gel electrophoresis. [Result] Eighteen loci were observed in two populations. Two loci of GPI* and PGM* in Jing silver carp population and the locus of GPI* in Jingzhou population were polymorphic. The proportions of polymorphic loci (maximum allele frequency≤0.99) of Jing silver carp and Jingzhou populations were 11.11% and 5.56% respectively, expected heterozygosity were 0.015 0 and 0.001 1 respectively. The Nei’s genetic distances were 0.000 59 between two populations. The result of chi-square test of the GPI* gene in two populations showed that their genetic structure has very significant difference. [Conclusion] This study provided a theoretical basis for large-scale extension of Jing silver carp.
文摘Among fresh water fishes, silver carp because of fast growth rate and desired meat quality, is a dominant species in polyculture systems in Iran. This fish mainly feed on phytoplankton. In present survey kidney and intestine of 120 silver carp (Hypophtalmictys molitrix) from 4 regions in Khuzestan province-Iran have been studied. Tissue samples were provided from kidney and intestine and sectioned by routine method after paraffin embedding and finally stained with hematoxilin and eosin (H & E). The microscopic results were analyzed qualitatively and quantitatively. Microscopical analysis showed that kidney tissue had lesions including: edema, necrosis, uroliths, hemorrhage and degeneration. In different regions, fishes showed different prevalence of lesions. Edema and urolith were the most prevalent lesions (30 and 25 percent respectively). In histometric analysis the diameter of layers of intestine in some of the fish farms were significantly higher than the other regions. This increase was because of increase in muscular layer. The intensity of all lesions was estimated as light according to distribution of lesions. The probable cause of these lesions may be the high stocking density, intoxication, water quality problem such as excessive carbon dioxide. The only lesion in intestine was the excessive proliferation of mucus cells that this lesion may be created due to the improper plankton diet.
文摘研究了硫酸铜、福尔马林、高锰酸钾和敌百虫4种渔药对鲢(Hypophthalmichthys molitrix)鱼种的急性毒性。结果显示:硫酸铜的24 h LC50为7.71 mg/L,48 h LC50为6.11 mg/L,安全浓度为1.15 mg/L;福尔马林的24 hLC50为48.17 mg/L,48 h LC50为36.25 mg/L,安全浓度为6.16 mg/L;高锰酸钾的24 h LC50为3.87 mg/L,48 hLC50为2.75 mg/L,安全浓度为1.74 mg/L;敌百虫的24 h LC50为11.96 mg/L,48 h LC50为9.39 mg/L,安全浓度为0.42 mg/L。结果表明,敌百虫可安全使用,硫酸铜和福尔马林需慎用,高锰酸钾不适宜在鲢鱼种的防病中使用。