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1.
采用生长试验、免疫放射分析和定量PCR方法,观察了生长猪血液中类胰岛素生长因子(IGF—Ⅰ)及其结合蛋白(IGFBP3)数量的变化和IGF—Ⅰ基因在肝中表达量的变化。结果显示,每1kg饲料中添加125-250mg铜,能够上调IGF-Ⅰ基因的表达量,显著提高猪的平均日增重,促进生长猪循环血液中IGF—Ⅰ浓度的增加。试验结果证实,铜是通过促进生长激素一胰岛素样生长因子轴相关因子的合成和分泌来发挥促生长作用的。  相似文献   
2.
雏鸭铜中毒的实验观察   总被引:14,自引:4,他引:10  
1日龄天府肉鸭健雏210只随机分为三组,分别喂给铜12.16mg/kg(对照或1组)、850mg/kg(2组)和1050mg/kg(3组)日粮7周。结果表明,后两组雏鸭分别于3周龄和2周龄开始出现临床症状,生长发育迟缓,并出现死亡;血红蛋白含量和红细胞数量显著低于对照组(p<0.05),红细胞变形、变性,大小不等;血清铜含量和肝铜含量极显著高于对照组(p<0.01)。  相似文献   
3.
日粮中添加铜对高产乳牛泌乳量影响的研究   总被引:3,自引:0,他引:3  
本研究探索了在奶牛日粮中添加Cu++对其产奶性能的影响.结果表明,在日粮中添加Cu++ 7.6×10-6,牛奶的乳脂率和干物质含量并未降低,牛奶中铜的残留量低于国家规定标准,能使奶牛泌乳量增产7.66%~9.61%,从而增加乳牛业的经济效益.  相似文献   
4.
Chitosan-copper complex compared with chitosan alone enhanced suppression ofBotrytis cinerea rot development on four-true-leaf cucumber seedlings in controlled growth chambers. This paper constitutes the first report of such enhancement. The optimal concentrations for the most effective suppression ofBotrytis development were 0.2 gl −1 chitosan and 1.6 mmole copper. After 12 days’ incubation, marked and significantly better disease suppression was obtained with chitosan-copper complex (75% suppression) than with chitosan alone. The chitosan-copper complex could be a very promising decay control agent for use in both conventional and organic agriculture. http://www.phytoparasitica.org posting Dec. 18, 2002.  相似文献   
5.
不同水平铜对小鼠营养与免疫功能的影响   总被引:1,自引:0,他引:1  
试验选用19~20日龄昆明普通级小鼠108只,低铜饲养20d后,随机分成3组,每组设3个重复,每重复4只。1组饲喂以大豆分离蛋白-玉米淀粉为主的基础饲粮作为对照;2、3组饲粮中分别加入4.5mg/kg和45mg/kg的硫酸铜以铜计,测定小鼠组织器官中铜浓度及部分免疫学指标,以研究不同水平铜对小鼠营养和免疫功能的影响。  相似文献   
6.
日粮铜源及其水平对猪下丘脑生长抑素分泌的影响   总被引:5,自引:1,他引:5  
选用军牧 1号断乳仔猪 75头 ,随机分为 5组 ,采用完全随机化设计进行生长试验 ,研究了 2种铜源 (硫酸铜、蛋氨酸铜 )、3个添加水平 (5、12 5、2 5 0 mg/ kg)的日粮对猪生长及生长抑素分泌的影响 ,同时研究了下丘脑儿茶酚胺的变化与生长抑素的关系。结果表明 :日粮中添加 12 5 m g/ kg(P <0 .0 1)、2 5 0 mg/ kg(P<0 .0 5 )硫酸铜 ,12 5 mg/ kg(P<0 .0 1)、2 5 0 mg/ kg(P<0 .0 5 )蛋氨酸铜 ,可显著提高仔猪增重 ;而上述添加 5 mg/ kg硫酸铜组猪下丘脑生长抑素含量为 2 2 5 .74 ng/ g组织 ,显著高于 12 5 mg/ kg(P<0 .0 5 )、2 5 0 mg/ kg(P<0 .0 5 )硫酸铜组和 12 5 mg/ kg(P<0 .0 1)、2 5 0mg/ kg(P<0 .0 1)蛋氨酸铜组。下丘脑生长抑素含量与去甲肾上腺素、多巴胺含量呈负相关关系 (P<0 .0 5 )。据此认为 ,高剂量铜通过调节儿茶酚胺代谢抑制下丘脑生长抑素分泌 ,是其促生长调控的途径之一  相似文献   
7.
铜中毒对雏鸭某些血液指标的影响   总被引:6,自引:4,他引:6  
选用1日龄天府肉鸭210只,随机分为3组,分别喂以对照日粮(Cu12.16mg/kg)、铜中毒日粮(Cu850mg/kg)和铜中毒日粮(Cu1050mg/kg)。试验期7周。以血液病理学方法观察了铜中毒对雏鸭某些血液学指标的影响。结果显示铜中毒组、组雏鸭分别于2周龄和3周龄开始出现临床症状,死亡18只和5只。血液病理学变化表现为,红细胞大小不等、变形变性、坏死溶解;红细胞数量和血红蛋白含量显著降低(P<0.01),血清谷丙转氨酶、谷草转氨酶活性显著升高(P<0.05或P<0.01),血清铜蓝蛋白活性下降。结果表明,铜中毒对雏鸭的生长发育和上述血液指标影响明显。  相似文献   
8.
铜对体外仔猪软骨细胞增殖和细胞骨架的影响   总被引:1,自引:0,他引:1  
体外分离、培养仔猪关节软骨细胞,在细胞培养液中分别添加铜0、7.8、15.6、31.2、62.5μmol/L。结果表明,软骨细胞在4种铜浓度中可存活并增殖,但随铜浓度的增加,其存活率、增殖率、3H-TdR掺入率有明显的差异,且能破坏软骨细胞骨架。培养液中添加铜31.2μmol/L,对软骨细胞的增殖作用最强,增殖率、3H-TdR掺入数显著高于对照组(P<0.01),软骨细胞形态及骨架均正常。表明31.2μmol/L铜浓度是促进体外软骨细胞增殖的最适浓度。  相似文献   
9.
Trace minerals feeding had significant effects on sperm production and fertility with better absorption and proper utilization within the body for optimum reproductive function. Several studies have shown that more influenced trace elements in the diets of animals are copper (Cu) and zinc (Zn). Bucks showing deficiency of this mineral might affect the quality of semen production which in turn would affect the fertility. This experiment was thus designed to test the effects of organic Cu and Zn supplementation on antioxidants enzyme activities and sperm functional attributes in fresh semen of bucks. Forty bucks (n = 40, Aged 5 months) were assigned to ten groups of four animals in each group, supplemented (for a period of 8 months) with different levels of organic Zn: 20 mg (T2), 40 mg (T3) and 60 mg (T4), organic Cu: 12.5 mg (T5), 25 mg (T6), 37.5 mg (T7) and combined organic Zn and Cu: 20 + 12.5 mg (T8), 40 + 25 mg (T9), 60 + 37.5 mg (T10), respectively, per kg dry matter and no additional mineral diet (control; T1). One hundred and sixty semen samples were collected through electro‐ejaculator and analysed for sperm quantity, quality, acrosome intactness and plasma membrane integrity and correlated with the catalase, superoxide dismutase, glutathione peroxidase and glutathione reductase enzyme activities in seminal plasma. The results indicated organic Cu and zinc supplemented bucks produced more sperm cells, had higher sperm concentrations, maintained higher (< .01) sperm livability, plasma membrane and acrosome integrities, more motility and velocity. The increased antioxidant enzyme activities, reduced oxidative stress and lowered lipid peroxidation were positively correlated (< .05) with the sperm functional attributes. In conclusion, organic Cu and Zn supplement to male goats showed protective roles against oxidative damage and maintained better fresh semen characteristics.  相似文献   
10.
The effects of various copper (Cu) concentrations on the antioxidative system in the roots of Medicago sativa were explored. The results indicated that the Cu content of the roots reached a value of 854 μg g?1 DW at 10 μm Cu and a value of 4415 μg g?1 DW at 100 μm Cu, suggesting that M. sativa has better ability to tolerate and accumulate Cu than other Cu‐bioaccumulators, and is a potential plant for phytoremediation. Treatment with Cu resulted in a significant increment in the levels of H2O2, O2˙? and OH˙. The reduced form of ascorbate and glutathione reached a peak at 30 μm Cu, and was followed by a sharp depletion to a lower level than that of the control. In contrast, the levels of the oxidised forms of ascorbate and glutathione showed a progressive increment with increasing Cu concentrations, suggesting that the antioxidant system was unable to cope with Cu stress at higher Cu levels. Under the Cu concentrations tested, the activity of catalase (CAT, EC 1.11.1.6), ascorbate peroxidase (APX, EC 1.11.1.11) and glutathione reductase (GR, EC 1.6.4.2) increased at lower Cu concentrations, and then decreased, reaching a maximum at 30 μm of Cu for APX and GR, at 10 μm for CAT, whereas the activities of guaiacol peroxidase (POD, EC 1.11.1.7) were gradually increased with increasing Cu concentrations. PAGE analysis of superoxide dismutase (SOD, EC 1.1.5.1.1) revealed that one band is a Mn‐SOD and five bands are identified as Cu, Zn‐SOD, whereas Fe‐SOD isoforms were not found in the roots of alfalfa. Cu at 10–100 μm increased the intensity of constitutive isozymes of CAT, APX and POD, whereas it decreased the intensity of isozymes of glucose‐6‐phosphate dehydrogenase (G6PDH, EC 1.1.1.49) significantly. The activities of lipoxygenases (LOX, EC 1.13.11.12) were gradually augmented with increasing Cu concentrations, demonstrating that LOXs are probably involved in production of lipid hydroperoxides and superoxide anion. There was a continuous and pronounced enhancement in the activity of esterase (EST, EC 3.1.1.1) in roots treated with 10–30 Cu μm , whereas EST activity in roots exposed to above 30 μm Cu declined, suggesting that EST plays a protective role under lower Cu concentrations stress.  相似文献   
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