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131.
两种一步法RNA提取试剂的比较   总被引:2,自引:0,他引:2  
RNA的提取在生物医学研究和临床检测上应用广泛。本文分别用进口Invitrogen公司生产的以及我们自己研制的一步法RNA提取试剂,提取大肠杆菌RNA、鸡肌肉组织RNA和尿囊液RNA,通过核酸电泳和荧光定量RT-PCR进行比较。结果表明用我们自己研制的和进口的试剂提取的RNA都不含有DNA;这些RNA都可以作为模板进行RT-PCR检测,并且在数量上相互之间没有明显差异。说明我们自己研制的一步法RNA提取试剂可以取代进口试剂。此外,本文还讨论了此类试剂一些评定方法。  相似文献   
132.
黄羽肉鸡育肥期维生素A、E适宜添加量研究   总被引:6,自引:0,他引:6  
选体重和脚胫颜色度接近的56日龄黄羽肉鸡共960只,随机分为16个处理组,每处理60只鸡。采用双因子4×4水平的随机试验设计,4个维生素A添加水平(0、5000、10000、20000IU/kg)和4个维生素E添加水平(0、30、60、120IU/kg)。结果表明:在维生素A0~10000IU/kg、维生素E0~60IU/kg范围内,黄羽肉鸡的日增重和饲料报酬逐渐提高;日粮维生素A添加量超过10000IU/kg,血浆中维生素E含量有下降趋势。高水平维生素A(20000IU/kg),升高血浆TBARS值,大剂量维生素E(120IU/kg),提高机体脂质稳定性。日粮添加20000IU/kg维生素A对色素的沉积有抑制作用,随维生素E水平的上升,皮肤的颜色指数呈现上升趋势。维生素A和E含量及其互作对血清新城疫抗体效价有显著影响。综合考虑,黄羽肉鸡育肥期维生素A、E的适宜添加量分别为5000~10000IU/kg,30~60IU/kg。  相似文献   
133.
通过体外和体内两种方法研究黄芩抗鸡大肠杆菌作用.通过体外抑菌作用测定黄芩水煎液对鸡大肠杆菌的最小抑菌浓度(MIC)为2.5g/ml;体内抑菌作用通过对7日龄雏鸡的攻毒与治疗试验来研究,体内治疗药物浓度5g/ml可使90%以上雏鸡获得保护,10g/ml可使100%雏鸡获得保护.以上说明黄芩可以对抗鸡大肠杆菌,可以防治鸡的大肠杆菌病.  相似文献   
134.
四川猪链球菌Ⅱ型分离株生物学特性的初步研究   总被引:2,自引:0,他引:2  
猪链球菌Ⅱ型是导致许多国家猪链球菌病的主要病原,自90年代晚期江苏发生猪链球菌Ⅱ型感染以来已成为我国引起人畜共患病的一种重要的新病原菌。最近在四川省部分地区发生了不明原因的猪源人畜共患病,且具有较高的死亡率。我们从病死猪的病料中成功分离到三株猪链球菌分离株,经革兰氏染色、生化试验、血清凝集试验和PCR鉴定,最终证实为猪链球菌Ⅱ型。通过对其毒力因子进行鉴定.结果发现MRP和EF均为阳性。进一步的药敏试验证实:分离菌株对氨苄青霉素、先锋霉素Ⅳ、羧苄青霉素、复方新诺明、头孢肤肟等抗菌药高度敏感。  相似文献   
135.
黄土丘陵区草本群落生物量空间分布格局及其影响因素   总被引:1,自引:0,他引:1  
草地是干旱半干旱地区黄土高原植被组成的主体,而草本植物作为草地生态系统的优势群落,在黄土高原恢复植被和水土保持建设方面存在着不可替代的优势。因此本试验选取黄土丘陵区不同纬度下的草本群落为研究对象,分析草本群落地上、地下生物量的空间分布特征及其影响因素,同时并验证等速生长关系,以期为黄土丘陵区恢复植被、改善生态建设方面提供理论指导。结果表明:(1)在纬度梯度35.95°~38.36° N变化范围内,黄土丘陵区不同植被带草本群落地上生物量变化范围为54.60~204.32 g·m-2,平均值156.968 g·m-2,变异系数为27.83%;地下生物量变化范围为78.88~829.64 g·m-2,平均值469.21 g·m-2,变异系数为48.87%;草本群落地下/地上生物量变化范围为 0.93~4.49,平均值2.89,变异系数为39.18%。草本群落生物量(地下、地上)大小顺序均为:森林-草原带>草原带>森林带>草原-荒漠带,且地上、地下生物量随纬度梯度变化规律均呈现出“先增加后减少”的单峰型变化趋势。(2)草本群落地下与地上生物量呈极显著正相关(P<0.01),决定系数达到0.59,且符合等速生长关系。(3)草本群落地下生物量与年均降水、年均温、土壤有机碳、全氮、全磷含量之间均呈显著相关。气候因子和土壤理化性质对地下生物量都具有重要影响作用,其影响机理还需进一步结合植物生物学和生理生态方面的综合研究才能做出准确结论。  相似文献   
136.
137.
Avian pathogenic E. coli (APEC) is the etiologic agent of avian colibacillosis, the most common disease responsible for chicken morbidity in the world. Although multiple virulence-associated factors were identified, their prevalence in Algeria is still poorly known. In the present research, 92 avian pathogenic E. coli (APEC) isolates were recovered from broilers with clinical signs and lesions of colibacillosis. In addition, 32 E. coli isolates collected from feces of healthy birds (AFEC) were included for comparison. All isolates were investigated by PCR for the presence of a total of 11 virulence-associated genes described for avian pathogenic (iroN, ompT, hlyF, iss, iutA, and fimC) and diarrheagenic E. coli (eae, stx, elt/est, ipaH, and aggR). The sensitivity of 39 APEC isolates to 16 antibiotics was also determined using antimicrobial pretreated microplates. Here, we report that 98% of the examined isolates host at least one of the tested virulence factors. The most prevalent genes in APEC were iutA (90.6%), ompT (86.9%), and iss (85.8%); whereas, iutA (78.1%), fimC (78.1%), and iroN (68.7%) were the highest prevalent genes in AFEC. Our data showed that none of the AFEC isolates harbor any of the tested diarrheagenic genes. Moreover, only elt/est (5.4%), stx (2.1%), and ipaH (2.1%) genes were carried by APEC isolates. We further established that ceftazodime, ceftiofur, mequindox, amoxicillin/clavulanic acid, and meropenem were the most efficient antibiotics against the analyzed APEC isolates. Overall, our findings provide more insights about APEC and AFEC virulence potential in Algeria which could participate in the fight against colibacillosis.  相似文献   
138.
139.
This study was to investigate the effects of in ovo feeding (IOF) L‐arginine (Arg) solution on the development of digestive organs, the duodenal mucosa of broiler embryos and hatchlings, and the growth performance of chicks during the first week post‐hatch. A total of 720 fertilized eggs with similar weight were randomly allocated to three groups, consisting of eight replicates of 30 eggs each. Three treatments were arranged as non‐injected control, diluent‐injected (0.75% NaCl solution) group and Arg solution‐injected group containing 1% Arg, dissolved in diluent. At 17.5 days of incubation, 0.6 ml of IOF solution was injected into amniotic fluid of each egg of injected groups. Results showed IOF of Arg solution increased (p < .05) the chick embryo weight at 19 days of incubation; the body weight gain of post‐hatch broilers during 1–7 days; the weights of liver, pancreas, proventriculus and gizzard; the concentrations of duodenal ghrelin, vasoactive intestinal peptide and glucagon‐like peptide 2; and the duodenum mucosal enzyme activities of alkaline phosphatase, maltase, sucrase and inducible nitric oxide synthase of 7‐day‐old post‐hatch broilers compared with other groups. The IOF of Arg solution also increased (p < .05) the villus height (VH) and the ratio of VH to crypt depth (CD) and decreased (p < .05) the CD in duodenum of broiler embryos and post‐hatch hatchlings, except for the CD at 19 days of incubation. In conclusion, IOF of 1% Arg solution into the amnion at 17.5 days of incubation could improve the development of digestive organs, the duodenal morphology, the releasing of gastrointestinal hormones and mucosal enzyme activities of broiler embryos and hatchlings and finally the growth performance of chicks during the first week post‐hatch. Therefore, IOF of appropriate Arg solution could be an effective technology for regulating early nutrition supply and subsequent growth development in poultry industry.  相似文献   
140.
Metabolic disorder is a major health problem and is associated with a number of metabolic diseases. Due to native hyperglycaemia and resistance to exogenous insulin, chickens as a model had used in the studies of adipose tissue biology, metabolism and obesity. But no detailed information is available about the comprehensive changes of serum metabolites at different stages of chicken embryonic development. This study employed LC/MS‐QTOF to determine the changes of major functional metabolites at incubation day 14 (E14d), 19 (E19d) and hatching day 1 (H1d), and the associated pathways of differential metabolites during chicken embryonic development were analysed using Metabolite Set Enrichment Analysis method. Results showed that 39 metabolites were significantly changed from E14d to E19d and 68 metabolites were significantly altered from E19d to H1d in chicken embryos. Protein synthesis was promoted by increasing the concentrations of L‐glutamine and threonine, and gonadal development was promoted through increasing oestrone content from E14d to E19d in chicken embryos, which indicated that serum glutamine, threonine and oestrone contents may be considered as the candidate indicators for assessment of early embryonic development. 2‐oxoglutaric acid mainly contributed to enhancing the citric cycle, and it plays an important role in improving the growth of chicken embryos at the late development; the decreasing of L‐glutamine, L‐isoleucine and L‐leucine contents from E19d to H1d in chicken embryonic development implied their possible functions as the feed additive during early posthatch period of broiler chickens to satisfy the growth. These results provided insights into understand the roles of serum metabolites at different developmental stages of chicken embryos, it also provides available information for chicken as a model to study metabolic disease or human obesity.  相似文献   
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