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1.
从河北省兔场分别单卵囊分离孢子化大型艾美耳球虫卵囊、黄艾美耳球虫卵囊及肠艾美耳球虫卵囊,接种无球虫兔后获得纯种卵囊,CTAB法提取孢子化卵囊基因组DNA。利用艾美耳属球虫18SrDNA和5.8SrDNA保守引物,PCR扩增3种兔球虫ITS-1片段,产物纯化后测序。将3种球虫ITS-1测序结果与GenBank发布的兔球虫ITS-1序列进行比对和遗传距离比较,绘制系统发育树。结果表明,大型艾美耳球虫、黄艾美耳球虫及肠艾美耳球虫河北株分别扩增出424、455、434bp的ITS-1片段。大型艾美耳球虫、黄艾美耳球虫及肠艾关耳球虫河北株与GenBank中发布的同种兔球虫ITS-1序列相似性分别为97.4%、97.9%和96.9%。系统发育树显示兔球虫ITS-1序列形成1个单系群,该单系群根据寄生部位分为2个姊妹群。  相似文献   

2.
3种兔球虫18S rDNA部分序列测定与系统发育分析   总被引:1,自引:0,他引:1  
采用单卵囊分离法从河北某兔场分离大型艾美耳球虫、黄艾美耳球虫及肠艾美耳球虫,接种无球虫兔后获得大量纯种卵囊,CTAB法提取孢子化卵囊基因组DNA。利用艾美耳属球虫18S rDNA保守引物,PCR扩增3种兔球虫18S rDNA片段,产物纯化后测序。将3种球虫18S rDNA测序结果与GenBank中发布的兔球虫18S rDNA序列用DNAStar软件进行比对。使用MEGA4.0软件对兔球虫18S rDNA进行同源性比较,并绘制遗传进化树。结果表明,大型艾美耳球虫扩增出大小为1 521bp的18S rDNA片段;黄艾美耳球虫及肠艾美耳球虫均扩增出大小为1 520bp的18S rDNA片段。序列比对结果显示,3种河北株兔球虫与GenBank中相应的3种兔球虫18S rD-NA(EF694016、EF694011、EF694012)相似性分别为99.6%、99.6%和100%。3种河北株兔球虫序列和GenBank中兔球虫18S rDNA序列(EF694007-EF694017)位于一个单系集群。  相似文献   

3.
利用核糖体DNA内转录间隔区1(ITS-1)序列对兔艾美耳球虫进行系统进化分析,并探讨生物学和形态学特征在兔球虫进化中的意义。单卵囊分离大型、黄、肠、中型及穿孔艾美耳球虫卵囊,接种无球虫兔获得纯种卵囊,CTAB法提取卵囊基因组DNA,PCR扩增ITS-1区后克隆、测序。将测序结果与GenBank发布的兔球虫ITS-1序列进行比对和遗传距离分析,绘制系统进化树。结果显示:大型、黄、肠、中型及穿孔艾美耳球虫河北株ITS-1序列分别长320、330、351、336和341bp。5种兔球虫河北株与GenBank中同种兔球虫ITS-1序列相似性分别为96.9%、97.3%、96.9%、99.1%和99.4%。兔球虫形成单系群,该单系群分为2个姐妹谱,与卵囊残体有无相对应,其它形态学和生物学特征与系统进化无相关性。研究结果表明外残体的有无可作为兔球虫进化分类的特征。  相似文献   

4.
四种兔艾美耳球虫卵囊产量的比较   总被引:1,自引:0,他引:1  
分别用4种兔艾美耳球虫经口接种45日龄无球虫感染兔,接种剂量为1×104个卵囊/兔。感染后4d~20d,以麦克马斯特氏法计数每天排出的卵囊。结果表明,肠艾美耳球虫排卵量最多,为365.76×106个,中型艾美耳球虫为317.26×106个、黄艾美耳球虫为304.36×106个,大型艾美耳球虫排卵量最少,为200.12×106个。大型艾美耳球虫在感染后第6.5天有卵囊排出,第10.5天达到高峰(66.50×106个/只),占总量的33.23%;肠艾美耳球虫在感染后第9天有卵囊排出,第13天达到高峰(138.40×106个/只),占总量的37.83%;黄艾美耳球虫在感染后第9天有卵囊排出,第11天达到高峰(102.80×106个/只),占总量的33.78%;中型艾美耳球虫在感染后第4.5天有卵囊排出,第6.5天达到高峰(167.8×106个/只),占总量的52.89%。  相似文献   

5.
通过对多种鸡球虫和松鼠球虫18SrRNA和28SrRNA进行序列比对分析,在18SrRNA 3′端和28SrRNA 5′端保守区设计艾美耳属通用引物,以斯氏艾美耳球虫洛阳分离株LY卵囊基因组DNA为模板首次成功克隆到斯氏艾美耳球虫完整的ITS1-5.8SrRNA-ITS2序列,其大小为1 178bp,其中ITS1序列长度为423bp,5.8SrRNA为155bp,ITS2为600bp,斯氏艾美耳球虫LY株ITS1/2序列高度变异,与鸡球虫、啮齿动物球虫的序列相似性低于60%。然后在斯氏艾美耳球虫ITS1/2序列超变区设计种特异引物,建立了灵敏、特异的PCR检测方法。本研究结果将为兔球虫强致病种的临床诊断和揭示兔球虫种群遗传特征提供有效的分子工具。  相似文献   

6.
通过对多种鸡球虫和松鼠球虫18S rRNA和28S rRNA进行序列比对分析,在18S rRNA 3’端和28S rRNA 5’端保守区设计艾美耳属通用引物,以斯氏艾美耳球虫洛阳分离株LY卵囊基因组DNA为模板首次成功克隆到斯氏艾美耳球虫完整的ITS1-5.8S rRNA-ITS2序列,其大小为1178bp,其中ITS1序列长度为423bp,5.8S rRNA为155 bp,ITS2为600 bp,斯氏艾美耳球虫LY株ITS1/2序列高度变异,与鸡球虫、啮齿动物球虫的序列同源性低于60%。然后在斯氏艾美耳球虫ITS1/2序列超变区设计种特异引物,建立了灵敏、特异的PCR检测方法。本研究结果将为兔球虫强致病种的临床诊断和揭示兔球虫种群遗传特征提供有效的分子工具。  相似文献   

7.
Caecal samples were collected from 751 domestic rabbits of various origin and from 1229 diarrhoeic rabbits issued from 61 commercial rabbitries. They were screened for coccidiosis. In 1982, the year of introduction of the anticoccidial robenidine in commercial rabbit feeds, a dramatic decrease of coccidial infection ratio was detected in commercial rabbitries: only 6% of samples contained greater than 100 oocysts per gram against 85% in 1979, when sulphaquinoxaline/pyrimethamine was used. Only Eimeria magna, E. media and E. perforans were detected, whereas the highly pathogenic species E. flavescens and E. intestinalis had disappeared from commercial units. After 4 years of continuous use of robenidine, infection ratio rose progressively, although still far below the 1979 levels. Most of the other species reappeared, but only in very low proportions (1-4% of samples). The percentage occurrence of E. magna, E. media and E. perforans on the contrary rose progressively to 25, 26 and 34%, respectively, suggesting drug resistance. In domestic rabbitries, the incidence of coccidial infection was markedly higher and all nine species of Eimeria were detected. Eimeria magna, E. media and E. perforans were very common, E. flavescens, E. intestinalis, E. piriformis and E. stiedai were less common, whereas E. irresidua and E. coecicola were relatively rare. Notwithstanding the lower activity of robenidine against E. stiedai, no rise of hepatic coccidiosis became evident.  相似文献   

8.
安徽省肥西县家兔球虫感染情况初步调查   总被引:5,自引:0,他引:5  
对安徽省肥西县不同地区的家兔球虫种类及感染情况进行调查,结果表明该地区家兔球虫感染率为100%,并均为混合感染。鉴定出9种艾美耳球虫(Eimeria),即大型艾美耳球虫(E.magna)、盲肠艾美耳球虫(E.coecicola)、穿孔艾美耳球虫(E.perforans)、斯氏艾美耳球虫(E.stiedai)、小型艾美耳球虫(E.exigua)、中型艾美耳球虫(E.media)、松林艾美耳球虫(E.matsubayashii)、肠艾美耳球虫(E.intestinalis)和那格浦耳艾美耳球虫(E.nagpurensis),并对家兔球虫的感染强度和优势虫种等进行了记述。  相似文献   

9.
本研究应用PCR技术扩增来自广东的3株柔嫩艾美耳球虫的28S rRNA基因部分序列,并与GenBankTM登录的柔嫩艾美耳球虫、堆型艾美耳球虫、鼠肉孢子虫和刚地弓形虫虫株的相应序列进行比对分析。试验结果显示,柔嫩艾美耳球虫3个样品均获得1172 bp的28S rRNA基因部分有效序列,不同虫株序列没有差异,与GenBankTM登录的柔嫩艾美耳球虫相应序列只有一个碱基差异,显示种内序列高度保守,而与堆型艾美耳球虫、鼠肉孢子虫、刚地弓形虫相应的序列存在不同程度的差异。结果表明,28S rRNA基因部分序列可作为研究艾美耳球虫种间及其他顶复门原虫遗传变异的标记。  相似文献   

10.
Pan BL  Zhang YF  Suo X  Xue Y 《The Veterinary record》2008,162(5):153-155
The effect of subcutaneously injected diclazuril on the output of Eimeria species oocysts was studied in experimentally infected rabbits. Diclazuril was administered either prophylactically at 0.5, 1 or 2 mg/kg bodyweight two days before each rabbit was inoculated with 20,000 oocysts of a mixed-species field isolate of Eimeria or therapeutically at 1, 2 or 4 mg/kg bodyweight five days after they were inoculated. The prophylactic treatments significantly reduced (P<0.05) the output of oocysts in faeces and the numbers in the rabbits' livers at all doses. The therapeutic treatment at 4 mg/kg also caused a significant reduction (P<0.05) in oocyst shedding, but the lower doses resulted in only a moderate reduction. The shedding of the pathogenic species Eimeria stiedae, Eimeria magna, Eimeria irresidua, Eimeria flavescens, Eimeria piriformis and Eimeria intestinalis was significantly reduced (P<0.05) in all the treated groups. The burden of oocysts in the livers of the therapeutic groups (4000 to 9000) were significantly lower (P<0.05) than in the inoculated but untreated control group (23,000), but higher than in the prophylactic groups (around 1000).  相似文献   

11.
This study aimed to find a fast, sensitive and efficient protocol for molecular identification of chicken Eimeria spp. in field samples. Various methods for each of the three steps of the protocol were evaluated: oocyst wall rupturing methods, DNA extraction methods, and identification of species-specific DNA sequences by PCR. We then compared and evaluated five complete protocols. Three series of oocyst suspensions of known number of oocysts from Eimeria mitis, Eimeria praecox, Eimeria maxima and Eimeria tenella were prepared and ground using glass beads or mini-pestle. DNA was extracted from ruptured oocysts using commercial systems (GeneReleaser, Qiagen Stoolkit and Prepman) or phenol-chloroform DNA extraction, followed by identification of species-specific ITS-1 sequences by optimised single species PCR assays. The Stoolkit and Prepman protocols showed insufficient repeatability, and the former was also expensive and relatively time-consuming. In contrast, both the GeneReleaser protocol and phenol-chloroform protocols were robust and sensitive, detecting less than 0.4 oocysts of each species per PCR. Finally, we evaluated our new protocol on 68 coccidia positive field samples. Our data suggests that rupturing the oocysts by mini-pestle grinding, preparing the DNA with GeneReleaser, followed by optimised single species PCR assays, makes a robust and sensitive procedure for identifying chicken Eimeria species in field samples. Importantly, it also provides minimal hands-on-time in the pre-PCR process, lower contamination risk and no handling of toxic chemicals.  相似文献   

12.
新疆部分地区兔球虫种类调查研究   总被引:1,自引:0,他引:1  
对新疆部分地区家兔球虫的种类进行调查,发现兔的艾美耳球虫检出率为100%,并检出10种兔艾美耳球虫,即斯氏艾美耳球虫(Eimera stiedai)、大型艾美耳球虫(E.magna)、无残艾美耳球虫(E.irrestidua)、梨型艾美耳球虫(E.piriformis)、小型艾美耳球虫(Eexigua)、肠艾美耳球虫(E.intestinalis)、盲肠艾美耳球虫(E.coecicola)、穿孔艾美耳球虫((E.perforans)、野兔艾美耳球虫(E.leporis)、黄艾美耳球虫(E.flsvescens),其中穿孔艾美耳球虫、小型艾美耳球虫和斯氏艾美耳球虫为优势虫种.  相似文献   

13.
柔嫩艾美耳球虫耐药株与鸡3种球虫的同工酶的研究   总被引:6,自引:0,他引:6  
对不同离子载体抗生素具有抗药性的柔嫩艾美耳球虫和药物敏感的柔嫩区美耳球虫、布氏匀美耳球虫和堆型艾耳球虫的孢子化卵囊,采用聚安凝胶垂直板电泳,进行了乳酸脱氢酶(LDH)、葡萄糖磷酸异构酶(GPI)和葡萄糖-6-磷酸脱氢酶(G6PD)等同工酶华不同离子载体抗生素具有抗药性的柔嫩艾美耳球虫和药物同工酶酶谱可以反应出球虫种间差异;而柔嫩艾耳球虫抗性虫株的LDH酶谱是2条带,敏感虫株是3条带,抗性株比敏感株  相似文献   

14.
The anticoccidial efficacy of diclazuril was studied in rabbits artificially infected with Eimeria flavescens, Eimeria intestinalis, Eimeria magna and Eimeria perforans. Continuous administration at 1 and 2 ppm in pelleted feed proved to be highly efficacious in controlling oocyst output and faecal scores. The weight gain was comparable and the feed efficiency slightly improved compared with the non-infected, non-medicated controls, and clinical signs were fully prevented. Medication of rabbits at 0.5 ppm also provided a significant improvement in all parameters compared with the infected, non-medicated controls. In order to obtain 100% effectiveness in the control of intestinal coccidiosis in rabbits, continuous medication at 1 ppm is recommended.  相似文献   

15.
采用单卵囊分离技术,分离肠艾美尔球虫。根据GenBank中发表的肠艾美尔球虫18SrDNA序列,设计一对引物,建立PCR方法对其基因片段扩增并测序、比对。结果成功分离肠艾美尔球虫,PCR扩增出清晰条带,大小为528bp,最低能检出27个孢子化卵囊。该序列测定结果与Genebank发表的肠艾美尔球虫18SrDNA比对,相似性达98.5%。  相似文献   

16.
Chicken coccidia are protozoan parasites of the genus Eimeria. They cause economical losses in the poultry industry globally. The various species can be distinguished on the basis of the morphology of the oocysts and parasitic site in intestine, but these criteria sometimes are unreliable. Therefore, a species-specific polymerase chain reaction (PCR) was developed. Based on variable sequence regions, specific primers were constructed for the differentiation of five Eimeria species (Eimeria acervulina, E. brunette, E. maxima, E. necatrix, and E. tenella). PCR products were amplified from coccidian vaccine (coccivac-D and coccivac-B) and E. tenella and were subsequently sequenced. Similarities of the five species sequences between the vaccines and Genbank were 94-100%. Analysis of the E. tenella internal transcribed spacer 1 (ITS-1) partial sequence from Taiwan and from Genbank indicated that the similarity was 99.6%. The PCR sensitivity test of E. tenella in Taiwan is 50 oocysts. The five sets of primers will not amplify any non-specific bands of the chicken genome or its intestinal contents. Therefore, the five sets of specifically designed primers are guaranteed to be useful for differential diagnosis of avian coccidiosis caused by Eimeria spp.  相似文献   

17.
安徽省部分地区鸡球虫种类及感染情况调查   总被引:2,自引:0,他引:2  
目的了解安徽省五个县(区)鸡球虫种类及感染情况。方法采用群体采样法分别从个调查点采集新鲜鸡粪,检查粪样。阳性粪样采用饱和盐水漂浮和离心沉淀法进行卵囊分离。显微镜下观察卵囊进行虫种鉴定,并统计各调查点的鸡球虫感染率和感染强度等。结果检查172份鸡的新鲜粪样,得出鸡球虫感染率为100%;共检出7种球虫,经鉴定均隶属于艾美耳属,分别为毒害艾关耳球虫(Eimeria necatrix),堆型艾关耳球虫(E.acervulina),巨型艾关耳球虫(E.maxima),柔嫩艾美耳球虫(E.tenella),和缓艾美耳球虫(E.mitis),哈氏艾美耳球虫(E.hagani)和早熟艾美耳球虫(E.praecox)。结论鸡球虫在安徽省的这5个县(区)普遍存在,且有的调查点感染强度很高。  相似文献   

18.
本试验从南宁市郊区某鸡场感染球虫病的病鸡粪便中收集到混合卵囊,采用改良过的琼脂单卵囊分离法从中分离纯化出2个球虫虫株,并对其中的1个球虫分离株进行了鉴定,鉴定结果为:该株球虫卵囊呈椭圆形或卵圆形,卵囊平均大小为(22.51±0.4790)μm×(15.94±0.5599)μm,平均卵型指数为1.41212±0.06714,裂殖体平均大小为31.33 μm×27.46 μm,潜在期为120 h 50 min,排卵高峰期为感染后第6天,最短孢子化时间为18 h 50 min,寄生部位为小肠中、下段,属中等毒力的球虫虫株。通过将这些测定和观察到的指标与各类文献中所记载的各种鸡艾美耳球虫的特征进行了对比,经过综合分析后,将该分离株球虫鉴定为布氏艾美耳球虫,并且将它命名为布氏艾美耳球虫南宁株,记为Eimeria.brunetti-GXNN。对该虫株的成功分离鉴定,为进一步了解本地球虫虫株的生物学特性,开展鸡球虫病的免疫预防奠定了基础。  相似文献   

19.
以8株不同来源柔嫩艾美耳球虫分离株为研究对象,对其艾美耳球虫微线体3(Eimeria tenella microneme protein,EtMIC3)基因进行了RT-PCR扩增、测序及序列分析,并与GenBank上已发表的柔嫩艾美尔球虫相关序列进行比较,研究EtMIC3基因遗传变异情况。结果获得2976 bp的目的片段,各株与FJ374765.1 CDs的序列相似性在99.8%~99.9%之间,各株之间的序列相似性为99.9%~100.0%,各株编码的氨基酸序列与GenBank登记的柔嫩艾美耳球虫EtMIC3蛋白(ACJ11219)相似性在99.6%~99.9%之间,不同地理来源或耐药性虫株之间没有明显差异。本研究首次对中国EtMIC3基因进行了序列分析,结果显示不同来源株EtMIC3基因高度保守,为有效的疫苗候选因子,为进一步进行柔嫩艾美耳球虫基因工程疫苗构建的研究奠定了基础。  相似文献   

20.
本研究旨在阐明黄鳝胃瘤线虫湖南分离株的核糖体DNA(rDNA)内转录间隔区(ITS)及5.8 S rDNA序列的遗传变异情况,并用ITS序列重构胃瘤线虫与其它线虫的种群遗传关系.利用聚合酶链反应(PCR)扩增胃瘤线虫rDNA的ITS-1、5.8S及ITS-2片段,将PCR扩增出的片段纯化后克隆至pGEM-T Easy载体,重组质粒通过菌落PCR鉴定后,对阳性菌落进行序列测定并进行序列分析.结果显示所获得的胃瘤线虫ITS及5.8 S rDNA序列总长存在一定差异(922~927 bp),其中包含部分的18S、28 S及全部的ITS-1 (350~351 bp)、5.8S(102 bp)及ITS-2 (340~344 bp)序列.本研究系国内首次报道胃瘤线虫的ITS序列,其结果为黄鳝胃瘤线虫的分类鉴定以及进一步的分子流行病学调查和群体遗传研究奠定了基础.  相似文献   

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