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71.
RAN Xu-hua ZHANG Yao CAO Si LU Yuan-he ZHANG Ling-ling LIU Yang-yang NI Hong-bo ZHU Zhan-bo WEN Xiao-bo 《中国畜牧兽医》2016,43(5):1368-1373
To identify the infection agents from Ningxia Hui Autonomous region, where feedlot cattle indicated bovine respiratory disease complex (BRDC), the M gene of the bovine parainfluenza virus type 3 was amplified by RT-PCR.The PCR product was ligated to pMD18-T vector and cloned to E.coli DH5α.The positive clones were sequenced and compared with the reference strains in GenBank by the molecular biology software.Sequence alignment results showed that a BPIV3 strain was isolated from the samples and named NX49, the M gene of NX49 included 1 056 nucleotides.Evolutionary analysis showed that the NX49 belonged to BPIV3 C genotype and shared 99.4% nucleotide identity with that of the SD0835 isolated in Shandong province.The characterization of the NX49 demonstrated that it was sensitive to temperature, acid and organic matter.The presence of Mg2+ showed no protection against the treatment at high temperature.The HA test suggested that the NX49 enables to agglutinate the guinea pig RBC at 4 ℃ and the titer was 1∶4.The study isolated a BPIV3 genotype C strain successfully, which facilitate the study of molecular evolution and epidemiology of BPIV3 in China. 相似文献
72.
Metlholo Andries Phukuntsi Helene Brettschneider Desiré L Dalton Teresa Kearney Jacqueline Badenhorst Antoinette Kotze 《African Zoology》2016,51(1):69-76
DNA barcoding has been proposed as a method for species identification. However, this method has been criticised for its over-reliance on a single mitochondrial gene. In this study, four mitochondrial gene regions and one nuclear gene region were used to investigate their different abilities to identify tissue associated with museum specimens of Aethomys chrysophilus, Aethomys ineptus and Micaelamys namaquensis. Aethomys chrysophilus and the more recently elevated A. ineptus are indistinguishable on morphological grounds; however, their ranges are largely parapatric with only one syntopic locality currently known. All of the mitochondrial gene regions were able to separate M. namaquensis from A. chrysophilus and A. ineptus, but they varied in their abilities to resolve differences between A. chrysophilus and A. ineptus. The sequence results identified a specimen from KwaZulu-Natal that was misclassified and should have been identified as A. ineptus. Seven specimens that had not been reclassified following the elevation of A. ineptus to species level were identified as A. ineptus. Individuals of A. chrysophilus from Malawi could not be classified as either A. chrysophilus or A. ineptus, and may be a hybrid or a new, distinct species. This study indicates that DNA barcoding may be used to separate M. namaquensis from A. chrysophilus and A. ineptus, and although it was not able to separate A. chrysophilus and A. ineptus, it did indicate specimens from Malawi may be a new cryptic species. 相似文献
73.
Brucellosis is a highly contagious zoonotic infection affecting livestock and human beings. The disease has been reported worldwide except in few countries where it has been eradicated. The prevalence of brucellosis among cattle from 11 farms having a history of abortions was studied. A total of 481 samples comprising of blood, milk, vaginal swabs, vaginal discharges, placental tissues and fetal tissues were collected from 296 animals. Clinical samples were processed for the isolation of Brucella. Serum samples (n = 296) were tested by Rose Bengal Plate Test (RBPT) and indirect ELISA. A total of 90 (30.40%) and 123 (41.55%) samples were positive by RBPT and indirect ELISA, respectively. Also 27.02% samples were positive by both the tests. Brucella isolates (n = 8) were recovered from clinical samples using Brucella selective media. All the isolates demonstrated PCR amplification for the bcsp31 and IS711 genes. Amplification of Brucella abortus specific primer was demonstrated by all the isolates in AMOS PCR indicating isolates to be of either B. abortus biotype 1, 2 or 4. Risk factors for transmission of brucellosis among cattle population were studied by field surveys. It was observed that lack of awareness about brucellosis (OR = 8.739, P = 0.138) and inadequate floor space (OR = 0.278, P = 0.128) were crucial risk factors for transmission of bovine brucellosis. 相似文献
74.
Jie Li Rongyue Zhang Yinhu Li Chaohua Long Wengfeng Li Hongli Shan Wenjie Lu Yingkun Huang 《Plant pathology》2023,72(1):89-99
Brown stripe disease is a severe foliar fungal disease of sugarcane worldwide and is widespread in all sugarcane planting areas in China. Brown stripe is a major disease that seriously affects the output and quality of the sugarcane industry in Yunnan Province, China's second-largest sugar base, while the pathogen of this disease remains not yet fully understood. To address this, we isolated and identified the fungi associated with 68 leaf samples showing typical symptoms of brown stripe from 22 sugarcane varieties in different areas of Yunnan Province. A total of 113 isolates were obtained, which were morphologically similar. Of these, 64 representative isolates were sequenced for the internal transcribed spacer region (ITS), GAPDH and EF-1α loci. All representative isolates grouped with the type strain of Bipolaris setariae in the phylogenetic trees inferred with individual and concatenated sequences of ITS, GAPDH and EF1-α. Pathogenicity test results showed that B. setariae strains were able to induce typical symptoms of brown stripe. The results obtained in this study clarify that only B. setariae is associated with sugarcane brown stripe in Yunnan, China. It is recorded here for the first time as a pathogen causing sugarcane brown stripe in Yunnan, and it is able to infect many major cultivars and new varieties, posing a new threat to the sugar industry in Yunnan Province. In addition, these results provide the scientific basis for the future breeding of disease-resistant varieties and effective prevention and control of sugarcane brown stripe disease. 相似文献
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77.
棉铃虫是世界性的重要农业害虫。围食膜作为昆虫抵御病原微生物入侵及有害物质的第一道天然保护性屏障,其上可能存在与Bt抗性相关的受体蛋白。本研究以Bt Cry1Ac抗性和敏感品系的棉铃虫围食膜为对象,采用NuPAGE电泳技术、配体杂交、质谱鉴定和生物信息学分析等技术,测定了围食膜蛋白含量,鉴定了蛋白质的组成及与Bt Cry1Ac毒素的结合能力。结果表明敏感品系围食膜中蛋白含量为22.19%,抗性品系围食膜中蛋白含量为26.99%。抗、感品系棉铃虫围食膜上存在与Cry1Ac毒素结合的6个差异蛋白,推测其中棉铃虫羧酸酯酶蛋白和血影蛋白是2个有意义的抗性相关蛋白,2个新蛋白可能参与Bt抗性。研究证明棉铃虫围食膜上存在Bt结合蛋白且与抗性相关,为进一步明确Bt抗性机制、制定合理的Bt抗性治理策略提供了理论依据。 相似文献
78.
为明确贵州魔芋软腐病菌种类?致病力及分布特点, 采用组织分离法对贵州主要魔芋种植区软腐病样进行病原菌分离, 对icdA, mdh, mtlD, proA, rpoS 等5个管家基因进行了扩增?序列测定, 分别用单基因和多基因联合系统发育树对病菌进行鉴定, 同时采用组织块接种方法测定了不同菌株的致病力?通过组织分离法共分离魔芋软腐病菌株47株; 采用5个管家基因进行分子鉴定, 将病菌分别鉴定为海芋果胶杆菌Pectobacterium aroidearum?胡萝卜果胶杆菌Pectobacterium carotovorum和方中达迪基氏菌Dickeya fangzhongdai 3个种, 其中海芋果胶杆菌P.aroidearum为贵州魔芋软腐病主要致病菌, 占分离菌株的70%, 广泛分布在多个地区; 其次为方中达迪基氏菌D. fangzhongdai, 占分离菌株的28%, 也普遍存在于贵州各魔芋种植区; 胡萝卜果胶杆菌P. carotovorum最少, 占分离菌株的2%?致病力测定结果表明, 菌株间致病力存在一定的差异, 其中海芋果胶杆菌不同菌株之间致病力差异较大, 低?中?高致病力菌株都有, 方中达迪基氏菌差异较小, 仅有中?高致病力菌株?本研究确定了贵州魔芋软腐病菌种类?致病力及在贵州的分布特点, 首次报道了海芋果胶杆菌?方中达迪基氏菌是贵州魔芋软腐病的主要病原菌, 进一步加深了对魔芋软腐病及其发生流行的认识, 为软腐病的科学防控提供了科学依据? 相似文献
79.
为持续控制小麦叶锈病及促进小麦的抗叶锈病育种工作,2019—2020年自江苏、浙江和安徽3个省采集自然感叶锈病的小麦病叶,经分离获得小麦叶锈菌单孢分离物,利用43个小麦叶锈病鉴别寄主材料对其致病类型进行鉴定,并对其毒性结构进行分析。结果显示,从170份小麦叶锈菌单孢分离物中共鉴定出67个致病类型,主要致病类型为THS、SHJ、PHS和SHS,出现频率分别为8.8%、7.6%、5.9%和5.9%。江苏、浙江和安徽3个省的单孢分离物对携带抗叶锈基因Lr10、Lr12、Lr22a、Lr22b、Lr29、Lr33、Lr35和Lr36的鉴别寄主材料的苗期毒性频率均超过90.0%,而对携带抗叶锈基因Lr9、Lr24、Lr25、Lr28、Lr38、Lr40、Lr41、Lr42、Lr43和Lr13+3ka的鉴别寄主材料的苗期毒性频率均小于10.0%。卡方检验及Fisher精确检验显示,3个省小麦叶锈菌群体对抗叶锈基因Lr1、Lr2a、Lr3、Lr14b、Lr18、Lr21、Lr26、Lr27+31、Lr32和Lr37的毒力存在显著分化。浙江省小麦叶锈菌群体具有较少的毒性因子(4.73)和毒性值(600... 相似文献
80.
为更好地利用老芒麦(Elymus sibiricus L.)野生资源,本研究从我国青藏高原、西北、华北、东北地区以及国外部分地区共采集了1 723份野生披碱草属种质资源,通过表型特征观测和流式细胞仪检测,共鉴定出了990份野生老芒麦种质,246份垂穗披碱草种质,并测得老芒麦的DNA含量在5.86~7.30 Gb之间,平均DNA含量为6.66 Gb;垂穗披碱草材料的DNA含量在9.50~10.36 Gb之间,平均DNA含量为9.97 Gb。研究结果显示,在西北、华北以及东北地区的部分野生老芒麦材料在苗期基部叶鞘出现了绒毛,分析发现该表型出现的概率与经度和纬度呈极显著正相关关系(P<0.01),与海拔、年年均气温以及年平均降雨量呈极显著负相关关系(P<0.01)。表明老芒麦苗期基部叶鞘绒毛的有无与环境因子之间存在着必然的联系,可能是老芒麦种质应对不同环境类型的适应性机制之一。本研究为老芒麦的形态鉴定提供了新的依据,为老芒麦种质资源挖掘和育种应用提供了材料基础。 相似文献