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51.
Malvastrum leaf curl Guangdong virus is a distinct monopartite begomovirus   总被引:1,自引:0,他引:1  
Virus isolates GD6, GD7, GD8, GD9 and GD10 were obtained from Malvastrum coromandelianum showing leaf curl symptoms in Guangdong Province of China. A specific 500 bp product was consistently detected in total DNA extracts, amplified with universal primers specific for members of the genus Begomovirus. Analysis of their partial DNA sequences revealed that they are isolates of the same begomovirus species, sharing 92·8%–97·1% nucleotide sequence identity. The complete DNA sequences of both GD6 and GD9 were found to be 2767 nucleotides, with all the characteristic features of begomovirus genome organization. The two isolates have less than 85·2% nucleotide sequence identity with other reported begomoviruses. Consequently, GD6 and GD9 are considered to be isolates of a novel begomovirus species, for which the name Malvastrum leaf curl Guangdong virus (MLCuGdV) is proposed. Sequence analyses suggest that MLCuGdV may have arisen by recombination between viruses related to Papaya leaf curl China virus , Tomato leaf curl Philippines virus and other undiscovered virus ancestors. Neither the DNA-B component nor the DNAβ molecule associated with these begomovirus isolates was found. An infectious clone of GD6 was constructed. GD6 efficiently infected Nicotiana benthamiana , N. glutinosa and Petunia hybrida by agro-inoculation, and Malvastrum coromandelianum by whitefly transmission, inducing leaf curling, vein swelling and stunting symptoms. GD6 was also infectious in N. tabacum , but did not induce observable disease symptoms.  相似文献   
52.
Goatpox (GTP), sheeppox (SPP) and lumpy skin disease (LSD) are three severe diseases of goat, sheep and cattle. Their typical clinical symptoms are characterized by vesicles, papules, nodules, pustules and scabs on animal skins. The GTP, SPP and LSD are caused by goatpox virus (GTPV), sheeppox virus (SPPV) and lumpy skin disease virus (LSDV), respectively, all of which belong to the genus Capripoxvirus in the family Poxviridae. Several capripoxvirus (CaPV) isolates have been virulently attenuated through serial passaging in vitro for production of live vaccines. CaPV-based vector systems have been broadly used to construct recombinant vaccines for delivering foreign antigens, many of which have been demonstrated to induce effective immune protections. Homologous recombination is the most commonly used method for constructing recombinant CaPVs. Here, we described a methodology for generation of recombinant CaPVs by the homologous recombination, and further reviewed CaPV-vectored vaccines for delivering foreign antigens.  相似文献   
53.
耐辐射奇球菌同源重组修复机制研究新进展   总被引:2,自引:1,他引:2  
华孝挺  田兵  华跃进 《核农学报》2010,24(6):1192-1197
耐辐射奇球菌是迄今为止人们发现的地球上最抗辐射的生物之一。本文根据本实验室和国内外关于该菌耐辐射的最新研究成果,以各个修复蛋白为线索,详细介绍了耐辐射奇球菌同源重组修复机制上取得的进展。  相似文献   
54.
Arabis mosaic virus (ArMV) is an important pathogen infecting a wide range of plant species worldwide. In the present study, we carried out exhaustive phylogenetic analyses based on the coat protein (CP) sequence of ArMV isolates originating from different host plants and geographic regions. Maximum-likelihood reconstruction revealed the presence of three distinct, well-supported phylogroups. BaTS analyses indicated that the diversity of ArMV isolates may be correlated with both host plant and geographic origin. Moreover, population genetic analyses showed significant differences in the level of genetic diversity among variants within ArMV that originated from rhubarb plants, as expected by quasispecies. Further analysis revealed that both selection and recombination are shaping the population structure of ArMV. In total 14 groups of residues were detected as coevolving for different amino acid properties.  相似文献   
55.
Yellow vein mosaic disease (YVMD) caused by whitefly‐transmitted begomoviruses is an economically significant viral disease of okra. In this study, a survey of begomoviruses associated with YVMD was carried out in eight states and two union territories of India. A total of 92 full‐length DNA‐A components were sequenced and characterized. Sequence comparisons and population structure analysis revealed the existence of four begomovirus species. Two novel species were detected with several recombinationally derived genome fragments that probably originated from begomoviruses known to infect malvaceous and non‐malvaceous hosts. Among the four species, Bhendi yellow vein Maharastra virus (BYVMaV) and Bhendi yellow vein Madurai virus (BYVMV) were found to be predominant in okra, with BYVMV having a pan‐India distribution. There was evidence for a high degree of genetic variability and subpopulation structure within these four species. Neutrality tests suggested the occurrence of purifying selection acting upon these populations. The results of the current study have uncovered the diversity and genetic structure of okra‐infecting begomoviruses in India and generated potentially useful information for developing management strategies for YVMD.  相似文献   
56.
Little cherry virus 1 (LChV‐1), a member of the recently proposed genus Velarivirus, is a sweet cherry pathogen that has been recently reported to infect other Prunus species and is associated with various plant disorders. In this work the incidence of the virus on its putative hosts and possible mechanisms driving its evolution were investigated. Due to problems encountered with LChV‐1 detection, a new nested RT‐PCR assay was developed and applied. The virus was found to be prevalent in cherry plantations in Greece and only occasionally detected in other Prunus species. Sequences corresponding to the partial RNA‐dependent RNA polymerase (RdRp), heat‐shock protein homologue (HSP70h) and coat protein (CP) genes were determined from Greek LChV‐1 isolates originating from different hosts; these were analysed, along with published homologous genomic regions from other isolates. Phylogenetic analysis of the three genes revealed the segregation of four evolutionary distinct groups showing no host or geography‐based clustering. Mean genetic distances among the four groups were high with the CP region showing the highest divergence, although intragroup variability levels were low. Nevertheless, estimations of the mean ratio of nonsynonymous substitutions per synonymous site to synonymous substitutions per synonymous site (dN/dS) for the partial RdRp, HSP70h and CP indicated that these genomic regions are under negative selection pressure. Interestingly, a recombination event was identified at the 3′ end of RdRp on a Greek virus isolate, thus highlighting the role of this mechanism in the evolutionary history of LChV‐1.  相似文献   
57.
Although fungicide resistance in crop pathogens is a global threat to food production, surprisingly little is known about the evolutionary processes associated with the emergence and spread of fungicide resistance. Early stages in the evolution of fungicide resistance were evaluated using the wheat pathogen Zymoseptoria tritici, taking advantage of an isolate collection spanning 20 years in Oregon, USA, and including two sites with differing intensity of fungicide use. Sequences of the mitochondrial cytb protein conferring single‐mutation resistance to QoI fungicides and the nuclear CYP51 gene implicated in multiple‐mutation resistance to azole fungicides were analysed. Mutations associated with resistance to both fungicides were absent in the 1992 isolates, but frequent in the 2012 collection, with higher frequencies of resistance alleles found at the field site with more intensive fungicide use. Results suggest that the QoI resistance evolved independently in several lineages, and resulted in significant mitochondrial genome bottlenecks. In contrast, the CYP51 gene showed signatures of diversifying selection and intragenic recombination among three phylogenetic clades. The findings support a recent emergence of resistance to the two fungicide classes in Oregon, facilitated by selection for mutations in the associated resistance genes.  相似文献   
58.
 通过RT-PCR扩增了黄瓜绿斑驳花叶病毒(Cucumber green mottle mosaic virus,CGMMV)济南分离物(CGMMV-JN)的基因组片段。序列测定结果表明CGMMV-JN基因组全长6 424核苷酸(nt),5′-和3′-UTR分别为60和176 nt,含有4个ORF,分别编码129 kDa和186 kDa复制酶相关蛋白、29 kDa移动蛋白及17.4 kDa外壳蛋白。CGMMV-JN与另外29个CGMMV分离物全基因组核苷酸序列一致率为90.0%~99.7%。重组分析发现韩国KOM(AF417243)、以色列EC(KF155231)、印度(DQ767631)和我国河北的CHB(KJ658958)4个分离物在RdRp编码区存在重组。系统发育分析结果表明,这些分离物可分成3个组。选择压力分析结果表明cp基因处于正选择,其它基因处于负选择。本文研究的结果为黄瓜绿斑驳花叶病毒的监测及防控提供了理论依据。  相似文献   
59.
针对冷冻冷藏库传统除霜方法高能耗、冷库温湿度波动大等缺陷,通过设计系统除霜结构,完善控制策略,研发了一种智能除霜方法。复合加热循环除霜采用时间—压差联合智能控制策略界定最佳除霜点,配备排管辅助制冷技术,基于欧姆龙PLC高精度控制系统使各设备协同完成除霜过程。对复合加热循环除霜系统进行试验研究,对比分析不同除霜方法的工作性能及能耗情况。结果显示:相比于传统电加热除霜,复合加热循环除霜过程冷库温度波动减小3.8℃,相对湿度波动降低21.1百分点,除霜时间缩短14 min,系统除霜节能率达34.5%。  相似文献   
60.
本研究提供了一种新的整合多拷贝外源基因表达单元到枯草芽孢杆菌染色体同一位点的方法。以β-淀粉酶表达单元作为应用实例,本方法包括以下步骤:首先,构建含有一个拷贝β-淀粉酶表达单元的整合质粒pMLK83-CTBA,通过同源双交换获得单拷贝β-淀粉酶表达单元整合到枯草芽孢杆菌1A751染色体α-淀粉酶基因位点的菌株1A751[CTBA]Neo+;然后,利用抗性基因替换质粒pVK71,将新霉素抗性基因替换为状观霉素抗性基因,得到1A751[CTBA]Neo-Spe+;最后,整合质粒pMLK83-CTBA再以同源单交换方式整合到1A751[CTBA]Neo-Spe+染色体,通过新霉素抗性和状观霉素抗性筛选出两个拷贝β-淀粉酶基因整合的重组菌1A751[CTBA2]Neo+Spe+。结果显示,利用此方法增加β-淀粉酶基因的拷贝数,能够显著和稳定地提高β-淀粉酶的表达量。  相似文献   
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