首页 | 本学科首页   官方微博 | 高级检索  
文章检索
  按 检索   检索词:      
出版年份:   被引次数:   他引次数: 提示:输入*表示无穷大
  收费全文   163篇
  免费   10篇
  国内免费   30篇
  203篇
  2024年   2篇
  2023年   6篇
  2022年   3篇
  2021年   3篇
  2020年   4篇
  2019年   5篇
  2018年   2篇
  2017年   3篇
  2016年   4篇
  2015年   2篇
  2014年   7篇
  2013年   5篇
  2012年   7篇
  2011年   15篇
  2010年   16篇
  2009年   10篇
  2008年   15篇
  2007年   15篇
  2006年   10篇
  2005年   7篇
  2004年   6篇
  2003年   4篇
  2002年   3篇
  2001年   1篇
  2000年   3篇
  1999年   3篇
  1998年   4篇
  1997年   2篇
  1996年   1篇
  1995年   4篇
  1994年   2篇
  1993年   3篇
  1992年   4篇
  1991年   1篇
  1990年   2篇
  1989年   1篇
  1988年   2篇
  1986年   2篇
  1983年   1篇
  1982年   1篇
  1980年   1篇
  1979年   1篇
  1978年   2篇
  1977年   1篇
  1975年   3篇
  1974年   2篇
  1973年   2篇
排序方式: 共有203条查询结果,搜索用时 0 毫秒
121.
Nosema lymantriae is a microsporidian pathogen of the gypsy moth, Lymantria dispar that has been documented to be at least partially responsible for the collapse of L. dispar outbreak populations in Europe. To quantify horizontal transmission of this pathogen under field conditions we performed caged-tree experiments that varied (1) the density of the pathogen through the introduction of laboratory-infected larvae, and (2) the total time that susceptible (test) larvae were exposed to these infected larvae. The time frame of the experiments extended from the early phase of colonization of the target tissues by the microsporidium to the onset of pathogen-induced mortality or pupation of test larvae. Upon termination of each experiment, the prevalence of infection in test larvae was evaluated. In the experiments performed over a range of pathogen densities, infection of test larvae increased with increasing density of inoculated larvae, from 14.2 ± 3.5% at density of 10 inoculated per 100 larvae to 36.7 ± 5.7% at 30 inoculated per 100 larvae. At higher densities, percent infection in test larvae appeared to level off (35.7 ± 5.5% at 50 inoculated per 100 larvae). When larval exposure to the pathogen was varied, transmission of N. lymantriae did not occur within the first 15 d post-inoculation (dpi) (11 d post-exposure of test larvae to inoculated larvae). We found the first infected test larvae in samples taken 20 dpi (16 d post-exposure). Transmission increased over time; in the cages sampled 25 dpi (21 d post-exposure), Nosema prevalence in test larvae ranged from 20.6% to 39.2%.  相似文献   
122.
Adult workers of Apis cerana, Apis florea and Apis mellifera from colonies heavily infected with Nosema ceranae were selected for molecular analyses of the parasite. PCR-specific 16S rRNA primers were designed, cloned, sequenced and compared to GenBank entries. The sequenced products corresponded to N. ceranae. We then infected A. cerana with N. ceranae spores isolated from A. florea workers. Newly emerged bees from healthy colonies were fed 10,000, 20,000 and 40,000 spores/bee. There were significant dosage dependent differences in bee infection and survival rates. The ratio of infected cells to non-infected cells increased at 6, 10 and 14 d post infection. In addition, hypopharyngeal glands of bees from the control group had significantly higher protein concentrations than infected groups. Bees infected with 40,000 spores/bee had the lowest protein concentrations. Thus, N. ceranae isolated from A. florea is capable of infecting another bee species, impairing hypopharyngeal gland protein production and reducing bee survival in A. cerana.  相似文献   
123.
【目的】本研究旨在初步明确家蚕微孢子虫Nosema bombycis海藻糖酶3(NbTre3)的功能,为家蚕Bombyx mori微粒子病的防治提供理论依据和线索。【方法】通过PCR扩增NbTre3,构建原核表达载体pET28a-NbTre3;经IPTG诱导在大肠杆菌Escherichia coli中表达重组蛋白NbTre3,Western blot检测目的蛋白;Ni柱亲和层析法对重组蛋白NbTre3进行纯化,用获得的NbTre3免疫新西兰兔制备多克隆抗体;利用间接免疫荧光技术对成熟家蚕微孢子虫中的NbTre3进行定位;qRT-PCR检测家蚕微孢子虫感染家蚕5龄起蚕后不同时间中肠中NbTre3的转录水平;通过分别注射siRNA-1, siRNA-2和siRNA-3进行RNAi,qRT-PCR检测RNAi后不同时间感染家蚕微孢子虫的家蚕5龄起蚕中肠中NbTre3和16S rRNA的转录水平。【结果】成功纯化并获得重组目的蛋白NbTre3,大小约为34 kD。免疫新西兰兔后,收集血清,纯化获得NbTre3多克隆抗体,经Western blot鉴定正确。间接免疫荧光结果显示NbTre3主要分...  相似文献   
124.
Until the mid-1990s, the only microsporidium known to infect bees of the genus Apis was Nosema apis. A second species, Nosema ceranae, was first identified in 1996 from Asian honey bees; it is postulated that this parasite was transmitted from the Asian honey bee, Apis cerana, to the European honey bee, Apis mellifera. Currently, N. ceranae is found on all continents and has often been associated with honey bee colony collapse and other reports of high bee losses. Samples of Africanized drones collected in 1979, preserved in alcohol, were analyzed by light microscopy to count spores and were subjected to DNA extraction, after which duplex PCR was conducted. All molecular analyses (triplicate) indicated that the drones were infected with both N. ceranae and N. apis. PCR products were sequenced and matched to sequences reported in the GenBank (Acc. Nos. JQ639316.1 and JQ639301.1). The venation pattern of the wings of these males was compared to those of the current population living in the same area and with the pattern of drones collected in 1968 from Ribeirão Preto, SP, Brazil, from a location close to where African swarms first escaped in 1956. The morphometric results indicated that the population collected in 1979 was significantly different from the current living population, confirming its antiquity. Considering that the use of molecular tools for identifying Nosema species is relatively recent, it is possible that previous reports of infections (which used only light microscopy, without ultrastructural analysis) wrongly identified N. ceranae as N. apis. Although we can conclude that N. ceranae has been affecting Africanized honeybees in Brazil for at least 34 years, the impact of this pathogen remains unclear.  相似文献   
125.
This is the first study on Nosema meligethi in populations of Meligethes aeneus in Turkey. In total, four of the 2020 beetles studied were infected with the parasite, giving an infection average of 0.2% in Turkey. Infection was observed in two of the eight localities investigated, and the infection rates in these localities were similar: 2.94 and 2.86%. N. meligethi infection was not observed in 1676 beetles (83% of the total studied) from five localities, including the main Brassica oleracea growing area, where chemical pesticides are commonly used. Three hundred and forty‐four beetles (17% of the total studied) were collected from three localities from uncultivated areas where there is no chemical pesticide application; infection was found in beetles from two of these localities. This study confirms that pesticide usage at sampling sites may play a role in the occurrence of N. meligethi, because the samples from which Nosema was detected originated from areas in which pesticides are not used.  相似文献   
126.
Feminising microsporidian parasites are transmitted vertically from generation to generation of their crustacean hosts. Little is known about the mechanisms underpinning vertical transmission, in particular, parasite transmission to the host gonad during host development. Here, we investigate the burden and distribution of two species of vertically transmitted, feminising microsporidia (Dictyocoela duebenum and Nosema granulosis) during early embryogenesis (zygote to eight-cells) of the Gammarus duebeni host. Parasite burden differs between the two parasites with N. granulosis being higher by a factor of 10. Whilst D. duebenum replicates during the first few host cell divisions, there is no increase in N. granulosis burden. Only merogonic parasite stages were observed in the host embryo. Distribution of both parasites was non-random from the two-cell embryo stage, indicating biased parasite segregation at host cell division. Dictyocoela duebenum burden was low in the germline and somatic gonad progenitor cells but was highest in the ectoderm precursors, leading us to propose that the parasite targets these cells and then secondarily infects the gonad later in host development. Targeting by N. granulosis was less specific although there was a persistent bias in parasite distribution throughout host cell divisions. Parasite burden was highest in the ectoderm precursors as well as the germline progenitors leading us to suggest that, in addition to using the ectodermal route, N. granulosis may also target germline directly. Biased segregation will be adaptive for these parasites as it is likely to lead to efficient transmission and feminisation whilst minimising virulence in the host.  相似文献   
127.
Nosema ceranae, a new microsporidian parasite in honeybees in Europe   总被引:3,自引:0,他引:3  
Twelve samples of adult honey bees from different regions of Spain from colonies with clear signs of population depletion, positive to microsporidian spores using light microscopy (1% of total positive samples analysed), were selected for molecular diagnosis. PCR specific primers for a region of the 16S rRNA gene of Microsporidia were developed and the PCR products were sequenced and compared to GenBank entries. The sequenced products of 11 out of the 12 samples were identical to the corresponding Nosema ceranae sequence. This is the first report of N. ceranae in colonies of Apis mellifera in Europe. The suggested link of the infections to clinical disease symptoms makes imperative a study of the virulence of N. ceranae in European races of honey bees.  相似文献   
128.
The interactions in multiple species infections and effects on the horizontal transmission of three microsporidian species, Vairimorpha disparis, Nosema lymantriae and Endoreticulatus schubergi, infecting Lymantria dispar were evaluated in the laboratory. Simultaneous and sequential inoculations of host larvae were performed and the resulting infections were evaluated. Test larvae were exposed to the inoculated larvae to measure horizontal transmission. Dual species infections demonstrated interspecific competition between Nosema and Vairimorpha in the host larvae, but no observable competition occurred between Endoreticulatus and either of the other microsporidian species. Timing of inoculation was an important factor determining the outcome of competition between Nosema and Vairimorpha. The species inoculated first showed a higher rate of successful establishment; a time lag of 7 days between inoculations allowed the first species to essentially exclude the second. The microsporidia differed in efficiency of horizontal transmission. Nosema and Endoreticulatus were transmitted at very high rates, close to 100%. Horizontal transmission of Vairimorpha was less efficient, ranging from 25% to a maximum of 75%. The patterns of infection observed in inoculated larvae were reflected in the test larvae that acquired infections in the horizontal transmission experiments. Competition with Vairimorpha suppressed horizontal transmission of Nosema after simultaneous and sequential inoculation. In simultaneous inoculation experiments Endoreticulatus had no effect on transmission of Nosema and Vairimorpha.  相似文献   
129.
We quantified horizontal transmission of three microsporidian pathogens, Endoreticulatus schubergi, Nosema lymantriae and Vairimorpha disparis that infect Lymantria dispar larvae in an experiment using caged, potted oak plants. Despite marked differences in the modes of spore release from infectious hosts, no significant differences in the transmission success to uninfected, susceptible test hosts were ascertained between the tested microsporidian species. The density of initially inoculated larvae and the exposure period, on the other hand, did influence the number of infected test larvae. Depending on the density of inoculated larvae (10%, 30% or 50%), between 0% and 26% of the test larvae became infected with one of the three tested microsporidian pathogens after an exposure period of 6 days. When the exposure period was 12 days, between 11% and 76% of the test larvae became infected.  相似文献   
130.
设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号