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   9篇
  免费   1篇
  2012年   1篇
  1992年   1篇
  1987年   1篇
  1976年   1篇
  1969年   1篇
  1954年   2篇
  1950年   1篇
  1927年   1篇
  1919年   1篇
排序方式: 共有10条查询结果,搜索用时 46 毫秒
1
1.
An electronic counting system using hydrophobic grid-membrane filters (HGMF) and the HGMF Interpreter was evaluated for its usefulness in enumerating nalidixic acid resistant Salmonella in frozen chicken caeca. Salmonella recovery was equivalent on both Hektoen Enteric and EF-18 agars. However, the color of the Salmonella growth on EF-18 agar was more easily differentiated by the HGMF Interpreter electronic counting system. the study showed that a 4 h resuscitation on a nonselective medium was required in order to maximize the subsequent recovery on Hektoen Enteric agar, though not on EF-18 agar. Using the EF-18 agar as the Salmonella selective medium, a method was established that recorded counts of nalidixic acid resistant Salmonella rapidly and easily in electronic data files, for subsequent retrieval and manipulation.  相似文献   
2.
Summary The three speciesErysipelothrix rhusiopathiae, E. erysipeloidis, andE. muriseptica should be united into one, to which the oldest valid specific name should be applied. The correct name isErysipelothrix insidiosa.  相似文献   
3.
The incidence and persistence of genital mycoplasmas of 25 normal guinea pigs were investigated by culturing swabs collected over a 63-day period. Mycoplasmas were consistently isolated from two of the five males, but only once each from three of the 20 females. The 16 strains isolated were divided into four groups. Representative strains of one group were identified as Mycoplasma sp. (group 7 of Leach 1973), by growth inhibition, growth precipitation and fluorescent antibody tests. The other groups were provisionally classified as Mycoplasma spp. and an Acholeplasma sp.  相似文献   
4.
5.
1. Coarse woody debris (CWD) in stream channels causes changes in flow, sedimentation and ratios of pool to riffle areas. There is a consensus among fishery managers and scientists that CWD is beneficial to stream fish communities because of its enhancement of habitat diversity, invertebrate production and cover. Our hypothesis was that CWD accumulation or introduction would not increase in‐stream habitat capacity for all species and their ontogenic stages at reach and stream scales. 2. The study used a system of gravel‐bed streams with naturally dynamic CWD accumulations and a fish community consisting of Salmo trutta, Cotttus gobio, Phoxinus phoxinus, Lampetra cf planeri, Nemacheilus barbatulus and Anguilla anguilla. Cotttus gobio and L. cf planeri are protected by an EU Directive and S. trutta is exploited for angling. Riffles, pools and CWD matrices, considered as the basic habitat/spatial units of channel structure, were sampled separately and abundance of each fish species quantified seasonally at each spatial scale. 3. Multiple‐pass electric fishing techniques were used. Capture efficiencies were calculated for species, habitat and season. Areal densities (number m?2) were compared for habitat types and season using nonparametric anova . Canonical analysis and stepwise multiple regression were used to show the most influential physical variables on fish density. Densities were also compared by unit volume (numbers m?3) for pools and CWD matrices to investigate direct three‐dimensional use for cover. Reach‐scale densities for each fish species in relation to habitat composition were made using Spearman rank correlation of habitat‐scale densities with proportionate areas of the different habitat units in the reach. 4. Habitat‐scale densities of bullheads and age 0+ trout were negatively correlated with depth and CWD areas for some seasons. Densities of lampreys, older trout, eels and minnows were positively correlated with depth in some seasons. Water depth had the most consistent influence on fish abundance at the habitat unit scale. Three‐dimensional comparisons of pools and CWD matrices indicated that only trout older than 1+ may use CWD habitats as cover. 5. Reach‐scale densities of 0+ trout and bullheads were significantly correlated with proportion of riffle area and negatively with CWD and combined CWD‐pool habitat area in the reach. Densities of older trout, large eels and lampreys were positively correlated with CWD area and combined CWD‐pool area in some seasons. Inundation of riffles caused by impoundment upstream of CWD accumulations reduced spawning habitat for trout, bullheads, brook lampreys, minnows and stone loach. A trade‐off was an increase in refugia for older trout, minnows and eels. 6. Coarse woody debris accumulation in streams is not beneficial to all species or ontogenic stages in a mixed species population and could severely limit essential habitat areas for some species. Thus, physical manipulation of channels should be implemented only after a thorough study of the habitat relationships of all species present, especially where protected species coexist with target species. The relative importance of in‐stream morphological changes depends on the spatial and temporal scale of the species life histories.  相似文献   
6.
Reducing the concentration of sucrose in the culture mediumover successive subcultures has been tested as a method forincreasing the ability of rose shoots grown in vitro (Rosa cvsIceberg and Peace) to take up CO2. Shoots maintained on ‘constant’10, 20 and 40 g I–1 sucrose showed decreased levels ofCO2 uptake at higher sucrose concentrations, although cv. Peacegrew least at 10 g l–1 and showed correspondingly lowamounts of CO2 uptake compared with 20 and 40 g l–1. Bothcultivars died when sucrose was omitted from the medium. Assucrose concentration was reduced in the medium, so CO2 uptakeof shoots initially cultured on 20 and 40 g l–1 sucrosewas found to increase, although a concentration of 10 gl –1sucrose seemed to be limiting, below which the growth and chlorophylllevels of shoots declined. Rosa hybrid, rose, shoot culture in vitro, photosynthetic ability, sucrose, infra-red gas analysis  相似文献   
7.
8.
9.
10.
1
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