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排序方式: 共有273条查询结果,搜索用时 31 毫秒
91.
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93.
M Galanter R J Wyatt L Lemberger H Weingartner T B Vaughan W T Roth 《Science (New York, N.Y.)》1972,176(37):934-936
Twelve chronic marijuana users received triangle up(9)-tetrahydrocannabinol by smoking. The magnitude of their pulse increment was highly correlated with their subjective experiences. Three of the 12 subjects subsequently received triangle up(9)-tetrahydrocannabinol labeled with carbon-14; the time course of its concentration in plasma was highly correlated with the pulse increment. Subjective symptoms, however, appeared later and dissipated more slowly. 相似文献
94.
95.
Vaughan TW 《Science (New York, N.Y.)》1937,85(2210):435-436
96.
Nonnatus S. Bautista Duncan Vaughan A. H. M. Jayasuriya A. S. U. Liyanage Akito Kaga Norihiko Tomooka 《Genetic Resources and Crop Evolution》2006,53(3):631-640
The CC genome of Oryza is found in nine species of Oryza that are distributed on all continents having a tropical climate. Three diploid Oryza species with CC genome are found in Africa and Asia to Papua New Guinea. In southern South Asia these three CC genome diploid
species can be found, O. eichingeri and O. rhizomatis in Sri Lanka and O. officinalis in India. AA genome wild relatives of rice are also found in the same geographic region. Germplasm of both diploid CC and
AA genome Oryza germplasm has recently been collected from Sri Lanka. AFLP analysis was used to compare the genetic diversity of the two
Oryza genomes from a similar geographic region in southern South Asia. In addition, the diploid CC Oryza germplasm was also analyzed by RAPD and SSR methodologies and the combined results were analyzed. The results show that in
southern South Asia the diploid CC genome species have a high level of genetic diversity compared to the diploid AA genome
species. Molecular marker analysis revealed that populations of O. rhizomatis from northern and southeastern Sri Lanka are genetically differentiated. One accession of O. rhizomatis was aligned with O. eichingeri. This accession was collected from the site of O. rhizomatis that is the closest to a population of O. eichingeri. O. eichingeri showed lower genetic diversity than the other two diploid Oryza CC genome species. O. officinalis accessions from Assam, India, and China were genetically less diverged from O. eichingeri and O. rhizomatis than two accessions of O. officinalis from Kerala state, India.
The first two authors contributed equally to this research 相似文献
97.
The phenolic acids p-hydroxybenzoic, ferulic, caffeic and vanillic acid, were added to soil of the Countesswells series that had been fallow or carried crops of potatoes, peas or barley for two consecutive years. Changes in phenolic acid concentration, the soil biomass, the respiration rate, and soil amylase activity were measured over 28 days. All the phenolic acids were sorbed by the soils which was generally in the order caffeic > ferulic = vanillic > hydroxybenzoic acid. The phenolic acids stimulated soil respiration and increased the biomass as determined by the substrate-induced respiration method. but the fumigation method of biomass assessment gave anomalous results. The soil amylase activity was initially increased by phenolic acid amendments but soon decreased, and after 7 days was less than in non-amended soil although activity had increased again after 28 days. The rates of respiration and the total phenolic acid concentrations were similar to unamended controls after 28 days. The immediate respiration response, measured 1–6 h after amendment, indicated that caffeic acid gave the largest initial response of the phenolic tested, this being 55–72% of that given by glucose. Soil from the potato plot showed the highest immediate response to the phenolic acid amendments measured as a proportion of the respiration response to glucose. The findings suggest that some crops stimulate the growth of phenolic-acid degrading organisms. 相似文献
98.
99.
D. Vaughan 《Soil biology & biochemistry》1974,6(4):241-247
At low concentrations (up to 50 mg/l) humic acid enhances cell elongation in excised pea root segments, but at higher concentrations it is inhibitory. At concentrations stimulating cell elongation humic acid has no effect on protein metabolism but does inhibit the formation of cell-wall bound hydroxyproline from proline. Humic acid does not stimulate cell elongation or inhibit the formation of cell-wall bound hydroxyproline in the presence of ferrous iron. Results similar to those of humic acid were obtained using the iron chelator αα'-dipyridyl, but γγ'-dipyridyl. which does not chelate iron. was without effect on cell elongation.The cessation of cell elongation corresponds to the time at which there is a substantial increase in cellwall bound hydroxyproline, this latter process requiring ferrous iron. Thus humic acid may enhance growth by virtue of its ability to complex ferrous iron within the plant tissues. 相似文献
100.
M. L. Soupir S. Mostaghimi E. R. Yagow C. Hagedorn D. H. Vaughan 《Water, air, and soil pollution》2006,169(1-4):125-136
Land applications of manure from confined animal systems and direct deposit by grazing animals are both major sources of bacteria in streams. An understanding of the overland transport mechanisms from land applied waste is needed to improve design of best management practices (BMPs) and modeling of nonpoint source (NPS) pollution. Plots were established on pasturelands receiving phosphorus-based livestock waste applications to measure the concentrations of Escherichia coli (E. coli), fecal coliform (FC), and Enterococcus present in overland flow at the edge of the field. The flow-weighted bacteria concentrations were highest in runoff samples from the plots treated with cowpies (1.37×105 colony forming units (cfu)/100 ml of E. coli) followed by liquid dairy manure (1.84×104 cfu/100 ml of E. coli) and turkey litter (1.29×104 cfu/100 ml of E. coli). The temporal distribution of fecal bacterial concentrations appeared to be dependent upon both the animal waste treatment and the indicator species, with peak concentrations occurring either at the beginning of the runoff event or during peak flow rates. BMPs could be selected to reduce peak flows or first flush effects depending upon the litter or manure applied to the land. The commercial Biolog System was used to identify the dominant species of Enterococcus present in the cowpie source manure (Enterococcus mundtii 55%) and in the runoff collected from the transport plots treated with cowpies (Enterococcus faecalis 37%). The identification of predominant species of Enterococcus that are associated with specific sources of fecal pollution could greatly assist with identifying the origins of NPS pollution. 相似文献