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排序方式: 共有2332条查询结果,搜索用时 31 毫秒
941.
Amir D. Omer Bruce E. Tabashinik Marshall W. Johnson 《Entomologia Experimentalis et Applicata》1995,77(2):177-181
We studied inheritance of resistance to dicrotophos in greenhouse whitefly,Trialeurodes vaporariorum Westwood (Homoptera, Aleyrodidae). Compared with females from a field-collected susceptible strains (S), females from a resistant
strain (R) ofT. vaporariorum derived from heavily treated cotton fields had a 28-fold greater LC50 to dicrotophos in laboratory bioassays. Concentration-mortality lines obtained from female progeny of reciprocal F1 crosses (R♀ XS♂ and S♀ XR♂) were similar, suggesting that inheritance of dicrotophos resistance was autosomal and not influenced by maternal effects.
Responses of F1 female progeny were similar to those of the parental S strain, indicating that the resistance was partially recessive (degree
of dominance, D, was −0.61). Mortality observed in female progeny obtained from a backcross (F1♀ XR♂) corresponded more closely to expectations derived from polygenic models than to expectations from a monogenic model. The
estimated number of effective factors (sensu Lande, 1981) contributing equally to resistance was three. 相似文献
942.
Maja Majerić Amir Avdagić Zdenko Hameršak Vitomir Šunjić 《Biotechnology letters》1995,17(11):1189-1194
Summary 2-Methyl-(4-tert-butyl)cinnamaldehyde (1) was reduced by Saccharomyces cerevisiae (baker's yeast) to S-3-(4-tert-butyl)-phenyl-2-propanol (4) in high chemical and very high optical yield (e.e. 99%). Chlorination of 4 to 5, and alkylation of the corresponding cyclic amines complete this short enantioselective synthesis of S-1-(l'-pyperidino)-2-methyl-3-(4tert-butyl)-phenyl-propane (6) and S-1-(1'-(3,5-cisdimethyl)morpholino)-2-methyl-3-(4-tert-butyl)-phenyl-propane (7), the S-enantiomers of fenpropidine and fenpropimorph, commercialy important systemic fungicides. 相似文献
943.
944.
Vahid Molla Kazemiha Shahin Bonakdar Amir Amanzadeh Shahram Azari Arash Memarnejadian Shirin Shahbazi Mohammad Ali Shokrgozar Reza Mahdian 《Cytotechnology》2016,68(4):1063-1080
Mycoplasmas are the most important contaminants of cell cultures throughout the world. They are considered as a major problem in biological studies and biopharmaceutical economic issues. In this study, our aim was to find the best standard technique as a rapid method with high sensitivity, specificity and accuracy for the detection of mycoplasma contamination in the cell lines of the National Cell Bank of Iran. Thirty cell lines suspected to mycoplasma contamination were evaluated by five different techniques including microbial culture, indirect DNA DAPI staining, enzymatic mycoalert® assay, conventional PCR and real-time PCR. Five mycoplasma-contaminated cell lines were assigned as positive controls and five mycoplasma-free cell lines as negative controls. The enzymatic method was performed using the mycoalert® mycoplasma detection kit. Real-time PCR technique was conducted by PromoKine diagnostic kits. In the conventional PCR method, mycoplasma genus-specific primers were designed to analyze the sequences based on a fixed and common region on 16S ribosomal RNA with PCR product size of 425 bp. Mycoplasma contamination was observed in 60, 56.66, 53.33, 46.66 and 33.33 % of 30 different cell cultures by real-time PCR, PCR, enzymatic mycoalert®, indirect DNA DAPI staining and microbial culture methods, respectively. The analysis of the results of the different methods showed that the real-time PCR assay was superior the other methods with the sensitivity, specificity, accuracy, predictive value of positive and negative results of 100 %. These values were 94.44, 100, 96.77, 100 and 92.85 % for the conventional PCR method, respectively. Therefore, this study showed that real-time PCR and PCR assays based on the common sequences in the 16S ribosomal RNA are reliable methods with high sensitivity, specificity and accuracy for detection of mycoplasma contamination in cell cultures and other biological products. 相似文献
945.
946.
Amir Mohaghegh Motlagh Ananda Shankar Bhattacharjee Ramesh Goel 《World journal of microbiology & biotechnology》2016,32(4):67
Bacteriophages, as the most dominant and diverse entities in the universe, have the potential to be one of the most promising therapeutic agents. The emergence of multidrug-resistant bacteria and the antibiotic crisis in the last few decades have resulted in a renewed interest in phage therapy. Furthermore, bacteriophages, with the capacity to rapidly infect and overcome bacterial resistance, have demonstrated a sustainable approach against bacterial pathogens-particularly in biofilm. Biofilm, as complex microbial communities located at interphases embedded in a matrix of bacterial extracellular polysaccharide substances (EPS), is involved in health issues such as infections associated with the use of biomaterials and chronic infections by multidrug resistant bacteria, as well as industrial issues such as biofilm formation on stainless steel surfaces in food industry and membrane biofouling in water and wastewater treatment processes. In this paper, the most recent studies on the potential of phage therapy using natural and genetically-modified lytic phages and their associated enzymes in fighting biofilm development in various fields including engineering, industry, and medical applications are reviewed. Phage-mediated prevention approaches as an indirect phage therapy strategy are also explored in this review. In addition, the limitations of these approaches and suggestions to overcome these constraints are discussed to enhance the efficiency of phage therapy process. Finally, future perspectives and directions for further research towards a better understanding of phage therapy to control biofilm are recommended. 相似文献
947.
948.
949.
Amir Abadi Hayley Maynard Ni Luh Arpiwi Colin Stucley John Bartle Rick Giles 《Bioenergy Research》2016,9(3):874-883
Pongamia (Millettia pinnata) has been widely studied as a potential feedstock for biodiesel fuel, though little is known about its feasibility at a commercial level. Capital budgeting and cash flow analysis was conducted for a potential Pongamia plantation and crushing plant in Queensland, Australia. For annual seed yields ranging from 20 to 80 kg (in shell) per tree, the delivered cost of Pongamia oil was estimated to be between AUD $2.22 and AUD $0.64 per litre. The seed yield range of 20 to 80 kg per tree is roughly equivalent to between 7 and 29 t per hectare at a planting density of 357 trees per hectare. Major components of the delivered cost of (Pongamia) oil are the capital expenses of land acquisition, plantation establishment and the crushing plant construction. The major operational costs include mechanical harvesting; fertiliser; control of weed, pests and diseases; seed crushing; and freight of oil to a refinery. The cost items with the greatest volume sensitivity are the capital expenses, overheads (consisting mostly of salaries and wages of employees) and the expenses associated with harvesting and crushing operations. These costs could be significantly reduced if the seed yield could be increased. Several scenarios were tested to demonstrate the effect of seed yield and oil price on the profitability and cash flow of the Pongamia enterprise. At most plausible oil prices and seed yields, Pongamia oil is not expected to be economically viable. 相似文献
950.
Frederick N. Dong Amir Amiri-Yekta Guillaume Martinez Antoine Saut Julie Tek Laurence Stouvenel Patrick Lorès Thomas Karaouzène Nicolas Thierry-Mieg Véronique Satre Sophie Brouillet Abbas Daneshipour Seyedeh Hanieh Hosseini Mélanie Bonhivers Hamid Gourabi Emmanuel Dulioust Christophe Arnoult Aminata Touré Charles Coutton 《American journal of human genetics》2018,102(4):636-648