265 resultados para BaP


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El presente trabajo se realizó en el Laboratorio de Cultivo de Tejidos Vegetales del Programa Recursos Genéticos Nicaragüenses (REGEN), ubicado en la Universidad Nacional Agraria (UNA). El experimento se evaluó en dos fases, en la primera fase se estudió el comportamiento in vitro de ápices de los clones de yuca (Manihot esculenta Crantz) MCol-22, Okra y Portland cultivados en un medio nutritivo MS (Murashige y Skoog, 1962) con concentraciones de 0.00 mg/1 y 0.040 mg/1 de BAP (6-bencil aminopurina) y concentraciones de 0.05 mg/1 0.10 mgfl y 0.20 mg/1 de GA3 (ácido giberélico). En la segunda fase se evaluó el comportamiento de cuatro clones (C6-1141, MCol-1505, MCol-2215 y MMex-59) en las consistencias de medio nutritivo semisólida y líquida. A través del estudio se determinó que el genotipo es un factor muy importante sobre la respuesta organogénica de los tejidos cultivados in vitro. Sin embargo, es posible definir medios nutritivos para grupos de clones, facilitando así el proceso de micropropagación de especies de importancia económica como la yuca. Los clones que sobresalieron en la primera fase fueron el Portland y MCol- 22. Con respecto al efecto del BAP la concentración 0.04 mg/1 predominó sobre la concentración 0.00 mg/1, para todas las variables evaluadas en el ensayo. Así mismo, la concentración 0.10 mg/1 de GA 3 resultó la más efectiva. Por otra parte, de las consistencias de medios nutritivos evaluados en la segunda fase, se determinó que la consistencia semisólida dió mejor resultado sobre el número de raíces y la consistencia líquida tuvo mayor influencia sobre la variable altura de planta.

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采用光解试验,研究了紫外照射与纳米TiO2联合作用下,土壤表层中苯并[a]芘(BaP)的降解动力学;同时考察了催化剂的浓度、土壤pH、腐植酸和光质对BaP的光催化降解的影响。结果表明,土壤中BaP的光催化降解表现为准一级动力学。催化剂TiO2可以明显地促进土壤中BaP的光降解,较少量的催化剂(0.5%)使光解的半衰期从363.22h减少到103.26h。H+和OH-离子对BaP的催化光解起促进作用,在酸性和碱性土壤中BaP光催化降解高于中性土壤,酸性土壤中的降解速率最快。腐殖质吸收紫外光照射时,产生的活性氧中间产物能够攻击BaP,添加腐植酸能增加土壤表层中BaP的光催化降解。BaP的光解半衰期从无外加腐植酸的89.34h,减少到添加浓度分别为5、10、20和40mg·kg-1的29.37、32.69、35.73和38.51h。BaP的催化降解随波长的增加而降低,在波长254、310和365nm下,BaP降解的一级动力学常数分别为0.0078h-1、0.0061h-1和0.005h-1。

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Polycyclic aromatic hydrocarbons (PAHs) are ubiquitous environmental pollutants that frequently accumulate in soils. There is therefore a requirement to determine their levels in contaminated environments for the purposes of determining impacts on human health. PAHs are a suite of individual chemicals, and there is an ongoing debate as to the most appropriate method for assessing the risk to humans from them. Two methods predominate: the surrogate marker approach and the toxic equivalency factor. The former assumes that all chemicals in a mixture have an equivalent toxicity. The toxic equivalency approach estimates the potency of individual chemicals relative to the usually most toxic Benzo(a)pyrene. The surrogate marker approach is believed to overestimate risk and the toxic equivalency factor to underestimate risk. When analysing the risks from soils, the surrogate marker approach is preferred due to its simplicity, but there are concerns because of the potential diversity of the PAH profile across the range of impacted soils. Using two independent data sets containing soils from 274 sites across a diverse range of locations, statistical analysis was undertaken to determine the differences in the composition of carcinogenic PAH between site locations, for example, rural versus industrial. Following principal components analysis, distinct population differences were not seen between site locations in spite of large differences in the total PAH burden between individual sites. Using all data, highly significant correlations were seen between BaP and other carcinogenic PAH with the majority of r2 values > 0.8. Correlations with the European Food Standards Agency (EFSA) summed groups, that is, EFSA2, EFSA4 and EFSA8 had even higher correlations (r2 > 0.95). We therefore conclude that BaP is a suitable surrogate marker to represent mixtures of PAH in soil during risk assessments.

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Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)

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The yacon (Polymnia sonchifolia) is used largely for the high fructan content of its tubers; consequently, it is a good alternative for diabetics. One of the more important restricting factors of the commercial production of yacon is its susceptibility to nematode attack. This, as well as germplasm bank maintenance, justifies the importance of in vitro propagation of this species. In this way, our work aimed to verify the best asepsis method for yacon for the in vitro establishment from the rhizophore and the axillary buds of the aerial parts, and the effect of benzylaminopurine (BAP) addition to the culture medium. The number of contaminated cultures, the occurrence of phenolic oxidation and the occurrence of a vitreous aspect, showed differences with bud source, immersion time for asepsis, and BAP use. The results contribute to establishing a yacon micro propagation procedure.

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Curcuma longa L. is used in many countries for its flavor, and medicinal and cosmetic attributes, as well as for its peculiar starch characteristics. These factors have driven an interest in the in vitro propagation of this species, looking for germplasm bank maintenance, production of disease free plants, genetic variability induction from callus, and as a tool for starch research. However, there are few reports concerning the micropropagation of Curcuma longa. The in vitro propagation rate of this species, cultured under two benzylaminopurine (BAP) concentrations, was the aim of this research.

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To ensure the ongoing quality of anthurium inflorescence it is necessary to use postharvest treatments aimed at extending the vase life and delaying senescence. Thus, the objective of this study was to assess the effect of postharvest spray application of 6-benzylaminopurine (BAP) in anthurium quality and sugar levels. Two experiments were done, one where inflorescences were sprayed 0, 100 and 200 mg L-1 of BAP and kept under 23±1°C and relative humidity of 65±5% for evaluations, and in the second experiment BAP concentrations were reduced to 0, 50 and 100 mg L-1 and inflorescences were cold stored for 2 days at 13±1°C and then transferred to the same evaluation conditions from the first experiment. Quality assessments were performed according to Paull (1982) for spathe loss of gloss and blueing and spadix necrosis along with stem weighting for fresh weight (FW) variation every two days. In the first experiment FW loss was significantly lower from the 14th until 26th day after harvest. Anthurium sprayed with 100 and 200 mg L-1 showed significantly less fresh weight loss when compared to control stems and in the second experiment 50 and 100 mg L-1 did not reduce fresh weight loss. Means of scores from quality analysis, blueing and loss of gloss of spathes and spadix necrosis, were significantly lower in BAP sprayed anthurium (100 and 200 mg L-1) than in control flowers and by lowering BAP spray concentration and cold storing stems for two days this positive effect was only observed for spadix necrosis and not observed for spathe parameters.

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Seabob shrimp Xiphopenaeus kroyeri is a marine species that lives in shallow waters of coastal environments, often impacted by polycyclic aromatic hydrocarbons (PAH) pollution. In the present study, seabob shrimp were exposed for 96 h to benzo[a]pyrene (BaP) at the nominal concentrations of 100, 200, 400 and 800 microg.L-1. Animals of the control groups were exposed either to clean water or to the BaP-carrier (DMSO). At the end of the exposures, muscle tissues were sampled for BaP uptake assessment and hepatopancreas and hemolymph for EROD enzyme activity and hemocytes DNA damage, respectively. EROD activity and DNA damage increased significantly as a function of BaP exposure concentrations. Significant correlations between BaP uptake and both EROD activity and DNA damage suggest that they can be used as suitable tools for integrated levels of study on the biomarkers of PAH exposure.