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861.
The herbicides alachlor, atrazine, maleic hydrazide and paraquat were evaluated for genotoxicity in the Drosophila melanogaster wing spot test. Third-instar larvae trans-heterozygous for two recessive mutations of wing trichomes, multiple wing hairs (mwh) and flare (flr3), were treated by chronic feeding with different concentrations of the four herbicides. Feeding ended with pupation of the surviving larvae. The genotoxic effects were determined from the appearance of clones of cells with mwh, flr3 or mwh-flr3 phenotypes. Exposure to maleic hydrazide resulted in a significant increase in the frequency of the three categories of spots recorded (small single, large single and twin spots) in a dose-related fashion. Exposure to alachlor induced significant increases in both small and total spots at the four concentrations assayed and in the frequency of twin spots at the highest concentration tested (10 mM). Atrazine and paraquat also induced significant increases in both small and total spots at three of the four concentrations tested, without indication of a direct dose-effect relationship. 相似文献
862.
Nitrite and nitrosyl compounds in food preservation. 总被引:12,自引:0,他引:12
R Cammack C L Joannou X Y Cui C Torres Martinez S R Maraj M N Hughes 《Biochimica et biophysica acta》1999,1411(2-3):475-488
Nitrite is consumed in the diet, through vegetables and drinking water. It is also added to meat products as a preservative. The potential risks of this practice are balanced against the unique protective effect against toxin-forming bacteria such as Clostridium botulinum. The chemistry of nitrite, and compounds derived from it, in food systems and bacterial cells are complex. It is known that the bactericidal species is not nitrite itself, but a compound or compounds derived from it during food preparation. Of a range of nitrosyl compounds tested, the anion of Roussin's black salt [Fe4S3(NO)7]- was the most inhibitory to C. sporogenes. This compound is active against both anaerobic and aerobic food-spoilage bacteria, while some other compounds are selective, indicating multiple sites of action. There are numerous possible targets for inhibition in the bacterial cells, including respiratory chains, iron-sulfur proteins and other metalloproteins, membranes and the genetic apparatus. 相似文献
863.
864.
Rosa Maria Rios Rafael Sarmiento Antonio Torres Concepcion Fedriani 《Biology of the cell / under the auspices of the European Cell Biology Organization》1989,67(3):271-279
A method for induction of synchronous encystment in a hypotrichous ciliate, Paraurostyla sp. is described. Cyst walls, isolated by shaking with glass beads, were analyzed by SDS-polyacrylamide gel electrophoresis. To test optimal conditions of solubilization of cyst wall proteins, different treatments using Triton X-100, EDTA, EGTA, urea, SDS and 2-mercaptoethanol were carried out. At least, 15 different proteins were identified as specific to the cyst wall. Four low molecular weight polypeptides (40, 27–26, 20 and 18 kDa represented aproximately 70% of the cyst wall proteins. The 170, 135 and 40-kDa bands exhibited a PAS-positive reaction. Hydrogen and disulphide bonds were shown to be the most important interactions involving cyst wall proteins. Amino acid composition of cyst wall proteins was also investigated by HPLC. High amounts of glycine, cystine and proline were detected. 相似文献
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866.
Yin‐Hsun Feng Guermarie Velazquez‐Torres Christopher Gully Jian Chen Mong‐Hong Lee Sai‐Ching Jim Yeung 《Journal of cellular and molecular medicine》2011,15(4):825-836
Despite investigations into mechanisms linking type 2 diabetes and cancer, there is a gap in knowledge about pharmacotherapy for diabetes in cancer patients. Epidemiological studies have shown that diabetic cancer patients on different antidiabetic treatments have different survival. The clinically relevant question is whether some antidiabetic pharmacotherapeutic agents promote cancer whereas others inhibit cancer progression. We investigated the hypothesis that various antidiabetic drugs had differential direct impact on cancer cells using four human cell lines (pancreatic cancer: MiaPaCa2, Panc‐1; breast cancer: MCF7, HER18). We found that insulin and glucose promoted cancer cell proliferation and contributed to chemoresistance. Metformin and rosiglitazone suppressed cancer cell growth and induced apoptosis. Both drugs affected signalling in the protein kinases B (AKT)/mammalian target of rapamycin pathway; metformin activated adenosine monophosphate (AMP)‐activated protein kinase whereas rosiglitazone increased chromosome ten level. Although high insulin and glucose concentrations promoted chemoresistance, the combination of metformin or rosiglitazone with gemcitabine or doxorubicin, resulted in an additional decrease in live cancer cells and increase in apoptosis. In contrast, exenatide did not have direct effect on cancer cells. In conclusion, different types of antidiabetic pharmacotherapy had a differential direct impact on cancer cells. This study provides experimental evidence to support further investigation of metformin and rosiglitazone as first‐line therapies for type 2 diabetes in cancer patients. 相似文献
867.
A number of cotton varieties have been genetically transformed with genes from Bacillus thuringiensis (Bt) to continuously produce Bt endotoxins, offering whole plant and season-long protection against many lepidopteran larvae.
Constant whole-plant toxin expression creates a significant opportunity for non-target herbivores to acquire and bio-accumulate
the toxin for higher trophic levels. In the present study we investigated movement of Cry1Ac toxin from the transgenic cotton
plant through specific predator-prey pairings, using omnivorous predators with common cotton pests as prey: (1) the beet armyworm,
Spodoptera exigua (Lepidoptera: Noctuidae), with the predator Podisus maculiventris (Heteroptera: Pentatomidae); (2) the two-spotted spider mite, Tetranychus urticae (Acarina: Tetranychidae), with the predatory big-eyed bug Geocoris punctipes (Heteroptera: Geocoridae) and (3) with the predatory damsel bug Nabis roseipennis (Heteropera: Nabidae); and (4) the thrips Frankliniella occidentalis (Thysanoptera: Thripidae) with the predatory pirate bug Orius insidiosus (Heteroptera: Anthocoridae). We quantified Cry1Ac toxin in the cotton plants, and in the pests and predators, and the effects
of continuous feeding on S. exigua larvae fed either Bt or non-Bt cotton on life history traits of P. maculiventris. All three herbivores were able to convey Cry1Ac toxin to their respective predators. Among the herbivores, T. urticae exhibited 16.8 times more toxin in their bodies than that expressed in Bt-cotton plant, followed by S. exigua (1.05 times), and F. occidentalis immatures and adults (0.63 and 0.73 times, respectively). Of the toxin in the respective herbivorous prey, 4, 40, 17 and
14% of that amount was measured in the predators G. punctipes, P. maculiventris, O. insidiosus, and N. roseipennis, respectively. The predator P. maculiventris exhibited similar life history characteristics (developmental time, survival, longevity, and fecundity) regardless of the
prey’s food source. Thus, Cry1Ac toxin is conveyed through non-target herbivores to natural enemies at different levels depending
on the herbivore species, but continuous lifetime contact with the toxin by the predator P. maculiventris through its prey had no effect on the predator’s life history. The results found here, supplemented with others already published,
suggest that feeding on Cry1Ac contaminated non-target herbivores does not harm predatory heteropterans and, therefore, cultivation
of Bt cotton may provide an opportunity for conservation of these predators in cotton ecosystems by reducing insecticide use. 相似文献
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869.
870.