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Zdeňka Svobodová Oxana Skoková Habu?tová William D. Hutchison Hany M. Hussein Franti?ek Sehnal 《PloS one》2015,10(6)
Transgenic maize MON88017, expressing the Cry3Bb1 toxin from Bacillus thuringiensis (Bt maize), confers resistance to corn rootworms (Diabrotica spp.) and provides tolerance to the herbicide glyphosate. However, prior to commercialization, substantial assessment of potential effects on non-target organisms within agroecosystems is required. The MON88017 event was therefore evaluated under field conditions in Southern Bohemia in 2009–2011, to detect possible impacts on the above-ground arthropod species. The study compared MON88017, its near-isogenic non-Bt hybrid DK315 (treated or not treated with the soil insecticide Dursban 10G) and two non-Bt reference hybrids (KIPOUS and PR38N86). Each hybrid was grown on five 0.5 ha plots distributed in a 14-ha field with a Latin square design. Semiquantitative ELISA was used to verify Cry3Bb1 toxin levels in the Bt maize. The species spectrum of non-target invertebrates changed during seasons and was affected by weather conditions. The thrips Frankliniella occidentalis was the most abundant species in all three successive years. The next most common species were aphids Rhopalosiphum padi and Metopolophium dirhodum. Frequently observed predators included Orius spp. and several species within the Coccinellidae. Throughout the three-year study, analysis of variance indicated some significant differences (P<0.05). Multivariate analysis showed that the abundance and diversity of plant dwelling insects was similar in maize with the same genetic background, for both Bt (MON88017) and non-Bt (DK315) untreated or insecticide treated. KIPOUS and PR38N86 showed some differences in species abundance relative to the Bt maize and its near-isogenic hybrid. However, the effect of management regime on arthropod community was insignificant and accounted only for a negligible portion of the variability. 相似文献
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Hany H. Arab Samir A. Salama Hany A. Omar El-Shaimaa A. Arafa Ibrahim A. Maghrabi 《PloS one》2015,10(3)
Alcohol consumption has been commonly associated with gastric mucosal lesions including gastric ulcer. Diosmin (DIO) is a natural citrus flavone with remarkable antioxidant and anti-inflammatory features that underlay its protection against cardiac, hepatic and renal injuries. However, its impact on gastric ulcer has not yet been elucidated. Thus, the current study aimed to investigate the potential protective effects of DIO against ethanol-induced gastric injury in rats. Pretreatment with DIO (100 mg/kg p.o.) attenuated the severity of ethanol gastric mucosal damage as evidenced by lowering of ulcer index (UI) scores, area of gastric lesions, histopathologic aberrations and leukocyte invasion. These actions were analogous to those exerted by the reference antiulcer sucralfate. DIO suppressed gastric inflammation by curbing of myeloperoxidase (MPO) and tumor necrosis factor-α (TNF-α) levels along with nuclear factor kappa B (NF-κB) p65 expression. It also augmented the anti-inflammatory interleukin-10 (IL-10) levels. Meanwhile, DIO halted gastric oxidative stress via inhibition of lipid peroxides with concomitant enhancement of glutathione (GSH), glutathione peroxidase (GPx) and the total antioxidant capacity (TAC). With respect to gastric mucosal apoptosis, DIO suppressed caspase-3 activity and cytochrome C (Cyt C) with enhancement of the anti-apoptotic B cell lymphoma-2 (Bcl-2) in favor of cell survival. These favorable actions were associated with upregulation of the gastric cytoprotective prostaglandin E2 (PGE2) and nitric oxide (NO). Together, these findings accentuate the gastroprotective actions of DIO in ethanol gastric injury which were mediated via concerted multi-pronged actions, including suppression of gastric inflammation, oxidative stress and apoptosis besides boosting of the antioxidant and the cytoprotective defenses. 相似文献
144.
Photochemical Transformations in Fullerene and Molybdenum Oxide Affect the Stability of Bilayer Organic Solar Cells
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Hui Zhang Andreas Borgschulte Fernando A. Castro Rowena Crockett Andreas C. Gerecke Okan Deniz Jakob Heier Sandra Jenatsch Frank Nüesch Carlos Sanchez‐Sanchez Alina Zoladek‐Lemanczyk Roland Hany 《Liver Transplantation》2015,5(2)
Thin films of fullerene C60 and molybdenum oxide (MoO3) are ubiquitously used as the electron acceptor material and hole extraction interfacial layer for the fabrication of organic photovoltaic (OPV) cells. It is well known that light exposure induces color changes in MoO3 (photochromism) and the formation of intermolecular bonds between C60 molecules (photopolymerization). The influence of these photoinduced reactions on the long‐term stability of OPV cells, however, has not previously been studied in detail. Here, a study and discussion of the early (<5 days) aging mechanisms occurring in illuminated ITO/MoO3/organic cyanine dye/C60/Alq3/Ag bilayer solar cells under nitrogen atmosphere is presented. A degradation process at the organic heterojunction is identified and the formation of Mo5+ species during illumination is found to adversely affect cell behavior. For these widely used materials, the results suggest that light processing is a first necessary step before OPV characteristics can be meaningfully rated. 相似文献
145.
M. Amane R. Lumaret V. Hany N. Ouazzani C. Debain G. Vivier M. F. Deguilloux 《TAG. Theoretical and applied genetics. Theoretische und angewandte Genetik》1999,99(1-2):133-139
Polymorphism in the lengths of restriction fragments of the whole cpDNA molecule was studied in cultivated olive and in oleaster
(wild olive) over the whole Mediterranean Basin. Seventy two olive cultivars, 89 very old trees cultivated locally, and 101
oleasters were scored for ten endonucleases. Moreover, maternal inheritance of cpDNA in olive was shown by analysing the progeny
of a controlled cross between two parents which differed in their cpDNA haplotypes. In the whole species, three site- and
three length-mutations were observed, corresponding to five distinct chlorotypes. The same chlorotype (I) was predominant
in both oleasters and cultivated olive trees, confirming that these are closely related maternally. Three other chlorotypes
(II, III and IV) were observed exclusively in oleaster material and were restricted either to isolated forest populations
or to a few individuals growing in mixture with olive trees possessing the majority chlorotype. An additional chlorotype (V)
was characterised by three mutations located in distinct parts the cpDNA molecule but which were never observed to occur separately.
This chlorotype, more widely distributed than the other three, in both cultivated and wild olive, and occurring even in distant
populations, was observed exclusively in male-sterile trees showing the same specific pollen anomaly. However, in the present
study, no evidence was provided for a direct relationship between the occurrence of the cpDNA mutations and male sterility.
It is suggested that the large geographic distribution of chlorotype V may be related to the high fruit production usually
observed on male-sterile trees. These may be very attractive for birds which are fond of olive fruit and spread the stones
efficiently. Probably for the same reason, people preserved male-sterile oleasters for long periods and, in several places,
used male-sterile cultivars over large areas.
Received: 25 November 1998 / Accepted: 19 December 1998 相似文献
146.
Guang-Hui Zhao Juan Li David Blair Xiao-Yan Li Hany M. Elsheikha Rui-Qing Lin Feng-Cai Zou Xing-Quan Zhu 《Biotechnology advances》2012
Schistosomiasis is a serious parasitic disease caused by blood-dwelling flukes of the genus Schistosoma. Throughout the world, schistosomiasis is associated with high rates of morbidity and mortality, with close to 800 million people at risk of infection. Precise methods for identification of Schistosoma species and diagnosis of schistosomiasis are crucial for an enhanced understanding of parasite epidemiology that informs effective antiparasitic treatment and preventive measures. Traditional approaches for the diagnosis of schistosomiasis include etiological, immunological and imaging techniques. Diagnosis of schistosomiasis has been revolutionized by the advent of new molecular technologies to amplify parasite nucleic acids. Among these, polymerase chain reaction-based methods have been useful in the analysis of genetic variation among Schistosoma spp. Mass spectrometry is now extending the range of biological molecules that can be detected. In this review, we summarize traditional, non-DNA-based diagnostic methods and then describe and discuss the current and developing molecular techniques for the diagnosis, species differentiation and phylogenetic analysis of Schistosoma spp. These exciting techniques provide foundations for further development of more effective and precise approaches to differentiate schistosomes and diagnose schistosomiasis in the clinic, and also have important implication for exploring novel measures to control schistosomiasis in the near future. 相似文献
147.
Letícia Alves Gomes Albertti Antonio Francisco Souza-Filho Antônio Augusto Fonseca-Júnior Michele Eduardo Freitas Aiesca de Oliveira-Pellegrin Namor Pinheiro Zimmermann Walfrido Moraes Tomás Igor Alexandre Hany Fuzeta Schabib Péres Isabella Fontana Ana Luiza Alves Rosa Osório 《European Journal of Wildlife Research》2015,61(1):163-166
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