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The gypsy moth (Lymantria dispar L., Lepidoptera: Lymantriidae) is one of the most serious pest of various forestal, food and industrial crops worldwide. We have characterized a new Lymantria dispar nucleopolyhedrovirus (LdMNPV-T4) variant, which was isolated from dead L. dispar larvae in Turkey. Scanning electron microscope observations showed that the polyhedral occlusion bodies (OBs) of the LdMNPV-T4 were irregularly shaped. Transmission electron microscopy revealed that OBs of LdMNPV-T4 were occupied with several virions in which multiple nucleocapsids packaged by viral envelope. Restriction analysis of the LdMNPV-T4 DNA purified from the viral inclusion bodies yielded BamHI, BglII, EcoRI and HindIII fragments. The mean size estimated for the complete LdMNPV-T4 genome was calculated to be 163.3 kb. Phylogenetic analysis of amplified polh, lef-8 and lef-9 sequences showed its relation to the other NPVs from Lymantria species. Mortality values of the LdMNPV-T4 at four different concentrations against third instar larvae of L. dispar ranged from 45% to 88%. These results suggest that LdMNPV-T4 isolated from Turkey is a promising microbial control agent to be utilized for the biological control of L. dispar.  相似文献   
2.
Natural sawdust of Calabrian pine was explored as low-cost industrial by-product for a hetero-bireactive dye removal from aqueous solution in this study. Batch experiments were carried out to investigate the effects of contact time and dye concentration on biosorption efficiency. Maximum biosorption amounts were achieved almost in the 20-30 min of contact for the studied dye range (50-200 mg l -1). An increase in the dye concentration resulted in decrease in the percent dye removal and increase in the biosorption capacity of biosorbent. Different kinetic and isotherm models were used to examine the biosorption experimental data for elucidating the dye removal mechanism. The equilibrium data were best represented by Freundlich isotherm model confirming multilayer coverage. The kinetics of dye biosorption best obeyed the pseudo-secondorder equation. The negative value of standard Gibbs free energy change (-3.61 kJ mol-1) indicated that physical forces were involved in the spontaneous dye biosorption. Thus, the sawdust as a possible non-conventional biosorbent presented an interesting option for bioremediation of contaminated environments by such unsafe dyes.  相似文献   
3.
In this study, residual shell biomass of Corylus avellana L. was used as potential biosorbent for biosorption of a model industrial hetero-bireactive dye. The biosorbent was characterized by FTIR and SEM. The batch biosorption studies were performed as a function of dye concentration and contact time. The biosorption of dye was found to be very quick. Various kinetic and isotherm models were used to evaluate the obtained experimental data. The biosorption kinetic was best represented by the pseudo-second-order model while the biosorption equilibrium was best described by Langmuir model. The maximum dye biosorption capacity of biosorbent based on Langmuir isotherm was obtained as 74.527 mg g-1. These results showed that the use of such plant waste biomass in biosorption system could be a feasible method for the removal of such recalcitrant dye from industrial effluents to reduce operating costs.  相似文献   
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