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1.
Photostabilization of the pyrethroid insecticide bioresmethrin (BR) was achieved by adsorbing it onto the ciay montmorillonite with a cationic organic chromophore. Experiments in the dark showed that adsorption of BR to the surface of the clay did not inhibit its insecticidal activity. Complexes containing the organic cations methyl green (MG) or naphthylammonium (NA) retained their insecticidal activity against the flour beetle, Tribolium castaneum for 3-5 days in sunlight whereas unprotected BR was inactivated within a few hours. Optimum stabilization was achieved by definite amounts of BR and MG adsorbed, indicating that photostabilization was due to specific intermolecular interactions on the clay surface rather than to a UV-screening effect. The interactions between BR and MG at the clay surface were studied by Fourier transform infra-red spectroscopy.  相似文献   

2.

We studied the photostabilizing effect of the isoquinoline alkaloid berberine on the following three model photounstable biocontrol agents: the bacterium Bacillus thuringiensis ( Bt ), the baculovirus Spodoptera littoralis nucleopolyhedrosis virus ( SlNPV ), and the entomopathogenic fungus Beauveria bassiana . The photoprotection provided by berberine was evaluated following various periods of simulated sunlight-UV irradiation. Insecticidal activity of Bt and SlNPV , as well as the rate of B. bassiana spore germination served as parameters for the photostabilizing effects. Only a berberine- Bt complex is effective, as practically no photostabilization was evident by just mixing the two components. The UV-sensitive SlNPV and B. bassiana spores were considerably photostabilzed by berberine. The role of the cationic nature of the berberine molecule and the importance of its absorbance spectrum in photostabilization of biocontrol agents are discussed.  相似文献   

3.
Abstract

A field trial was conducted to study the magnitude of quinalphos residues in and/or cauliflower (Brassica oleracea Var Botrytis. The cauliflower crop was sprayed once with quinalphos 25 e.c. at 0.25 and 0.5 kg a.i./ha 104 days after transplanting. The samples of cauliflower drawn at different time intervals were analysed colorimetrically. The initial deposits of quinalphos on cauliflower were found to be 5.79 and 9.52 ppm, an the half life values 1.61 and 2.12 days, respectively, at 0.25 and 0.5 kg a.i./ha. The waiting periods determined were 11 days at the higher and 7 days at the lower dose of quinalphos.  相似文献   

4.
Photolysis of quinalphos, O,O-diethyl O-(quinoxalin-2-yl) phosphorothioate ( I ), in ethanolic solutions yields two products, O,O-diethyl O-(3-ethoxy-quinoxalin-2-yl) phosphorothioate ( II ) and O,O-diethyl O-(3-(1-hydroxyethyl)-quinoxalin-2-yl) phosphorothioate ( III ). Both products derive from the reaction of photo-excited quinalphos molecule with the solvent. The reactions follow first-order kinetics. A mechanism that accounts for the formation of the above mentioned products is proposed.  相似文献   

5.
在杭州和长沙两地两年用不同剂量、不同施药方法进行的研究表明,喹硫磷在茶树鲜叶上降解速度中等,1天后的降解率平均7.15%,降解速度低于辛硫磷、马拉硫磷、敌敌畏等农药。用25%乳剂800倍液喷施后5天鲜叶中残留量低于10ppm,10天后低于1ppm,降解速率常数(K)0.47±0.06天,半衰期1.37±0.02天。降雨对喹硫磷在茶树上的降解有一定影响,尤其在施药后的近期。对成茶中在喷后不同间隔天数的残留量、含喹硫磷残留的鲜叶在加工过程中的降解率、成茶中喹硫磷残留量在泡茶时的浸出率,均进行了测定,并讨论了喷后不同间隔期鲜叶上的残留量和茶尺蠖幼虫致死剂量间的关系。建议喹硫磷在成茶中允许残留标准暂订为0.2ppm,茶叶喷施25%乳油800倍液后的安全间隔期为8—10天。  相似文献   

6.
Resistance to chemicals and some biological control agents by Plutella xylostella has resulted in the search for alternatives, such as P. xylostella granulovirus (PlxyGV), for the management of P. xylostella. However, use of PlxyGV would be economical only if it is applied at the right crop stage and at economic threshold levels. Hence, we evaluated the field level economic threshold for application of PlxyGV at the reproductive phase of cauliflower taking into consideration both the economic threshold model and the economic optimization model. PlxyGV was found to be very effective in management of the pest and was comparable to weekly applications of quinalphos 25EC. However, due to the higher cost of PlxyGV application than quinalphos, the cost benefit ratio with quinalphos application was much higher than the virus application. The net income from the virus application decreased both at lower thresholds—due to the higher cost of plant protection, and at higher thresholds—due to the increased damage by the pest. Based on the economic threshold model, the economic threshold for application of PlxyGV was estimated at 9–11 larvae per ten plants. Considering the net income per hectare and the cost of plant protection, it was found that at a threshold of 12–14 larvae per ten plants net income was just equal to the cost of plant protection. Based on the economic optimization model, the optimum threshold for application of PlxyGV was 15 larvae per ten plants when profits are maximum.  相似文献   

7.
Abstract

The susceptibility of adults and cocooned stages of Apanteles plutellae Kurdj. (Hymenoptera, Braconidae) to four synthetic pyrethroid insecticides and five other chemical insecticides was tested. The chemicals, formulated as emulsifiable concentrates, were decamethrin (0.0014%), permethrin (0.01%), fenvalerate (0.01%), cypermethrin (0.005%), dichlorvos (0.05%), monocrotophos (0.05%), endosulfan (0.05%), phosalone (0.05%) and quinalphos (0.05%). Adults were exposed for 6 h to filter paper impregnated with insecticide solution and were then transferred to untreated vials for observation. Cocoons were sprayed with the chemicals by means of a glass atomiser and held for adult emergence. The pyrethroid formulations and phosalone had little or no harmful effect on the adults and cocooned stages of A. plutellae but quinalphos was highly toxic to all stages tested. Dichlorvos, monocrotophos and endosulfan were highly toxic to adults but relatively safe for the cocooned stages.  相似文献   

8.
The joint action of pyrethroids deltamethrin and cypermethrins in combination with organophosphates ethion, profenofos, chlorpyrifos, quinalphos, and triazophos was studied on putatively resistant field populations of Helicoverpa armigera from Pakistan by using a leaf-dip method. Ethion produced a good potentiation with deltamethrin, cypermethrin, alphacypermethrin, and zetacypermethrin, whereas profenofos, chlorpyrifos, quinalphos, and triazophos exhibited an antagonism with deltamethrin as well as cypermethrins. Implications of using mixtures for counteracting insecticide resistance are discussed.  相似文献   

9.
Cypermethrin, quinalphos, endosulfan and methomyl were bioassayed against strains of Helicoverpa armigera collected from field crops in Andhra Pradesh and Tamil Nadu, South India, during the 1989-90 and 1990-91 cropping seasons. In 1989, high levels of resistance to cypermethrin were recorded in strains from cotton in the cotton-growing regions of Guntur, Andhra Pradesh and Coimbatore, Tamil Nadu, and from pigeon pea near Hyderabad. There was no evidence for resistance to quinalphos or methomyl at that time. In 1990-91 sampling was more extensive and although tolerance to cypermethrin was lower than the previous season, the survey indicated that pyrethroid-resistant populations were present throughout much of Andhra Pradesh. Tolerance to quinalphos had increased slightly in 1990-91, while resistance to methomyl had increased substantially, particularly in the cotton-growing area of Guntur. Endosulfan tolerance had increased slightly compared to strains tested in 1986-88 in an earlier study. The geographic and temporal variations in severity of pyrethroid resistance in H. armigera in Andhra Pradesh are believed to arise because of dynamic interactions between local selection pressure and immigration of resistant and susceptible moths at certain times of the year.  相似文献   

10.
Chinese violet (Asystasia gangetica (L.) T. Anderson) is a perennial invasive weed belonging to Acanthaceae. Leaves of this weed have been suggested to possess phytotoxic activity. However, phytotoxic substances in this weed have not yet been reported. Therefore, the present study investigated phytotoxic activity of Chinese violet extracts and phytotoxic substances. The extracts of Chinese violet leaves inhibited the root and shoot growth of cress, lettuce, alfalfa, barnyard grass, ryegrass, and timothy, where the level of inhibition increased with increasing extract concentrations. Bioassay‐guided separations of the extracts led to isolation of two phytotoxic substances, indole‐3‐carboxaldehyde and (6R,9S)‐3‐oxo‐α‐ionol. Indole‐3‐carboxaldehyde significantly inhibited the root and shoot growth of cress at concentrations ≥100 and 30 μmol L?1, respectively, and concentrations of the substance required for 50% growth inhibition were 210 and 127 μmol L?1 for cress roots and shoots, respectively. The other substance, (6R,9S)‐3‐oxo‐α‐ionol, was reported to have strongly inhibited cress roots and shoots. The present results suggest that Chinese violet contains two phytotoxic substances indole‐3‐carboxaldehyde and (6R,9S)‐3‐oxo‐α‐ionol, and those substances may play an important role in the phytotoxic activity of Chinese violet.  相似文献   

11.
The persistence of cyproconazole and quinalphos on/in grapes was investigated when both compounds were applied to vines at the locally recommended application frequencies and rates and at double these rates, using commercially available formulations. Residues of cyproconazole applied at recommended and double the recommended rates of application in/on grapes immediately after the last application were 0-049 (±0.034) and 0.077 (±0.008) mg kg?1, respectively, reduced to 0.011 (±0.003) and 0.018 (±0.010) mg kg?1 respectively seven days after the last application. The corresponding residue levels of quinalphos immediately following the last application were 1.42 (±0.10) and 3.36 (±0.07) mg kg?1, reduced to 0.043 (±0.002) and 0.072 (±0.028) mg kg?1 respectively 21 days after the last application. Cyproconazole, being systemic, is rapidly absorbed by the grape tissues and its residues dissipate with a half-life of three to four days, while quinalphos, being non-systemic, dissipates faster with a half-life of two or three days. The residues of both pesticides were analysed by a GLC-NPD system.  相似文献   

12.
The present study was undertaken to assess the insecticide resistance developed in various field collected population of S. litura and to induce susceptibility by using the synergists. Third-instar larvae collected from three different locations of Kerala viz., Thiruvananthapuram (TVM), Pathanamthitta (PTA) and Alappuzha (ALP) were exposed to conventional insecticides like chlorpyriphos, quinalphos, lambda-cyhalothrin and cypermethrin by leaf dip bioassay and resistance ratios were calculated by using the baseline data generated for respective insecticides using susceptible strain. Resistance ratios recorded were 1965, 840 and 320 against chlorpyriphos, 605, 255 and 59 against quinalphos, 926, 250 and 108 against lambda-cyahlothrin and 2566, 534 and 396 against cypermethrin respectively for TVM, PTA and ALP populations. The effect of selected synergists viz., piperonyl butoxide (PBO), diethyl maleate (DEM) and triphenyl phosphate (TPP) was studied in combination with respective test insecticides against the highly resistant population of S.litura collected from TVM of Kerala. The population was tested with insecticide in combination of the above synergists at different ratios. When PBO, TPP and DEM at ratio of 1:4 were used the synergistic ratio was 8.47, 7.26 and 3.98 for chlorpyriphos, 6.09, 5.26 and 3.05 for quinalphos, 13.37, 4.53 and 7.39 for lambda cyhalothrin and 4.77, 3.36 and 3.40 for cypermethrin respectively. PBO showed highest synergistic activity against both the organophosphates tested followed by DEM and TPP. Highest synergistic activity against synthetic pyrethroids also was shown by PBO, followed by TPP and DEM. The results obtained from the present study revealed that PBO at 1:4 ratio showed higher synergism with the test insecticides against the resistant populations of S.litura and proved to be an effective molecule alternate for breaking the resistance against conventional organophosphates and synthetic pyrethroids.  相似文献   

13.
Plant pathogenic bacteria in recirculated greenhouse water were inactivated by two distinct photochemical approaches: photo-inactivation in the presence of 0.005% to 0.01% hydrogen peroxide (H2O2), and photocatalytic inactivation with 0.01% titanium dioxide (TiO2). In both processes photo-inactivation is achieved by exposure to sunlight. Total inactivation, with 6–8 log units decrease in viable counts, was achieved in the study of the phytopathogensErwinia carotovora (E.c.), Clavibacter michiganensis (C.m.) andPseudomonas syringae pv.tomato (P.t.) by 10 to 30 min solar irradiation, in the presence of 0.15 to 0.3 mM (50–100 mgl −1) H2O2. Different responses of the examined pathogens towards TiO2 photo-inactivation were noticed. Whereas 10 min of solar illumination in the presence of both 100 mgl −1 H2O2 and 100 mgl −1 TiO2 resulted in total inactivation ofP.t. andE.c., this treatment had no effect onC.m. However, with traces of H2O2 (e.g. 50–100 mgl −1), and in the absence of TiO2,C.m. was deactivated by 20 min of solar irradiation.P.t. was fully inactivated in the dark by H2O2 at 3,000 mgl −1 (0.3%), but not with H2O2 at ≤ 1000 mgl −1. Also, no inactivation occurred with solar illumination in the absence of H2O2. The mechanism of the bactericidal photoreaction and the special significance of plant pathogen inactivation by natural sunlight in the presence of trace levels of H2O2 is discussed. http://www.phytoparasitica.org posting May 20, 2005.  相似文献   

14.
The herbicide benfuresate applied preplanting to cotton (Gossypium hirsutum L.) fields infested with purple nutsedge (Cyperus rotundus L.) inhibited nutsedge growth for several weeks and was found selective for cotton. The best nutsedge control was achieved when the herbicide was mechanically incorporated following a preplant broadcast or band application which was activated by a sprinkler irrigation. The rate of benfuresate needed for effective and selective nutsedge control in cotton ranged from 0.80 to 1.60 kg/ha, the higher rates necessary in soils with higher clay and organic matter contents.  相似文献   

15.
Photodegradation of the organophosphorous insecticide quinalphos (O, O-diethyl O-quinoxalin-2-yl phosphorothioate) has been studied. On exposure to natural sunlight, quinalphos was photodegraded with half-lives of 30 days in distilled water, 20–23 days in tap and rain water and ≤5 days in 2% aqueous acetone. Quinalphos underwent photoisomerisation, oxidation from P=S to the P=O group and de-esterification. Photoproducts were isolated and characterised by spectroscopic methods. When applied on soil thin-layer plates quinalphos was promptly dissipated with a half-life of ≤6 days.  相似文献   

16.
The in-vitro metabolism of O,O-diethyl S-(N-methylcarbamoymethyl) phosphorodithioate in mouse liver was studied. The major route of metabolism was via the mixed-function oxidases present in the microsomal fraction, which formed the oxygen analogue, O,O-diethyl hydrogen phosphorothioate and diethyl hydrogen phosphate upon addition of nicotinamide-adenine dinucleotide phosphate (NADPH). In the absence of NADPH, the carboxylic acid analogue (S-carboxymethyl O,O-diethyl phosphorodithioate) was isolated only from the microsomal fraction. Addition of glutathione to the 100 000 g supernatant resulted in no metabolism of the parent compound. However, addition of glutathione to the 10 000 g supernatant resulted in the carboxylic acid formed by amidase activity being further metabolised to O,O-diethyl hydrogen phosphorodithioate by a glutathione-dependent reaction.  相似文献   

17.
The degradation and formation of major chlorinated metabolites of terbuthylazine and atrazine in three soils (loamy clay, calcareous clay and high clay) were studied in laboratory experiments using molecules labelled with 14C on the s-triazine ring. Soil microcosms were treated with the equivalent of 1 kg ha-1 of herbicide and incubated in the dark for 45 days at 20(±1)°C. The quantity of [14C]carbon dioxide evolved in the soils treated with atrazine was negligible and could not be attributed to mineralization of the parent molecule. The mineralization of terbuthylazine accounted for 0·9–1·2% of the initial radioactivity. In the soils studied, the extrapolated half-lives varied from 88 to 116 days for terbuthylazine and 66 to 105 days for atrazine, with no significant differences for the three soils and the two molecules. The deethyl metabolites of the two s-triazines and the deisopropyl-atrazine metabolite appeared during the incubation in the three soils. The completely dealkylated metabolite was not detected in any of the soils. After 45 days of incubation, the non-extractable soil residues for the high clay, loamy clay and calcareous clay soils represented for terbuthylazine, 33·5, 38·3 and 43·1% and for atrazine, 19·8, 20·8 and 22·3% of the initial radioactivity. © 1997 SCI.  相似文献   

18.
The phytotoxicity of some O-alkyl methylphosphonofluoridates has been studied by examining the effects of the compounds and their likely breakdown products on the germination of wheat seed and on the growth of wheat seedlings (14 to 18 days old) in hydroponic culture. The four O-alkyl methylphosphonofluoridates (ethyl; isopropyl; 3,3-dimethylbut-2-yl(pinacolyl) and cyclohexyl) were found to be phytotoxic and the phytotoxicity was shown to be a property of the compounds as such and not of their breakdown products. The phytotoxicity of the phosphonofluoridates was apparently influenced by the nature of the O-alkyl group and tended to increase as follows: ethyl <isopropyl < pinacolyl <cyclohexyl.  相似文献   

19.
Common ragweed (Ambrosia artemisiifolia L.) is one of the annual plants that were described recently as invasive weeds in Europe. This species is described as an invasive plant that produces seeds that are highly variable. Its production of variably sized seeds is regarded as promoting its spread in different environments. Experiments were carried out to determine the influence of the seed weight and temperature on germination and the influence of the seed weight and burial depth on seedling emergence. The seeds were divided into a number of classes of weight and the seed weight effect on germination was evaluated by Petri dish assays. In another experiment, the seeds were buried at different depths in a clay soil/sand mix to estimate the burial effect on germination and seedling emergence. The germination level of A. artemisiifolia was high overall, between 76.8% and 94.2%. The seed germination was modified by temperature but it was not influenced by the seed weight. The amounts of germination and seedling emergence were greater for the seeds on the soil surface and decreased with an increasing burial depth, from 2 to 8 cm. No germination or emergence was observed for the seeds that were buried at 10 and 12 cm. The lightest seeds were more sensitive to burial. A greater level of seedling emergence for those seeds that were placed near the soil surface could explain the success of this species in open habitats, where the probability of deeper burial is low. After high seed production, the management of A. artemisiifolia in fields could be partly achieved through soil tillage, burying seeds below 10 cm, and not carrying out deep soil tillage the following year.  相似文献   

20.
The earthworm, Eisenia foetida, eliminated parathion and carbofuran at first order rates when continually rinsed in water after treatment with the pesticides. This experiment was also carried out on Lumbricus rubellus for comparison. Carbofuran which is more soluble in water, was eliminated quicker than parathion. The later rate of elimination was very similar for the two species, but immediately after injection the rate was much higher in E. foetida. The metabolism of 1-ethyl14C labelled parathion and paraoxon (diethyl 4-nitrophenyl phosphate) was studied in E. foetida. The worm was able to convert parathion to paraoxon by a rather slow process although this metabolite could not be detected in the worms due to its rapid transformation to diethyl hydrogen phosphate. Indirectly, paraoxon can be postulated as a parathion metabolite because of a progressive depression of cholinesterase level observed after treatment with parathion. Small amounts of diethyl hydrogen phosphate were detected as a metabolite of parathion; this is also an indication of paraoxon formation. During the 30 h following injection of parathion, only 4.4% of the applied dose was recovered as water-soluble metabolites (2.8% in the worms and 1.6% in the sand surrounding them), while 52% was recovered as unmetabolised parathion. Because of inefficient injection, only 70-59% of the dose thought to be injected was recovered. Therefore the part of the actual applied dose that remained unmetabolised was probably even greater (88%). Five days after injection of parathion, 15 and 9.3 % of the recovered radioactivity in the surrounding sand and in the worm extracts, respectively, was identified as O,O-diethyl O-hydrogen phosphorothioate, 3.7 and 7.0% as diethyl hydrogen phosphate, 8.8 and 3.3% as O-ethyl O-4-nitrophenyl O-hydrogen phosphorothioate (desethylparathion) and/or O-4-aminophenyl O,O-diethyl phosphorothioate, while 70.3 and 80.4% was unmetabolised parathion. Paraoxon was very quickly hydrolysed to diethyl hydrogen phosphate in vivo and in vitro. The in-vitro hydrolysis was associated with a microsomal fraction and was not inhibited by ethylenediaminetetra-acetic acid or 4-(chloromercuri)benzoic acid, and incompletely by aldicarb. Cholinesterase and arylesterase were therefore excluded as enzymes responsible for the activity.  相似文献   

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