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S E Kunz

Publications and source records attributed to S E Kunz.

At least 19 recordsLinked to original sources

Role of the kdr and super-kdr sodium channel mutations in pyrethroid resistance: correlation of allelic frequency to resistance level in wild and laboratory populations of horn flies (Haematobia irritans).

The kdr and super-kdr point mutations found in the insect sodium channel gene are postulated to confer knockdown resistance (kdr) to pyrethroids. Using an allele-specific PCR assay to detect these mutations in individual horn flies, Haematobia irritans (L.), we determined the allelic frequency of the kdr and super-kdr mutations in several wild and laboratory populations. Wild populations with very similar allelic frequencies had resistance levels that ranged widely from 3- to 18-fold relative to a susceptible population. Conversely, the kdr allele frequency in a lab population with 17-fold resistance was nearly double that found in a heavily pressured wild population with 18-fold resistance. We conclude that, although the kdr mutation confers significant levels of pyrethroid resistance, a substantial component of resistance in insecticidally pressured populations is conferred by mechanisms that are PBO-suppressible. High super-kdr allele frequencies were detected in two resistant lab populations, but in wild populations with equivalent resistance the super-kdr allele frequency was very low. Interestingly, in over 1200 individuals assayed, the super-kdr mutation was never detected in the absence of the kdr mutation.

Alleles↗

Blood-feeding strategy of Haematobia irritans (Diptera: Muscidae).

The economic impact on livestock production by Haematobia irritans (L.) is estimated to approach $1 billion per year in North America. However, there is little information regarding the blood-feeding strategy used by these insects. Information presented here shows that horn fly saliva interferes with the normal coagulation response as measured by the recalcification time assay. The relative anticoagulant activity on a per-gland basis was more than or equal to that reported for Simulium vittatum Zetterstedt, a common hematophagous black fly that also feeds on cattle. However, unlike S. vittatum, H. irritans salivary factors do not inhibit platelet aggregation using apyrase and have no detectable vasodilative activity. In this regard, the horn fly is strikingly different from blood-feeding species in the lower Diptera and shows a much more limited repertoire of antihemostatic factors.

Animals↗

Screening of Haematobia irritans irritans (Diptera: Muscidae) populations for pyrethroid resistance-associated sodium channel gene mutations by using a polymerase chain reaction assay.

A polymerase chain reaction (PCR)-based rapid screening procedure was developed to test individual horn flies, Haematobia irritans irritans (L.), for the presence of a specific nucleotide substitution in the sodium channel gene sequence that has been associated with pyrethroid resistance. By a systematic optimization of reaction conditions and judicious choice of PCR primers differing in DNA sequence by a single nucleotide, we identified pyrethroid-susceptible or resistant sodium channel alleles in individual flies. Laboratory and field populations were examined by both the PCR assay and conventional filter paper bioassays with the pyrethroid cyhalothrin to verify that populations containing greater proportions of individuals with the resistant sodium channel allele DNA sequence also had higher bioassay LC50 values. The PCR assay for resistance alleles gave definitive information on the genotype of an individual fly and detected the presence of heterozygous individuals that might serve as reservoirs of resistance genes in field populations.

Animals↗

Effects of cold stress on survival and reproduction of Haematobia irritans (Diptera: Muscidae).

Adult horn fly, Haematobia irritans (L.), survival, mating success, and ovarian development were measured following exposure of pupae to 4 degrees C for 2, 3, and 4 wk, and were compared with an untreated control group held at 29 degrees C. Survival varied inversely with duration of low-temperature exposure, and ranged from 92.1% in the control to 7.0% following a 4-wk exposure. Mating success also varied inversely with duration of low-temperature exposure, and ovarian development was delayed, especially in the week 4 group. Reproductive and population parameters were measured in a 2nd cohort of horn flies following exposure of pupae to 1-4 wk at 4 degrees C, and in a control. Adult longevity varied inversely with duration of exposure. Mean longevity was greatest in the week 1 group at 17.6 d, followed by the control at 14.7 d. Week 4 flies lived an average of 2.2 d and produced no eggs. The preoviposition period was longest in the week 3 group at 7.3 d. In cohort 2, control and week 1 flies produced the highest number of eggs, eggs per female, and eggs per day compared with other groups. Eggs were produced over a mean of 6.8 d by week 3 flies compared with 25.4 d by week 1 flies. Reproductive rates varied inversely with low-temperature exposure duration, as did F1 generation egg hatch, larval development, and adult emergence. Survivorship and fecundity schedules are discussed with respect to the effects of low-temperature exposure duration. The effects of low-temperature exposure duration on horn fly reproduction and life-history patterns are discussed with respect to rearing, storage, and ecology.

Animals↗

Evaluation of natural Psoroptes ovis (Acarina: Psoroptidae) soluble proteins as candidate vaccine immunogens.

In this study potential vaccine candidate immunogens were identified and evaluated in a vaccine challenge trial. Calves vaccinated with a partially purified fraction of Psoroptes ovis-soluble proteins had 8 of 14 calves free of palpable lesions 8 wk after a challenge infestation. A self-grooming behavioral response elicited by a pruritic immediate-type allergic reaction was believed to be an effector in protecting the vaccinated calves from a clinical P. ovis infestation.

Animals↗

Importance of supercooling points in the overwintering of the horn fly and stable fly (Diptera:Muscidae).

Supercooling points were determined for eggs, 3rd instars, pupae, newly emerged unfed adults and 3-d-old engorged laboratory reared adults of Haematobia irritans (L.) and Stomoxys calcitrans (L.). Wild nondiapausing and diapausing pupae of H. irritans also were tested. Mean supercooling points ranged from -28.0 degrees C for H. irritans eggs to -6.8 degrees C for H. irritans larvae. Mean supercooling points of all H. irritans developmental stages were lower than those of comparable S. calcitrans developmental stages, with the exception of larvae where the reverse was true. The mean supercooling point of diapausing H. irritans pupae (-23.5 degrees C) was significantly lower than those of nondiapausing laboratory pupae (-20.8 degrees C) or nondiapausing wild pupae (-20.2 degrees C). Developmental stages of both species were freeze intolerant, with no survival following exposures to temperatures below the supercooling points. Results are discussed with respect to the disparate overwintering strategies of these species and in relation to typical climatic minima experienced in south central Texas. The cold tolerance of H. irritans and S. calcitrans pupae was compared at 4 degrees C, a temperature below their developmental threshold of 11.5 degrees C and above their mean supercooling points. The survival of H. irritans pupae was significantly greater than the survival of S. calcitrans pupae. Cold injury was a significant mortality factor for both species.

Animals↗

Upper thermal limits for Hypoderma lineatum (Diptera: Oestridae) egg hatching and development.

During periods of Hypoderma lineatum (De Villers) oviposition activity, ambient temperatures reached 28 degrees C and dorsal bovine dermal temperatures exceeded 45 degrees C. Egg hatch decreased linearly with increased constant temperatures from 79% at 35 degrees C to 0% at 39 degrees C. Egg hatch varied from 58 to 80% after 1-, 3-, or 5-h exposures to 40 or 45 degrees C. Exposures of 3 h or more at 50 degrees C were lethal, whereas 66% of all eggs survived 1-h exposures to 50 degrees C. The upper thermal limit for survival at constant temperatures lies between 38 and 39 degrees C, with approximately 53% survival at 37 degrees C. H. lineatum eggs are well adapted to typical temperatures occurring in their natural habitat; however, these temperatures can at times exceed the eggs' upper developmental threshold. This limitation of the host environment may have led to the evolution of adult oviposition preferences for the lower parts of the host animal, shielded from incident solar radiation.

Animals↗

Effects of immersion in water on survival of preimaginal stages of Haematobia irritans (Diptera: Muscidae).

Laboratory studies on effects of immersion and immersion duration on all Haematobia irritans (L.) preimaginal stages revealed a significant disparity in tolerance limits among different developmental stages and in tolerance to different immersion durations (0, 1, 6, 18, and 30 h). Of the 4 preimaginal stages, 2nd instars were most susceptible to immersion of any duration, whereas eggs and pupae were most resistant. All instars were intolerant of immersion durations >6 h, with <10% survival at 6-, 18-, and 30-h immersion durations. Survival of 2nd instars was reduced to 38% by 0-h immersion, when compared with the control group. Adult eclosion was reduced by immersion durations of 18 and 30 h during the pupal stage. Life stage survival was dependent upon immersion duration, with survival generally decreasing as a negative linear function of increasing immersion duration. Immersion durations of 0, 1, 6, 18, and 30 h resulted in overall mortality rates of approximately 30, 37, 53, 61, and 82%, respectively. In wet regions with low elevations, water accumulation may significantly affect horn fly distribution and abundance. In drier regions, where flooding events are sporadic and water accumulation variable, the effect on horn fly populations is uncertain.

Animals↗

Development of resistance to Hypoderma lineatum (Diptera: Oestridae) within a cattle herd.

Three experimental infestations of a herd of 27 cattle with the common cattle grub, Hypoderma lineatum, are described during a 4-yr period. The mean percentage of survival of larvae during internal migration was 67.7% in the initial infestation. In the 2nd infestation 1 yr later, the mean percentage of survival of larvae decreased to 40.5% during internal migration. Although fewer larvae survived to reach the tissues in the back in the 2nd infestation, more larvae in the back tissues survived (27.2%) and 53 more mature larvae (potential adults) were produced during the 2nd than the 1st infestation. The 3rd infestation resulted in no further decrease in larval survival to the back tissues (43%), but significant larval mortality in the back (5.7% survival) reduced the number of mature larvae. After 2 infestations, larval survival to the back tissues had stabilized at approximately 40%, whereas the significant decrease in larval survival in the back tissues during the 3rd infestation indicated that resistance manifested at this stage of the parasite life cycle may be important for H. lineatum population control. We can conclude that development of herd resistance through H. lineatum exposure may require several infestation cycles.

Animals↗

Warble stage development of third instars of Hypoderma lineatum (Diptera: Oestridae).

Hypoderma lineatum (Villers), the common cattle grub, is an insect parasite that resides in a warble in the subcutaneous tissues of the backs of cattle during a portion of their life cycle. Inside the warble, the larva undergoes 2 molts to the 3rd instar. In this study, the development of the posterior spiracular plates of the 3rd instar of H. lineatum was observed in situ. Larvae were observed to molt to the 3rd-instar phase 1 stage of development 28.6 +/- 3.9 d (+/- SD) after digesting a breathing hole in the backs of previously uninfested calves. Development of the spiracular plates through each of the various recognizable stages occurred on a 5-6-d interval. It took 54.2 +/- 5.1 d in the back for larvae to develop to the phase 3 stage, the stage reached before larvae exit the host. The average elapsed time from the 3rd-instar phase 3 stage to exit from the host was 5.5 +/- 2.9 d. Of 22 larvae that were followed from arrival in the back to pupariation, the elapsed time was 59.4 +/- 6.1 d. Most larval mortality occurred in the back during the 1st and 2nd instar. Of larvae surviving to the 3rd instar, 86.7% successfully exited from the host. Of 3rd instars surviving to the phase 2 goldplate or phase 3 stage, 93.3% exited successfully from the host.

Animals↗

Thermal requirements for Hypoderma lineatum (Diptera:Oestridae) egg development.

This study was designed to define lower thermal limits for common cattle grub, Hypoderma lineatum (Villers), egg development. The data collected in this study suggest that embryonic development was prolonged as temperature was lowered. No hatch was observed when eggs were incubated at a constant temperature of 20 degrees C. Measurements of cattle skin temperature and ovipositional behavior of the gravid female fly suggest that eggs are oviposited in a suitable thermal environment for successful embryonic development. Eggs oviposited on cattle held in an unheated barn hatched within 1 wk confirming that cattle can be successfully laboratory infested in unheated barns during winter in central Texas.

Animals↗

Status of Haematobia irritans (Diptera: Muscidae) insecticide resistance in northeastern Mexico.

Horn fly, Haematobia irritans (L.), populations in northeastern Mexico were surveyed for resistance to fenvalerate and coumaphos. Compared with a susceptible strain of horn flies, resistance levels among field populations for the pyrethroid, fenvalerate, ranged from 36 to 199 times at the LD50 level, indicating that horn fly control with pyrethroids would be unsatisfactory. Resistance to the organophosphate compound, coumaphos, was less evident, with flies at only 1 of 5 locations showing levels of tolerance that might interfere with adequate control.

Animals↗

Insecticides and acaricides: resistance and environmental impact.

Insecticides continue to be the primary means of control for ectoparasites on livestock. Intensive use of these materials has led to resistance to organochlorines, organophosphates and pyrethroids among populations of Haematobia irritans irritans, H. irritans exigua and Lucilia cuprina. Similarly, use of acaricides has led to resistance in one-host Boophilus ticks to all currently-used organophosphate-carbamates, synthetic pyrethroids and amidines. Resistance in multi-host ticks is less widespread. New chemicals are available for the control of resistant ectoparasites, but there are concerns over resistance and residues problems, which prompt the authors to discuss new pest management strategies. Environmental concerns are raised regarding the use of pesticides on livestock.

Animals↗

Dynamics of permethrin resistance in a colony of horn flies (Diptera: Muscidae).

A colony of horn fly, Haematobia irritans (L.), was established from field-collected, resistant flies. Changes in resistance levels were monitored under a regimen with and without insecticide pressure. The colony remained closed with no introduction of susceptible flies. In the absence of permethrin pressure, resistance levels dropped to 2.5 times from an initial level of 17 times at LC50 and remained at that level from generation 12 through 33. In the presence of various insecticide pressure regimens, resistance increased to 500 times at LC90 by generation 86. In a separate study, susceptible colony flies were subjected to permethrin pressure, with first resistance evident in generation 16 and increasing to greater than 100 times at LC90 in generation 88.

Animals↗

Use of sterile insect releases in an IPM program for control of Hypoderma lineatum and H. bovis (Diptera: Oestridae): a pilot test.

A joint Canadian-U.S. pilot test study was conducted for 4 yr on about 3,800 km2 on the Montana-Alberta border to determine the effect of sterile male releases on Hypoderma lineatum (Villers) and H. bovis (L.) populations remaining after initial chemical treatments. Chemical treatments initially reduced populations, making sterile male releases more efficient. Insect material for release was obtained from yearling animals held in confinement, an expensive, labor-intensive method of production. Sterile males of H. lineatum were released in one-half of the study area and sterile males of H. bovis were released in the other half. The unsterilized species in each half served as a control. Although the number of sterile males released was limited (265-462 yr), each species was eliminated in its respective release area, whereas the control species was not.

Alberta↗