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Studies on the attraction of Simulium damnosum s.l. (Diptera: Simuliidae) to its hosts. I. The relative importance of sight, exhaled breath, and smell.

Four traps used in capturing hunting female S. damnosum s.l. are discribed: the slat trap, the enclosure trap, the fan trap, and the sticky trap. In forest a man hidden inside a trap, but removing his exhaled breath through a long hose, attracted 4 times as many flies as did an unbaited trap. When the man exhaled normally into the trap the number of flies taken rose again by a further factor of 4. Carbon dioxide gas, emitted from inside the trap attracted some two-thirds as many flies as a man exhaling normally inside the trap. In both forest and Sudan-savanna environments the catches of a man stationed on an open stretch of land and fully exposed to view while his exhaled breath was removed through a long hose, were not substantially lower than those of a man in a similar situation who exhaled normally. In forest a motionless man, partly hidden among vegetation, attracted fewer flies than a moving man who was fully exposed to view (a) when both men removed their exhaled breath through long hoses, and (b) when they exhaled normally. In the forest a trap baited with CO2 gas (250 cc per min) caught more flies than a similar, unbaited trap, but the preformance of CO2-baited traps, as compared with that of human collectors, was highly variable. Catches in CO2-baited traps were uniformly low in the Sudan-savanna. In forest, removal of olfactory substances from the human skin, by vigorous washing and application of petroleum jelly, or by wearing impermeable clothing, greatly reduced the numbers of flies attracted. No such reduction was observed in Sudan savanna. In the forest, cloths, worn by men for several days and then used as bait, attracted about 10 times as many flies as did similar, unworn cloths. Addition of CO2 gas produced a 4-fold increase in the attractiveness of worn cloths and an 18-fold increase in that of unworn cloths. No corresponding experiments were done in the savanna. Fan traps could become contaminated by human handling during the assembly and setting-up procedures. They were thus rendered attractive to flies. In the Sudan-savanna, the catches of men positioned in front of warm rock surfaces were lower than those of men stationed on coller, sandy surfaces. This suggests that body heat may be an additional attractant factor. The results suggest that "forest" S. damnosum s.l. (presumably S. squamosum) females rely heavily on smell as an attractant and, to a lesser extent, on sight and exhaled breath. Smell appears to be the only obligatory attractant, and it can act by itself. This raises the possibility that a trap might be developed which incorporates only smell stimuli as bait. For "savanna" S. damnosum s.l. (presumably S. damnosum s.s.) neither smell nor exhaled breath appear to be important attractants, and some other factor, perhaps sight, appears to be the dominant attractant in this zone.

Air↗

Testing the susceptibility of Simulium damnosum (Diptera: Simuliidae) to insecticides in the laboratory and in the field.

There are several methods for measuring the susceptibility of blackfly larvae to insecticides. In 1970 the provisional method suggested by the World Health Organization was used with a view to establishing baseline data on the susceptibility of S. damnosum larvae to insecticides; this method was found to be unsuitable. Thereafter, attempts were made to develop a reliable susceptibility testing method for S. damnosum. This report describes the method that yielded the best results in the laboratory; a second method suitable for use in the field is also described. The results from several replicates of such tests gave reasonably straight log-dosage-probit-mortality curves from which values of LC(50) could be calculated. The overall control mortality in the laboratory series of tests was about 9% and that in the field series was about 4%.

Animals↗

[Infection of blackflies (Simuliidae) with microsporidians in the Ob and Irtysh reservoirs].

Of 6 species of black flies from 6 water bodies microsporidians P. simulii, P. debaisieuxi and Th. varians are reported only in four species, B. maculata, Sch. pusilla, S. morsitans and S. argyreatum. Peculiarities in the infection of black flies larvae with microsporidians in various types of water bodies within a season were established. Under experimental conditions P. simulii and P. debaisieuxi cause mortality of larvae (68 to 87%) and decrease in the emergence of imago (5 to 19.6%).

Animals↗

[Modification of the usual method of detecting the state of blackfly (Simuliidae) larval infestation with microsporidians].

At a water temperature fo +1 to +4 degrees black flies larvae and microsporidians from them develop asynchronously that can be used for the diagnostics of microsporidiosis. The infection rate of black flies larvae increases after their being maintained at a temperature of +1 to +4 degrees during 8 days. This is 2.5-3 times higher as compared to the infection rate determined by the known method just after the sampling.

Animals↗

Chromosomal identification of eight species of the subgenus Edwardsellum near and including Simulium (Edwardsellum) damnosum Theobald (Deptera: Simuliidae).

Examinations of the banding pattern of polytene chromsomes from larval salivary glands of the population in west Africa once thought to be a single species, Simulium (Edwardsellum) damnosum, revealed eight species all within the Nile subgroup of the complex. The following names were proposed: S. (E.) squamosum Enderlein, S. (E.) yahense n.sp., S. (E.) soubrense n.sp., S. (E.) sanctipauli n.sp., S. (E.) dieguerense n.sp., S. (E.) damnosum Theobald, S. (E.) sirbanum n.sp. and S. (E.) sudanense n.sp. Micromorphological characters by which there species are distinguished include interspecific inversions, different sets of intraspecific inversions, different sets of sex chromosomes and a few micromorphological features other than the banding pattern. By following the logical sequential development of interspecific inversions both a key to the species and a phylogenetic chart have been drawn up. Analysis of the proportions of alternate sequences for random distribution or not with ther Hardy-Weinberg equation have confirmed the existance of distinct populations, uncovered an example of incipient speciation and showed the existance of a genetic variant of S. damnosum which could possible colonize below dams.

Africa, Western↗

[The karologic method in the taxonomic diagnosis of the genus Wilhelmia End. (Simuliidae, Diptera)].

Karyotypes of Similidae of the Wilhelmia genus were studied on polytene chromosomes. Reasonableness of their distribution in the two groups, was confirmed. W. lineata, W. veltistshevi and W. paraequina transcaucasica, according to their karyological signs (uniting of the chromosomes by centromeres, absence of the extended zone in the chromosome I, puffs at the ends of the IIS and their localization in different areas, high inverse polymorphism), should be excluded from the equina group and included into the salopiensis group.

Animals↗

Present progress towards the laboratory colonization of African Simuliidae (Diptera).

The laboratory colonization of African simuliids would facilitate critical work on many aspects of their biology and onchocerciasis vectors could be studied away from natural breeding-sites. In addition to a review of the literature of past achievements in this field, the authors' own studies are described: these centred on the Simulium damnosum and S. neavei complexes because they include vectors of human onchocerciasis. Other species studied included vectors of Onchocerca gutturosa and avian Haematozoa. Techniques for collecting the various developmental stages of African simuliids are discussed. Adult simuliids may be kept singly in small containers, or together in larger vessels, and fed on sugar-solutions, fruits or flowers. Only two members of the S. damnosum complex (one not yet identified) and one S. bovis complex species are so far known to mate in captivity. Many African simuliids have been blood-fed in captivity from sources including blood-soaked filter paper, birds, rabbits, man and the McMahon feeding apparatus, but results have been inconsistent and a few species have rarely taken blood. Blood/sugar mixtures have given better results, but in most cases normal oogenesis has not subsequently occurred. Some African simuliids lay eggs when kept in tubes, while others do so if placed in water and/or after decapitation. Although some females either fail to oviposit or retain many eggs, others lay a large number, but usually not all develop. The eggs of one species have been temporarily stored at low temperatures, but required protection from fungal attack. Larval development requires adequate water-flow and correct hydro-chemical conditions. Various rearing techniques are described. An apparatus in which the conditions of the water may be regulated has recently been modified for use with the S. damnosum complex and three members of the complex have been reared successfully so far. The Kibwezi form of the S. damnosum complex has been successfully induced to complete every stage of its life-cycle in the laboratory. The reduction of wastage throughout the life-cycle is now being attempted.

Africa↗

[New subspecies of Prosimulium macropyga korshunovi Patrusheva subsp. n. (Diptera, Simuliidae) from the Polar Urals].

A new subspecies, Prosimulium macropyga korshunovi Patr. subsp. n., from the Polar Urals differs from other forms of P. macropyga (Lundstr.) and allied species in having two dark longitudinal stripes on the dorsum and by the structure of genitalia in adult insects, by the number of setae in the great flabellum, by the structure of submentum and shape of the ventral incision in larvae and by the branching pattern of respiratory threads in pupa.

Animals↗