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Infectivity of the Santa Lucia (El Salvador) strain of Plasmodium falciparum to different anophelines.

Anopheles freeborni mosquitoes were much more heavily infected with the Santa Lucia strain of Plasmodium falciparum from coastal El Salvador than were any of the other species tested. Of 5 strains of A. albimanus examined, the most heavily infected was the CA-109A and the least was the Melara, both of which come from coastal El Salvador. Of the exotic anophelines, the A. maculatus was infected at a slightly higher level than was the A. balabacensis. The incidence of highly infected individual mosquitoes was greatest in the Panama-Escobal strain of A. albimanus from the Republic of Panama; the incidence was lowest in the Melara strain from El Salvador. All strains of A. albimanus developed infected salivary glands, but the A. freeborni and A. maculatus mosquitoes appeared to develop infected glands more effeciently. Infection rates in A. freeborni mosquitoes were highest if mosquitoes were fed on Aotus trivirgatus monkeys between the 19th and 25th days of patent gametocytemia.

Animals

Infectivity of falciparum malaria patients for anopheline mosquitoes before and after chloroquine treatment.

The infectivity of 25 falciparum malaria patients for Anopheles balabacensis and Anopheles minimus, before and after chloroquine therapy, was studied in central Thailand. The proportion of patients infective for these mosquitoes was not affected by the administration of chloroquine, however, an elevation was observed in the median values for the numbers of oocysts on the guts of the A. balabacensis, but not the A. minimus, fed on infective patients after initiation of treatment.

Adolescent

Infectivity of Plasmodium simium to Aotus trivirgatus monkeys and different anophelines.

Infections of Plasmodium simium were induced in splenectomized and intact Aotus trivirgatus griseimembra monkeys by parasitized blood and by sporozoites from Anopheles freeborni mosquitoes. Eleven of 13 monkeys developed infection after sporozoite inoculation; prepatent periods ranged from 11 to 25 days (mean 15.8 days). Comparative infectivity studies indicated that An, freeborni mosquitoes were the most susceptible followed by An. stephensi, An. Balabacensis balabacensis, An. maculatus, An. quadrimaculatus, An. culicifacies, and An. albimanus. Studies with 3 pupal phenotypes of An. freeborni indicated that lines containing the green and nonstriped pupal phenotypes were more susceptible than the base colony; the striped phenotype was slightly less susceptible.

Animals

Evolution and assembly of Anopheles aquasalis's immune genes: primary malaria vector of coastal Central and South America and the Caribbean Islands.

Anophelines are vectors of malaria, the deadliest disease worldwide transmitted by mosquitoes. The availability of genomic data from various Anopheles species allowed evolutionary comparisons of the immune response genes in search of alternative vector control of the malarial parasites. Now, with the Anopheles aquasalis genome, it was possible to obtain more information about the evolution of the immune response genes. Anopheles aquasalis has 278 immune genes in 24 families or groups. Comparatively, the American anophelines possess fewer genes than Anopheles gambiae s. s., the most dangerous African vector. The most remarkable differences were found in the pathogen recognition and modulation families like FREPs, CLIP and C-type lectins. Even so, genes related to the modulation of the expression of effectors in response to pathogens and gene families that control the production of reactive oxygen species were more conserved. Overall, the results show a variable pattern of evolution in the immune response genes in the anopheline species. Environmental factors, such as exposure to different pathogens and differences in the microbiota composition, could shape the expression of this group of genes. The results presented here will contribute to a better knowledge of the Neotropical vector and open opportunities for malaria control in the endemic-affected areas of the New World.

Animals

Genomic profiling of digestion related enzymes in Anopheles aquasalis a major coastal neotropical malaria vector.

Digestive genes are fundamental for the development and survival of mosquitoes and can serve as a target for the development of strategies for mosquito control or vector-borne disease prevention. Genes related to digestion were identified in the genome of the neotropical malaria vector Anopheles aquasalis by similarity. We used reciprocal BLAST with annotated digestion proteins for Anopheles gambiae. Orthology and evolutionary analyses were performed using MEGA with a bootstrapped phylogenetic tree constructed by the neighbor-joining method, and copy number variation was measured by the standard deviation of the average copy number in each gene family. We identified 241 genes related to digestion in An. aquasalis: 56 genes related to carbohydrate digestion, 51 genes for lipid digestion, and 134 genes for protein digestion. Phylogenetic relationships with other anophelines show that An. aquasalis genes are closely related to those of neotropical mosquitoes Anopheles darlingi and Anopheles albimanus. Orthologous gene clusters are conserved in important families of all four species. Some of these conserved genes are of interest for studies on controlling mosquito vectors, such as larvicidal toxin receptor genes, alpha-amylase, alpha-glucosidase, and maltase; important target genes for transmission-blocking vaccines, such as aminopeptidase N1 and carboxypeptidase B; and the major intestinal serine proteases, such as trypsins and chymotrypsins, which can positively or negatively affect Plasmodium development in the midgut. These data provide a better understanding of digestion-related genes in American anopheline mosquitoes and may support further fundamental and applied studies aimed at malaria control.

Animals

A study of the host selection patterns of the mosquitoes of the Kisumu area of Kenya.

The results of 12,168 precipitin tests on blood meals of mosquitoes of the Kano Plain caught by a variety of catching techniques indicate that to gain an accurate overall picture of feeding patterns both the indoor and the outdoor biotope must be sampled. CDC light traps operated inside houses and Monkswood type light traps operated under the outside eaves of houses were found to collect larger numbers of blood fed specimens from a wider range of species than battery driven aspirators collecting from natural resting sites. The results indicated that 7 mosquito species entered houses to bite man in appreciable numbers in the Kisumu area. These were Anopheles gambiae s.l., A. funestus, A. pharoensis, Mansonia uniformia, M. africana, Culex antennatus, and C. univittatus. Eight mosquito species were found to bite man and domestic animals in the outdoor biotope in large numbers. These were: A. pharoensis, A. ziemanni, M. uniformis, M. africana, C. antennatus, C. univittatus, Aedes circumluteolus, and Ae. ochraceus. From an epidemiological point of view, species with a narrow range of hosts are most likely to be of importance as vectors of parasitic diseases such as malaria and into this category fall the major man biting anophelines A. gambiae and A. funestus. Those mosquito species which switch from one group of hosts to another according to local circumstances are most likely to be involved in arbovirus transmission and in this group the following species must be considered: A. pharoensis, A. ziemanni, M. uniformia, M. africana, C. antennatus, C. univittatus and Ae. circumluteolus.

Animals

The natural decline of Wuchereria bancrofti infection in a vector control situation in the Solomon Islands.

In a situation where filariasis and malaria are transmitted by the same vector, as seen here in the Solomon Islands, the Malaria Eradication Programme aimed at controlling the vector, was found to have an effect on both diseases. In an area of Choiseul island first surveyed by the author in 1970, three follow-up surveys were conducted--in 1974, 1975 and 1976. These showed a progressive decrease in persons infected. When the densities, especially the median microfilarial counts, were expressed as percentage values of the pre-spray survey, there was found to be a proportional decrease over eight years. It is possible that the Anopheline vector needs to be reduced less for the cessation of transmission of filariasis than for malaria. A theoretical ratio was calculated and supporting field evidence presented.

Age Factors

The action of lecithin monolayers on mosquitoes I. General observations.

Monolayers of pure egg-lecithin at maximum equilibrium pressure were tested against eight species of mosquito in the laboratory, Anopheline larvae were prevented from surfacing and died in water of low dissolved oxygen content, but culicine larvae survived. The pupae of all species except Culex p. fatigans were killed. Effects on floating eggs, pupal-adult eclosion and adult behaviour are also reported.

Animals

Malaria of the orang-utan (Pongo pygmaeus) in Borneo.

The primary objective of this project was to study the life cycle and ecology of Plasmodium pitheci, a malaria parasite of the orang-utan. The field work was based on the orang-utan rehabilitation centre in the Sepilok Forest Reserve of eastern Sabah. Two visits were made to Sepilok, the first in February and March, 1972, and the second (by W.P.) in January 1974. On the first visit two species of "surrogate host" were taken to Sabah, i.e. chimpanzees and Aotus monkeys for experimental work. The arboreal habitat of the orang-utan in the dipterocarp forests of eastern Sabah is described. In the Sepilok Forest Reserve dwell gibbons and leaf-monkeys, in addition to a small population of semi-domesticated and wild, free-ranging orang-utans of various ages. Although numerous species of anopheline mosquitoes have been collected in eastern Sabah, longitudinal studies are not available. Anopheles balabacensis was caught both attracted to orang-utans and to man at Sepilok. This species which is the main vector of human malaria in the north of Borneo, is suspected also of transmitting orang-utan malaria in this part of Sabah. Repeated blood examinations have been made on a number of orang-utans in the centre since 1966 and a high prevalence of infection was recorded with Plasmodium pitheci. In 1966 10 out of 19 animals had demonstrable parasitaemia. Detailed case histories are presented to show the course of parasitaemia in several orang-utans. Infections of P. pitheci were found to run a very chronic course. During the 1972 expedition a second, previously undescribed malaria parasite of the orang-utan was discovered, and was named P. silvaticum. The new parasite was successfully transmitted both by blood inoculation and, later, by sporozoite inoculation, into splenectomized chimpanzees. Although both species of malaria parasite may cause transitory signs of illness, orang-utans in general appear to be little discomforted by the infection. The animals do however suffer from other infectious diseases such as amoebic and balantidial dysentery, and melioidosis is a serious natural hazard which may have accounted for several deaths of wild orang-utans. An unidentified, intraerythrocytic structure that appeared in the blood of one chimpanzee, which had been inoculated with blood from an orang-utan, may have contributed to its death. Detailed descriptions and illustrations of P. pitheci and P. silvaticum are given. All stages of the life cycle of P. silvaticum are known (the tissue stages having been described in the liver of a "surrogate host", the chimpanzee) but only the blood and sporogonic stages of P. pitheci have been seen. This species was not infective to a chimpanzee, although there is an earlier report of a transient infection in this host by other workers. In the blood both parasites showed a tertian periodicity. From the appearance of the tissue schizonts on the seventh day it was estimated that the complete pre-erythrocytic cycle of P. silvaticum in the chimpanzee would occupy 8 days. P...

Animals

Rasputin/G3BP mediates subversion of antiviral immunity by o'nyong-nyong virus in Anopheles coluzzii.

Cellular G3BP proteins are essential for alphavirus infection in both vertebrate and mosquito hosts, but the underlying mechanism of their proviral activity is poorly understood in any host. Whether the mosquito G3BP ortholog, Rasputin (Rin), interacts with host immunity to influence alphavirus infection has not been investigated, and anopheline mosquito interactions with arboviruses have been little studied. Here, we find that Rin silencing in Anopheles mosquitoes results in decreased ONNV infection levels, indicating a proviral activity for Anopheles Rin. We find that Rin function is required to maintain basal activity of the antiviral Imd and JAK/STAT pathways in uninfected mosquitoes. However, during ONNV infection, the control of the Imd pathway by Rin activity appears corrupted because Rin silencing leads to overexpression of the Imd positive regulator, Rel2. Thus, silencing of Rin both augments Rel2 transcript abundance and decreases ONNV load. Co-silencing of Rel2 with Rin restores normal ONNV infection levels, indicating that Rin activity is required to inhibit Imd function during ONNV infection, and which explains most of the Rin proviral phenotype. In addition, we show that the ONNV non-structural protein 3 (nsP3), which binds to Rin, strongly alters the pattern of Anopheles cellular protein partners interacting with Rin. In the presence of ONNV nsP3, 48 Rin-binding host proteins are unchanged but seven binding proteins are excluded and eight new cellular proteins bind Rin. The altered cellular protein partners are candidate host factors involved in viral subversion of Rin control over Imd activity. Overall, these results reveal a molecular mechanism in which ONNV, probably through nsP3, co-opts the normal Rin function for basal cellular immune activity by subverting the Imd antiviral pathway to promote infection. These results may be generalizable for Rin function during alphavirus infection of other mosquitoes, as well as for G3BP function in the mammalian host, and could offer a target for development of vector-based genetic control tools against arbovirus transmission.

Animals

Infection and transmission studies with Plasmodium simiovale in the Macaca mulatta monkey.

Six different anophelines--Anopheles freeborni, An. b. balabacensis, An. maculatus, An. stephensi, An. atroparvus, and An. quadrimaculatus--were shown to be susceptible to infection with Plasmodium simiovale when fed upon splenectomized Macaca mulatta monkeys between the 1st and 26th days of patent parasitemia. Transmission was obtained via the bites of An. b. balabacensis and An. maculatus mosquitoes. Prepatent periods in M. mulatta monkeys following sporozoite inoculation ranged from 11 to 20 days with a median of 14 days.

Animals

[The concept of risk in parasitic diseases with special reference to malaria (author's transl)].

The concept of risk, its components and their interrelationship are described. Emphasis has been placed on the value of the variables to be taken into account in the selection of intervention measures: -- for the mosquito: the daily frequency of blood meals taken from man, the duration of the sporogonic cycle, the daily survival rate and the proportion of people with gametocytes in the peripheral blood; -- for man: the number of anophelines feeding on man in a unit of time, the proportion of mosquitoes with sporozoïtes in their salivary glands and the proportion of sporozoïtes able to infect man. Using these variables, it is possible to calculate the various risks incurred both by man and vector. Whenever possible and in order to be of greater value, the interventions should be directed against the variable which have the highest power. However, in view of the complexity of relations, it is better to construct a mathematical model able to simulate with the use of a computer, real epidemiological situations. A model has been recently developed for the study of the malaria dynamics and for the comparative evaluation of various methods of control.

Animals

Responses of Anopheles minimus to DDT residual spraying in a cleared forested foothill area in central Thailand.

Anopheles balabacensis balabacensis and Anopheles minimus are the main malaria vectors in Thailand. In a cleared forested foothill area in the central part of the country A. minimus was the most prevalent anopheline species found, only 6 specimens of A. b. balabacensis being collected over a 3-year period. Cattle were scarce in the area, tractors being largely used for working in the fields. This situation contributed to high man-vector contact. A minimus occurred throughout the year, with a major peak of density in the dry cool season and a smaller peak in the wet season. The contact of A. minimus with man was much higher outdoors than indoors, and studies showed the species to be an early biter, especially in the dry season, thus increasing the chance of man-vector contact. DDT spraying appeared to reduce considerably the estimated vectorial capacities, however, this effect was not maintained and malaria transmission was not interrupted. Trials with supplementary or alternative attack measures are therefore indicated in this particular ecological situation.

Animals

[The question of endemic malaria in Republic of Djibouti (author's transl)].

Since 1973 autochthonous cases of malaria due to P. Falciparum have been reported among local population of French Afars and Issas Territory; 191 cases observed between 1973 and 1976 are recorded. Their monthly distribution and geographical repartition are studied, jointly with the distribution of A. gambiae which has been recently collected in the Territory. This study shows a significant correspondance between the presence of A. gambiae and the malaria cases observed which did not come from neighbouring countries. We may, then, expect the development of small disseminated foci, resulting from the simultaneous introduction of both the parasite and its anopheline vector. This brings about a new epidemiological situation for the Territory.

Africa, Eastern

Specific vector control methods for prevention and eradication of malaria in Israel.

Wide-scale antimalaria activities have been continuously carried out in Israel since 1918. Regular checking and tracing of Anopheles provided important information on the seasonal appearance, life habits, flight range and population density of the malaria vectors. This method enabled us at any time to assess the degree of malaria risk and the effectiveness of the control measures taken. Specific methods of vector control were applied in accordance with the bionomy of the various Anophelines transmitting malaria. No resistance of local malaria vectors to DDT was found in 1961, probably due to the general use of larvicides not containing residual insecticides (including DDT) and the mode of indoor DDT application; spraying in selected localities and special timing in accordance with the bionomy of the local vectors. The relation between the changed status of the various Anopheles vectors and changes in the epidemiology of primary malaria cases in the course of time is also described. Malaria eradication in Israel was practically achieved in 1962.

Animals