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1.
Mol Biol Evol ; 40(8)2023 08 03.
Article in English | MEDLINE | ID: mdl-37494292

ABSTRACT

Though the phylogenetic signal of loci on sex chromosomes can differ from those on autosomes, chromosomal-level genome assemblies for nonvertebrates are still relatively scarce and conservation of chromosomal gene content across deep phylogenetic scales has therefore remained largely unexplored. We here assemble a uniquely large and diverse set of samples (17 anchored hybrid enrichment, 24 RNA-seq, and 70 whole-genome sequencing samples of variable depth) for the medically important assassin bugs (Reduvioidea). We assess the performance of genes based on multiple features (e.g., nucleotide vs. amino acid, nuclear vs. mitochondrial, and autosomal vs. X chromosomal) and employ different methods (concatenation and coalescence analyses) to reconstruct the unresolved phylogeny of this diverse (∼7,000 spp.) and old (>180 Ma) group. Our results show that genes on the X chromosome are more likely to have discordant phylogenies than those on autosomes. We find that the X chromosome conflict is driven by high gene substitution rates that impact the accuracy of phylogenetic inference. However, gene tree clustering showed strong conflict even after discounting variable third codon positions. Alternative topologies were not particularly enriched for sex chromosome loci, but spread across the genome. We conclude that binning genes to autosomal or sex chromosomes may result in a more accurate picture of the complex evolutionary history of a clade.


Subject(s)
Reduviidae , Animals , Phylogeny , Biological Evolution , Genome , X Chromosome/genetics
2.
Biol Lett ; 19(4): 20220608, 2023 04.
Article in English | MEDLINE | ID: mdl-37122198

ABSTRACT

Tool-use in animals is a complex and rare phenomenon, particularly in insects. Tool-use in assassin bugs has been suggested as several species apply adhesive plant resins to their body, which has been hypothesized to function in enhancing prey capture. Here, we staged predatory interactions of resin-deprived and resin-equipped assassin bugs (Gorareduvius sp.) and discovered that applying resin as a tool conveys a clear predatory advantage to the assassin bugs. Gorareduvius sp. can thus be considered a tool-user, and since this behaviour was present in all individuals, including newly hatched nymphs, tool-use can be considered to be stereotyped. Our study, along with others, suggests that, when compared with other insects, tool-use is disproportionately common within the assassin bugs.


Subject(s)
Reduviidae , Animals , Insecta , Predatory Behavior , Resins, Plant , Nymph
3.
Int J Mol Sci ; 24(7)2023 Mar 28.
Article in English | MEDLINE | ID: mdl-37047319

ABSTRACT

Several cytogenetic studies have already been performed in Triatominae, such that different karyotypes could be characterized (ranging from 2n = 21 to 25 chromosomes), being the changes in the number of chromosomes related mainly to fusion and fission events. These changes have been associated with reproductive isolation and speciation events in other insect groups. Thus, we evaluated whether different karyotypes could act in the reproductive isolation of triatomines and we analyzed how the events of karyotypic evolution occurred along the diversification of these vectors. For this, experimental crosses were carried out between triatomine species with different karyotypes. Furthermore, based on a phylogeny with 88 triatomine taxa (developed with different molecular markers), a reconstruction of ancestral karyotypes and of anagenetic and cladogenetic events related to karyotypic alterations was performed through the ChromoSSE chromosomal evolution model. All crosses performed did not result in hybrids (prezygotic isolation in both directions). Our modeling results suggest that during Triatominae diversification, at least nine cladogenetic events may be associated with karyotype change. Thus, we emphasize that these alterations in the number of chromosomes can act as a prezygotic barrier in Triatominae (karyotypic isolation), being important evolutionary events during the diversification of the species of Chagas disease vectors.


Subject(s)
Chagas Disease , Reduviidae , Triatominae , Animals , Triatominae/genetics , Reduviidae/genetics , Chagas Disease/genetics , Karyotype , Phylogeny , Chromosome Aberrations , Disease Vectors
4.
Med Vet Entomol ; 36(1): 66-80, 2022 03.
Article in English | MEDLINE | ID: mdl-34730244

ABSTRACT

The subfamily Triatominae (Hemiptera-Reduviidae) includes more than 150 blood-sucking species, potential vectors of the protozoan Trypanosoma cruzi, causative agent of Chagas disease. A distinctive cytogenetic characteristic of this group is the presence of extremely stable chromosome numbers. Unexpectedly, the analyses of the chromosomal location of ribosomal gene clusters and other repetitive sequences place Triatominae as a significantly diverse hemipteran subfamily. Here, we advance the understanding of Triatominae chromosomal evolution through the analysis of the 45S rDNA cluster chromosomal location in 92 Triatominae species. We found the 45S rDNA clusters in one to four loci per haploid genome with different chromosomal patterns: On one or two autosomes, on one, two or three sex chromosomes, on the X chromosome plus one to three autosomes. The movement of 45S rDNA clusters is discussed in an evolutionary context. Our results illustrate that rDNA mobility has been relatively common in the past and in recent evolutionary history of the group. The high frequency of rDNA patterns involving autosomes and sex chromosomes among closely related species could affect genetic recombination and the viability of hybrid populations, which suggests that the mobility of rDNA clusters could be a driver of species diversification.


Subject(s)
Chagas Disease , Reduviidae , Triatominae , Animals , Chagas Disease/veterinary , Chromosomes , DNA, Ribosomal/genetics , Triatominae/genetics
5.
Med Vet Entomol ; 35(3): 478-483, 2021 09.
Article in English | MEDLINE | ID: mdl-33340140

ABSTRACT

The study of intestinal microbiota in vector insects like triatomines is paramount in parasitology because many parasitic species inhabit the vector's gut. Although knowledge on the gut microbiota in various vectors of the parasitic flagellate Trypanosoma cruzi has grown, research efforts have focused on South American triatomines. This study reports the isolation of bacterial microbiota in the anterior and posterior gut of Meccus pallidipennis (a triatomine species endemic to Mexico) by culture, as well as its identification by phenotypic and biochemical tests and its quantification by counting colony-forming units. The study was performed on fifth-instar nymph and adult specimens of M. pallidipennis, either laboratory-bred or collected in the field and either infected or not with T. cruzi. Overall, 17 bacterial species were identified, with the genera Bacillus and Staphylococcus being the most prevalent regardless of the origin of the insects. No differences were observed in the number of bacterial species in the gut of laboratory-bred and field-collected insects, neither with respect to life stage or infection status. In general, the Shannon-Weaver diversity index was higher in non-infected insects than in infected ones. Further studies using non-culture methods are required to determine whether bacterial species diversity is modified by laboratory breeding.


Subject(s)
Chagas Disease , Reduviidae , Triatoma , Triatominae , Trypanosoma cruzi , Animals , Bacteria , Chagas Disease/veterinary , Insect Vectors , Mexico
7.
Mol Cell Proteomics ; 16(4): 552-566, 2017 04.
Article in English | MEDLINE | ID: mdl-28130397

ABSTRACT

Assassin bugs (Hemiptera: Heteroptera: Reduviidae) are venomous insects, most of which prey on invertebrates. Assassin bug venom has features in common with venoms from other animals, such as paralyzing and lethal activity when injected, and a molecular composition that includes disulfide-rich peptide neurotoxins. Uniquely, this venom also has strong liquefying activity that has been hypothesized to facilitate feeding through the narrow channel of the proboscis-a structure inherited from sap- and phloem-feeding phytophagous hemipterans and adapted during the evolution of Heteroptera into a fang and feeding structure. However, further understanding of the function of assassin bug venom is impeded by the lack of proteomic studies detailing its molecular composition.By using a combined transcriptomic/proteomic approach, we show that the venom proteome of the harpactorine assassin bug Pristhesancus plagipennis includes a complex suite of >100 proteins comprising disulfide-rich peptides, CUB domain proteins, cystatins, putative cytolytic toxins, triabin-like protein, odorant-binding protein, S1 proteases, catabolic enzymes, putative nutrient-binding proteins, plus eight families of proteins without homology to characterized proteins. S1 proteases, CUB domain proteins, putative cytolytic toxins, and other novel proteins in the 10-16-kDa mass range, were the most abundant venom components. Thus, in addition to putative neurotoxins, assassin bug venom includes a high proportion of enzymatic and cytolytic venom components likely to be well suited to tissue liquefaction. Our results also provide insight into the trophic switch to blood-feeding by the kissing bugs (Reduviidae: Triatominae). Although some protein families such as triabins occur in the venoms of both predaceous and blood-feeding reduviids, the composition of venoms produced by these two groups is revealed to differ markedly. These results provide insights into the venom evolution in the insect suborder Heteroptera.


Subject(s)
Arthropod Venoms/genetics , Arthropod Venoms/metabolism , Reduviidae/metabolism , Animals , Evolution, Molecular , Gene Expression Profiling/methods , Phylogeny , Proteomics/methods , Reduviidae/genetics , Sequence Analysis, RNA
8.
Wilderness Environ Med ; 30(1): 63-65, 2019 Mar.
Article in English | MEDLINE | ID: mdl-30638665

ABSTRACT

A 47-y-old man was bitten by a reduviid bug from the Zelus Fabricius, 1803 genus, which was hidden inside a rubber-coated boot. The bite caused immediate and sharp pain, followed by local edema and constant pruritus for 15 d. Pain and fever within the first 24 h were managed with analgesics as needed, and resolution was complete and without sequelae after 21 d.


Subject(s)
Insect Bites and Stings/pathology , Reduviidae/physiology , Animals , Anti-Inflammatory Agents, Non-Steroidal/therapeutic use , Dipyrone/therapeutic use , Fever/drug therapy , Fever/etiology , Humans , Male , Middle Aged , Pain/drug therapy , Pain/etiology , Pruritus
9.
Med Vet Entomol ; 32(1): 1-13, 2018 03.
Article in English | MEDLINE | ID: mdl-28857300

ABSTRACT

In order to assess how triatomines (Hemiptera, Reduviidae), Chagas disease vectors, are distributed through Latin America, we analysed the relationship between the ecological niche and the limits of the physiological thermal niche in seven species of triatomines. We combined two methodological approaches: species distribution models, and physiological tolerances. First, we modelled the ecological niche and identified the most important abiotic factor for their distribution. Then, thermal tolerance limits were analysed by measuring maximum and minimum critical temperatures, upper lethal temperature, and 'chill-coma recovery time'. Finally, we used phylogenetic independent contrasts to analyse the link between limiting factors and the thermal tolerance range for the assessment of ecological hypotheses that provide a different outlook for the geo-epidemiology of Chagas disease. In triatomines, thermo-tolerance range increases with increasing latitude mainly due to better cold tolerances, suggesting an effect of thermal selection. In turn, physiological analyses show that species reaching southernmost areas have a higher thermo-tolerance than those with tropical distributions, denoting that thermo-tolerance is limiting the southern distribution. Understanding the latitudinal range along its physiological limits of disease vectors may prove useful to test ecological hypotheses and improve strategies and efficiency of vector control at the local and regional levels.


Subject(s)
Animal Distribution , Ecosystem , Insect Vectors/physiology , Reduviidae/physiology , Thermotolerance , Animals , Chagas Disease/transmission , Latin America
10.
Med Vet Entomol ; 32(1): 84-101, 2018 03.
Article in English | MEDLINE | ID: mdl-28887895

ABSTRACT

Climate change can influence the geographical range of the ecological niche of pathogens by altering biotic interactions with vectors and reservoirs. The distributions of 20 epidemiologically important triatomine species in North America were modelled, comparing the genetic algorithm for rule-set prediction (GARP) and maximum entropy (MaxEnt), with or without topographical variables. Potential shifts in transmission niche for Trypanosoma cruzi (Trypanosomatida: Trypanosomatidae) (Chagas, 1909) were analysed for 2050 and 2070 in Representative Concentration Pathway (RCP) 4.5 and RCP 8.5. There were no significant quantitative range differences between the GARP and MaxEnt models, but GARP models best represented known distributions for most species [partial-receiver operating characteristic (ROC) > 1]; elevation was an important variable contributing to the ecological niche model (ENM). There was little difference between niche breadth projections for RCP 4.5 and RCP 8.5; the majority of species shifted significantly in both periods. Those species with the greatest current distribution range are expected to have the greatest shifts. Positional changes in the centroid, although reduced for most species, were associated with latitude. A significant increase or decrease in mean niche elevation is expected principally for Neotropical 1 species. The impact of climate change will be specific to each species, its biogeographical region and its latitude. North American triatomines with the greatest current distribution ranges (Nearctic 2 and Nearctic/Neotropical) will have the greatest future distribution shifts. Significant shifts (increases or decreases) in mean elevation over time are projected principally for the Neotropical species with the broadest current distributions. Changes in the vector exposure threat to the human population were significant for both future periods, with a 1.48% increase for urban populations and a 1.76% increase for rural populations in 2050.


Subject(s)
Animal Distribution , Chagas Disease/transmission , Climate Change , Insect Vectors/physiology , Reduviidae/physiology , Trypanosoma cruzi/physiology , Animals , Chagas Disease/parasitology , Insect Vectors/parasitology , Mexico , Models, Biological , Reduviidae/parasitology , United States
11.
Salud Publica Mex ; 60(1): 77-85, 2018.
Article in English | MEDLINE | ID: mdl-29689660

ABSTRACT

OBJECTIVE: To analyze the current knowledge of pathogen-insect interactions amenable for the design of molecular-based control strategies of vector-borne diseases. MATERIALS AND METHODS: We examined malaria, dengue, and Chagas disease pathogens and insect molecules that participate in interactions during their vectors infection. RESULTS: Pathogen molecules that participate in the insect intestine invasion and induced vector immune molecules are presented, and their inclusion in transmission blocking vaccines (TBV) and in genetically modify insect (GMI) vectors or symbiotic bacteria are discussed. CONCLUSIONS: Disruption of processes by blocking vector-pathogen interactions provides several candidates for molecular control strategies, but TBV and GMI efficacies are still limited and other secondary effects of GMI (improving transmission of other pathogens, affectation of other organisms) should be discarded.


Subject(s)
Chagas Disease/prevention & control , Dengue Virus/physiology , Dengue/prevention & control , Host-Pathogen Interactions , Insect Control/methods , Insect Vectors/virology , Malaria/prevention & control , Plasmodium/physiology , Trypanosoma cruzi/physiology , Aedes/genetics , Aedes/virology , Animals , Anopheles/genetics , Anopheles/virology , Chagas Disease/transmission , Dengue/transmission , Genetic Engineering , Host-Pathogen Interactions/genetics , Insect Vectors/genetics , Intestines/virology , Malaria/transmission , Mosquito Vectors/genetics , Mosquito Vectors/virology , Reduviidae/genetics , Reduviidae/virology
12.
Mol Phylogenet Evol ; 114: 225-233, 2017 09.
Article in English | MEDLINE | ID: mdl-28634150

ABSTRACT

The ambush bugs (Heteroptera: Reduviidae: Phymatinae) are a diverse clade of predators known for their cryptic hunting behavior and morphologically diverse raptorial forelegs. Despite their striking appearance, role as pollinator predators, and intriguing biogeographic distribution, phylogenetic relationships within Phymatinae are largely unknown and the evolutionary history of the subfamily has remained in the dark. We here utilize the most extensive molecular phylogeny of ambush bugs to date, generated from a 3328 base pair molecular dataset, to refine our understanding of phymatine relationships, estimate dates of divergence (BEAST 2), and uncover historical biogeographic patterns (S-DIVA and DEC). This taxon set (39 species of Phymatinae and six outgroups) allowed reevaluation of the proposed sister group of Phymatinae and tribal-level relationships within the group, and for the first time proposes species-level relationships within Phymata Latreille, the largest genus of ambush bugs (∼109spp.). Available evidence suggests that Phymata originated in the Neotropical region, with subsequent dispersals to the Nearctic and Palearctic regions. This study provides a framework for future research investigating the evolutionary history of ambush bugs, as well as ecological and microevolutionary investigations.


Subject(s)
Reduviidae/classification , Animals , Biological Evolution , Cytochromes b/classification , Cytochromes b/genetics , DNA/chemistry , DNA/isolation & purification , DNA/metabolism , Markov Chains , Phylogeny , RNA, Ribosomal, 16S/classification , RNA, Ribosomal, 16S/genetics , RNA, Ribosomal, 28S/classification , RNA, Ribosomal, 28S/genetics , Reduviidae/anatomy & histology , Reduviidae/genetics , Sequence Analysis, DNA
13.
Mol Phylogenet Evol ; 94(Pt A): 65-73, 2016 Jan.
Article in English | MEDLINE | ID: mdl-26314664

ABSTRACT

Stenophagy, specialization of a clade on a narrow range of taxa, has not been well studied in speciose clades of predators, principally due to the difficulty of obtaining adequate natural history data. The pantropical Salyavatinae (Hemiptera: Reduviidae; 17 genera, 107 species) contains members with enigmatic morphology and specialized behavior for feeding on termites. All Salyavatinae are suspected specialist termite predators; however, existing observations are limited to seven species. Prior analyses indicate that Salyavatinae may be paraphyletic with respect to another subfamily, Sphaeridopinae, also hypothesized to feed on termites. A molecular phylogeny of these putative termite assassins is here constructed using seven loci from 28 species in nine genera and is used in a dating analysis to shed light on the timing of Neotropical colonization by this primarily Old World clade. DNA extracted from gut contents of 50 individuals was assayed using PCR with prey-specific primers.Molecular assays, along with recent photographs and observations, provide substantial evidence that this clade feeds specifically upon termites, documenting 28 new individual associations. Our phylogeny supports a sister group relationship of the Neotropical genus Salyavata with Sphaeridopinae. Termite association data combined with our phylogeny provide evidence of previously unknown prey conservatism among clades of one of the most diverse groups of specialist termite predators.


Subject(s)
Isoptera , Phylogeny , Predatory Behavior , Reduviidae/classification , Reduviidae/physiology , Africa , Animals , Crowdsourcing , Diet/veterinary , Food Preferences , Polymerase Chain Reaction , Reduviidae/genetics , Sequence Analysis, DNA
14.
Mol Phylogenet Evol ; 100: 219-233, 2016 07.
Article in English | MEDLINE | ID: mdl-26997523

ABSTRACT

For at least the past 80my, Madagascar, a major biodiversity hotspot, has been isolated from all other landmasses. This long-term isolation, along with geologic and climatic factors within Madagascar and throughout the Indian Ocean, has undoubtedly influenced the evolution of the island's biota. However, few systematic analyses incorporating modern divergence dating and biogeographic analyses have focused on Madagascan insects. The diverse Madagascan millipede assassin bugs (Heteroptera: Reduviidae: Ectrichodiinae) offer an opportunity to contribute to a limited body of insect-related research that explores Madagascar's historical biogeography. A molecular dataset (COI mtDNA and 18S, 28S D2 and D3-D5 rDNAs) for 56 taxa (39 ingroup) and a combined morphological (145 characters) and molecular dataset for 110 taxa (93 ingroup) are analyzed with maximum likelihood (ML) and parsimony approaches. Based on the molecular ML phylogeny, divergence times were estimated using fossil and secondary calibrations and biogeographic analyses performed using DIVA, DEC, and DEC+j models to determine the role and patterns of vicariance and dispersal in the origin of Madagascan Ectrichodiinae. Results indicate that Ectrichodiinae in Madagascar do not form a monophyletic group, different clades are closely related to Afrotropical and Oriental lineages, and have colonized the island via transoceanic dispersal at least twice from the Oriental region and once from the Afrotropical region in the last ∼68my. Additionally, the DEC+j and DIVA models infer a single out-of-Madagascar dispersal event to the Afrotropical region. Oceanic and geologic factors that may have facilitated dispersal between these three regions are discussed. Results of the combined analyses are used to explore character support for Madagascan taxa and inform taxonomic diagnoses. Our results are congruent with the small but growing body of biogeographic research supporting Cenozoic transoceanic dispersal for Madagascan invertebrates to and from Oriental and Afrotropical regions.


Subject(s)
Reduviidae/classification , Animals , DNA, Mitochondrial/chemistry , DNA, Mitochondrial/isolation & purification , DNA, Mitochondrial/metabolism , Female , Madagascar , Male , Phylogeny , Phylogeography , RNA, Ribosomal, 18S/chemistry , RNA, Ribosomal, 18S/metabolism , RNA, Ribosomal, 28S/chemistry , RNA, Ribosomal, 28S/metabolism , Reduviidae/genetics
15.
Bull Entomol Res ; 106(3): 279-91, 2016 Jun.
Article in English | MEDLINE | ID: mdl-26639621

ABSTRACT

The peritrophic matrix is a chitin-protein structure that envelops the food bolus in the midgut of the majority of insects, but is absent in some groups which have, instead, an unusual extra-cellular lipoprotein membrane named the perimicrovillar membrane. The presence of the perimicrovillar membrane (PMM) allows these insects to exploit restricted ecological niches during all life stages. It is found only in some members of the superorder Paraneoptera and many of these species are of medical and economic importance. In this review we present an overview of the midgut and the digestive system of insects with an emphasis on the order Paraneoptera and differences found across phylogenetic groups. We discuss the importance of the PMM in Hemiptera and the apparent conservation of this structure among hemipteran groups, suggesting that the basic mechanism of PMM production is the same for different hemipteran species. We propose that the PMM is intimately involved in the interaction with parasites and as such should be a target for biological and chemical control of hemipteran insects of economic and medical importance.


Subject(s)
Insect Vectors/anatomy & histology , Insect Vectors/physiology , Reduviidae/anatomy & histology , Reduviidae/physiology , Animals , Biological Evolution , Chagas Disease/transmission , Gastrointestinal Tract/anatomy & histology , Gastrointestinal Tract/physiology , Hemiptera/anatomy & histology , Hemiptera/physiology , Microvilli/physiology , Microvilli/ultrastructure
16.
Int J Mol Sci ; 17(6)2016 Jun 16.
Article in English | MEDLINE | ID: mdl-27322247

ABSTRACT

Most assassin bugs are predators that act as important natural enemies of insect pests. Mitochondrial (mt) genomes of these insects are double-strand circular DNAs that encode 37 genes. In the present study, we explore the duplication and rearrangement of tRNA genes in the mt genome of Reduvius tenebrosus, the first mt genome from the subfamily Reduviinae. The gene order rearranges from CR (control region)-trnI-trnQ-trnM-ND2 to CR-trnQ-trnI2-trnI1-trnM-ND2. We identified 23 tRNA genes, including 22 tRNAs commonly found in insects and an additional trnI (trnI2), which has high sequence similarity to trnM. We found several pseudo genes, such as pseudo-trnI, pseudo-CR, and pseudo-ND2, in the hotspot region of gene rearrangement (between the control region and ND2). These features provided evidence that this novel gene order could be explained by the tandem duplication/random loss (TDRL) model. The tRNA duplication/anticodon mutation mechanism further explains the presence of trnI2, which is remolded from a duplicated trnM in the TDRL process (through an anticodon mutation of CAT to GAT). Our study also raises new questions as to whether the two events proceed simultaneously and if the remolded tRNA gene is fully functional. Significantly, the duplicated tRNA gene in the mitochondrial genome has evolved independently at least two times within assassin bugs.


Subject(s)
Gene Duplication , Genome, Mitochondrial , RNA, Transfer/genetics , Reduviidae/genetics , Animals , Base Composition , Base Sequence , Computational Biology/methods , Conserved Sequence , Gene Order , Gene Rearrangement , Genes, Mitochondrial , Molecular Sequence Annotation , Nucleic Acid Conformation , Phylogeny , RNA, Transfer/chemistry
17.
Zootaxa ; 3985(4): 591-9, 2015 Jul 14.
Article in English | MEDLINE | ID: mdl-26250167

ABSTRACT

A new harpactorine bug, Sphedanolestes zhengi sp. nov., is described and illustrated based on specimens collected from southwestern China. A key to 17 Chinese species of the genus, including the new species, is provided. The bionomics of the new species is briefly noted.


Subject(s)
Reduviidae/classification , Animal Distribution , Animal Structures/anatomy & histology , Animal Structures/growth & development , Animals , Body Size , China , Female , Male , Organ Size , Reduviidae/anatomy & histology , Reduviidae/growth & development
18.
Arch Insect Biochem Physiol ; 87(3): 148-63, 2014 Nov.
Article in English | MEDLINE | ID: mdl-25052220

ABSTRACT

In this study, we have analyzed the changes of the ovarian nutritional resources in Dipetalogaster maxima at representative days of the reproductive cycle: previtellogenesis, vitellogenesis, as well as fasting-induced early and late atresia. As expected, the amounts of ovarian lipids, proteins, and glycogen increased significantly from previtellogenesis to vitellogenesis and then, diminished during atresia. However, lipids and protein stores found at the atretic stages were higher in comparison to those registered at previtellogenesis. Specific lipid staining of ovarian tissue sections evidenced remarkable changes in the shape, size, and distribution of lipid droplets throughout the reproductive cycle. The role of lipophorin (Lp) as a yolk protein precursor was analyzed by co-injecting Lp-OG (where OG is Oregon Green) and Lp-DiI (where DiI is 1,10-dioctadecyl-3,3,30,30-tetramethylindocarbocyanine) to follow the entire particle, demonstrating that both probes colocalized mainly in the yolk bodies of vitellogenic oocytes. Immunofluorescence assays also showed that Lp was associated to yolk bodies, supporting its endocytic pathway during vitellogenesis. The involvement of Lp in lipid delivery to oocytes was investigated in vivo by co-injecting fluorescent probes to follow the fate of the entire particle (Lp-DiI) and its lipid cargo (Lp-Bodipy-FA). Lp-DiI was readily incorporated by vitellogenic oocytes and no lipoprotein uptake was observed in terminal follicles of ovaries at atretic stages. Bodipy-FA was promptly transferred to vitellogenic oocytes and, to a much lesser extent, to previtellogenic follicles and to oocytes of ovarian tissue at atretic stages. Colocalization of Lp-DiI and Lp-Bodipy-FA inside yolk bodies indicated the relevance of Lp in the buildup of lipid and protein oocyte stores during vitellogenesis.


Subject(s)
Insect Proteins/metabolism , Lipid Metabolism , Lipoproteins/metabolism , Oogenesis/physiology , Ovary/metabolism , Reduviidae/metabolism , Reduviidae/physiology , Vitellogenesis/physiology , Animals , Cytoplasm , Female , Oocytes/metabolism
19.
Mem Inst Oswaldo Cruz ; 109(4): 452-8, 2014 Jul.
Article in English | MEDLINE | ID: mdl-25004146

ABSTRACT

Nine species of Triatominae, representing three tribes and five genera, are currently known in Suriname. An annotated list of the species based on the collections of the Bureau of Public Health (Suriname), the National Zoological Collection Suriname and the National History Museum Leiden (the Netherlands) is provided. Additionally, the results of several years of opportunistic collection in two domestic environments are presented. The most common species are Rhodnius pictipes Stål, 1972, Rhodnius robustus Larrouse, 1972 and Panstrongylus geniculatus (Latreille, 1811). The significance of the species as vectors of Chagas disease in Suriname is discussed.


Subject(s)
Insect Vectors/classification , Reduviidae/classification , Animals , Chagas Disease/transmission , Suriname
20.
J Insect Sci ; 142014.
Article in English | MEDLINE | ID: mdl-25502028

ABSTRACT

Chagas disease, caused by Trypanosoma cruzi Chagas, is one of the most epidemiologically important vector-borne zoonoses in Mexico. Among the 32 reported triatomine species from Mexico, Meccus mazzottii (Usinger) (Hemiptera: Reduviidae) is one of the most important vectors of T. cruzi in the southern part of the country. Variability among populations of triatomines has been recorded for several species (Meccus longipennis (Usinger) and Meccus pallidipennis (Stal)) that are closely related to M. mazzottii, showing an apparent influence of local environmental conditions on the biology of each population, which could modify the impact of vector control measurements. Therefore, this study sought to compare the biological features of populations of M. mazzottii from two geographically far apart areas that have similar environmental characteristics and to compare populations from close geographical areas that have different environmental characteristics. The mean longevity, percentages of mortality of nymphs, the total mean number of bloodmeals to molt (considered instar by instar), the mean number of eggs laid by females, and the percentage of hatched eggs were similar between the two localities that are geographically far apart but have similar environmental characteristics. On the other hand, important differences were noticed when a comparison was carried out on the two localities with similar environmental conditions with respect to that locality with different conditions, independent of geographic distance. Most of the studied parameters led us to conclude that the three studied populations are very highly influenced by local environmental conditions. The results of this study indicate the importance of studying the biological characteristics of local populations of triatomines to carry out specific control measurements, instead of using standard ones that could fail if they are not adapted to the target population.


Subject(s)
Environment , Geography , Reduviidae/physiology , Animal Nutritional Physiological Phenomena , Animals , Female , Fertility , Insect Vectors/physiology , Longevity , Mexico , Molting/physiology , Nymph/growth & development , Oviposition , Reduviidae/growth & development
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