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1.
Med Vet Entomol ; 37(2): 219-227, 2023 06.
Article in English | MEDLINE | ID: mdl-36346249

ABSTRACT

Soft ticks are neglected competent vectors of a wide range of pathogenic microorganisms, among which bacteria of the genera Rickettsia and Borrelia stand out. In Mexico, previous studies have shown the presence of a member of the Ornithodoros talaje complex in the Virginia opossum (Didelphis virginiana Didelphimorphia: Didelphidae Kerr) from southeastern Mexico. However, its specific identification has not been achieved. Two D. virginiana were treated in a private clinic during the period of April-May 2022. Tick larvae were manually removed, DNA extraction was performed, and some genes from various bacterial and parasitic pathogens were amplified and sequenced. A total of 96 larvae were recovered, which were morphologically identified as Ornithodoros puertoricensis (Ixodida: Argasidae Fox); the 16 S sequences showed a similarity of 96.79%-99.51% with sequences of O. puertoricensis from Panama and Colombia. The presence of Rickettsia felis (Rickettsiales: Rickettsiaceae Bouyer et al.) was detected in 15 specimens from one host. The soft tick O. puertoricensis is recorded for the first time as an ectoparasite of the Virginia opossum in America and represents the second report for this soft tick in Mexico since 1963. This represents the most northern record of this tick species in its geographic distribution and brings a new soft tick-Rickettsia association.


Subject(s)
Argasidae , Ornithodoros , Rickettsia felis , Rickettsia , Animals , Mexico , Argasidae/genetics , Argasidae/microbiology , Rickettsia/genetics , Larva/microbiology
2.
Parasitol Res ; 122(1): 275-284, 2023 Jan.
Article in English | MEDLINE | ID: mdl-36409351

ABSTRACT

Argas persicus (the fowl tick) is a species of soft tick commonly associated with poultry farms. It has a wide geographic distribution and colonizes different climate regions. Morphological identification of A. persicus has been reported worldwide, but genetic data regarding its molecular characterization is limited. The present study provides data for morphological identification and genetic characterization of A. persicus collected from domestic birds in traditional farms from east Algeria (Setif region). Additionally, A. persicus samples originating from Gansu province in China were included for comparative molecular study. In total, 1518 ticks collected from 30 infested farms were examined and morphologically identified as A. persicus. Furthermore, the 14 tick samples obtained from China were morphologically identified as A. persicus. Molecular analysis of 30 ticks from Algeria (one tick from each infested farm) and the 14 Chinese samples based on PCR, sequencing, and phylogenetic analysis of three mitochondrial genetic markers (16S rRNA, 12S rRNA, and cox1) confirmed morphological results where all samples belonged to the A. persicus group. However, phylogenetic analysis showed that all Algerian samples and two Chinese samples belong to A. persicus sensu stricto (s.s.), while the remaining Chinese samples represented A. persicus sensu lato (s.l.) (divergent lineage). The present study confirms the occurrence of A. persicus s.s. both in Algeria and China, as well as provides novel molecular data for a distinct Chinese lineage of A. persicus.


Subject(s)
Acari , Argas , Argasidae , Ticks , Animals , Argasidae/genetics , Argas/genetics , Acari/genetics , Phylogeny , RNA, Ribosomal, 16S/genetics , Algeria , Birds , Ticks/genetics
3.
Exp Appl Acarol ; 88(3-4): 397-406, 2022 Dec.
Article in English | MEDLINE | ID: mdl-36459311

ABSTRACT

Argas ticks are primary parasites of birds with veterinary importance. Nevertheless, these ticks have received little attention regarding molecular identification studies. DNA barcoding is a powerful technique for identifying tick species besides traditional morphological identification. The present work is a first effort to divulge DNA sequences of Argas (Persicargas) arboreus from Egypt and worldwide. We used cytochrome c oxidase subunit I (COI) from A. arboreus infesting herons, and from the fowl tick Argas (Persicargas) persicus. Our results pointed out another success for the Folmer primers that are widely used in DNA barcoding, permitting the discrimination of morphologically similar A. arboreus and A. persicus.


Subject(s)
Argas , Argasidae , Ticks , Animals , Argasidae/genetics , Argas/genetics , DNA Barcoding, Taxonomic , Egypt
4.
Exp Appl Acarol ; 86(4): 567-581, 2022 Apr.
Article in English | MEDLINE | ID: mdl-35305191

ABSTRACT

In Brazil, 19 species of the genus Ornithodoros (Acari: Argasidae) have been reported. The medical and veterinary importance of Ornithodoros ticks has increased substantially in recent decades, with the discovery of various relapsing fever Borrelia infecting Ornithodoros ticks. Herein, argasid ticks were collected during 2019-2020 from caves, abandoned nests and homes in various regions of Ceará State, Brazilian semiarid-Caatinga biome. In total, 289 ticks were collected and identified into five species: Ornithodoros cavernicolous (176 specimens), Ornithodoros fonsecai (81), Ornithodoros mimon (12), Ornithodoros rietcorreai (4), and a fifth species provisionally retained as Ornithodoros sp. Ubajara. Tick identifications were corroborated by a phylogenetic analysis inferred using the 16S rRNA gene. To extend the molecular characterization, DNA samples were tested by an additional PCR assay targeting the nuclear Histone 3 (H3) gene. Because there were no H3 sequences of argasids in GenBank, we extended this PCR assay for additional Ornithodoros species, available in our laboratory. In total, 15 partial sequences of the H3 gene were generated for 10 Ornithodoros species, showing 0% intraspecific polymorphism, and 1.5-11.6% interspecific polymorphism. Phylogenetic analyses inferred segregated Ornithodoros sp. Ubajara as a potential novel species. Our results also highlight the potential of the H3 gene for deeper phylogenetic analyses of argasids. The present study provides new data for argasid ticks of the genus Ornithodoros in the Caatinga biome. Because some of these tick species are human-biting ticks, active surveillance for the incidence of human infection due to Ornithodoros-borne agents is imperative in the Caatinga biome.


Subject(s)
Acari , Argasidae , Ornithodoros , Animals , Argasidae/genetics , Brazil/epidemiology , Ecosystem , Histones/genetics , Ornithodoros/genetics , Phylogeny , RNA, Ribosomal, 16S/genetics
5.
Parasitol Res ; 120(2): 383-394, 2021 Feb.
Article in English | MEDLINE | ID: mdl-33447885

ABSTRACT

Ticks are considered the second most important vectors of pathogens worldwide, after mosquitoes. This study provides a systematic review of vector-host relationships between ticks and mammals (domestic and wild) and consolidates information from studies conducted in Colombia between 1911 and 2020. Using the PRISMA method, 71 scientific articles containing records for 51 tick species (Argasidae and Ixodidae) associated with mammals are reported. The existing information on tick-mammal associations in Colombia is scarce, fragmented, or very old. Moreover, 213 specimens were assessed based on morphological and molecular analyses, which allowed confirming eight tick species associated with mammals: Amblyomma calcaratum, Amblyomma dissimile, Amblyomma mixtum, Amblyomma nodosum, Amblyomma ovale, Amblyomma varium, Ixodes luciae, and Ixodes tropicalis. Several tick species are molecularly confirmed for Colombia and nine new relationships between ticks and mammals are reported. This research compiles and confirms important records of tick-mammal associations in Colombia.


Subject(s)
Arthropod Vectors/physiology , Mammals/parasitology , Tick Infestations/veterinary , Ticks/physiology , Animals , Argasidae/classification , Argasidae/genetics , Argasidae/physiology , Arthropod Vectors/classification , Arthropod Vectors/genetics , Colombia , Host-Parasite Interactions , Ixodidae/classification , Ixodidae/genetics , Ixodidae/physiology , Tick Infestations/parasitology , Ticks/classification , Ticks/genetics
6.
Syst Parasitol ; 96(7): 595-602, 2019 09.
Article in English | MEDLINE | ID: mdl-31367960

ABSTRACT

In South America, early descriptions of soft tick species were based on examination of the external morphology of the larval stages. In many cases, specimens were collected only once as it is the case of some bat-associated Ornithodoros spp. If we are to understand the systematic scenario of South American soft ticks, these species become axial questions to be re-studied from a morphological and molecular point of view. The objective of this study was to assess the taxonomic identity of soft tick larvae collected on bats inhabiting crevices of a large rock in the Rondônia State (RO), Brazilian Amazon. After a detailed morphological analysis using light microscopy, three large engorged larvae sharing the same phenotype were identified as Ornithodoros setosus Kohls, Clifford & Jones, 1969, a species collected in 1964 on bats in RO. Remarkably, maximum parsimony and Bayesian phylogenetic analyses based on tick 16S rRNA mitochondrial gene sequences obtained from two of these specimens showed that O. setosus indeed corresponds to a species of Nothoaspis Keirans & Clifford, 1975. Therefore, a new combination, Nothoaspis setosus (Kohls, Clifford & Jones, 1969), is herein proposed. While an elongated triangular dorsal plate with a curvy-notched posterior margin, and bulges in the lateral margins of basis capitulum correspond to common characters in larvae of the genus Nothoaspis, polymorphic traits are represented by minute cornua in the basis of the capitulum, the dentition of the hypostomal tip, triangular spurs on coxae I, and the number of dorsal and circumanal setae.


Subject(s)
Argasidae/classification , Argasidae/physiology , Chiroptera/parasitology , Animals , Argasidae/cytology , Argasidae/genetics , DNA, Ribosomal/genetics , Species Specificity
7.
Exp Appl Acarol ; 66(2): 281-91, 2015 Jun.
Article in English | MEDLINE | ID: mdl-25717009

ABSTRACT

Ticks parasitizing bats have been largely understudied, especially in the central part of the Balkan Peninsula, where the last data from the field research date from almost 25 years ago. Bats are hosts to a large number of ectoparasites, including ticks, which can act as vectors of zoonotic agents. For this reason, it is important to identify the distribution of ticks and their relationship to different hosts, including wild animals, bats in particular. The present research was conducted at 16 localities throughout Serbia, Montenegro, Bosnia and Herzegovina, and Former Yugoslav Republic of Macedonia (FYROM). We examined 475 individuals of bats belonging to 13 species. A total of three tick species were identified, I. simplex being the most numerous and widespread, followed by I. vespertilionis and A. vespertilionis. To the best of our knowledge, the presented data include the first records of I. simplex in Serbia and Montenegro, I. vespertilionis for Montenegro and A. vespertilionis in FYROM. Also, we identify a new possible host/parasite association between I. simplex and Rhinolophus euryale.


Subject(s)
Argasidae/physiology , Arthropod Proteins/genetics , Chiroptera/parasitology , Ixodidae/physiology , Animals , Argasidae/genetics , Arthropod Proteins/metabolism , Balkan Peninsula , Ixodidae/genetics , Molecular Sequence Data , Sequence Analysis, DNA/veterinary , Species Specificity
8.
Ticks Tick Borne Dis ; 15(3): 102331, 2024 May.
Article in English | MEDLINE | ID: mdl-38461653

ABSTRACT

In this study, we report soft ticks from bat-inhabiting caves in different areas of Brazil. From 2010 to 2019, we collected 807 tick specimens from nine caves located in four Brazilian states among two biomes. Ticks were morphologically identified as Antricola guglielmonei (282 specimens), Ornithodoros cavernicolous (260 specimens), and Ornithodoros fonsecai (265 specimens). Whereas A. guglielmonei was collected on bat guano in hot caves, O. cavernicolous and O. fonsecai were collected in cracks and crevices on the walls of cold caves, sometimes in the same chamber. Morphological identifications were corroborated by molecular and phylogenetic analyses inferred from tick mitochondrial 16S rRNA gene partial sequences. The sequences of A. guglielmonei, O. cavernicolous and O. fonsecai collected in this study clustered with conspecific GenBank sequences from different localities of Brazil. Remarkably, a clade containing 12 sequences of O. fonsecai was clearly bifurcated, denoting a degree of genetic divergence (up to 5 %) of specimens from Cerrado/Atlantic Forest biomes with the specimens from the Caatinga biome. To further evaluate this divergence, we performed morphometric analysis of the larval stage of different O. fonsencai populations by principal component analysis, which indicated that the larvae from Caatinga populations were generally smaller than the larvae from other biomes. Some of the present A. guglielmonei specimens were collected from the type locality of Antricola inexpectata. Comparisons of these specimens with the type specimens of A. inexpectata and A. guglielmonei indicated that they could not be separated by their external morphology. Hence, we are relegating A. inexpectata to a synonym of A. guglielmonei. This proposal is corroborated by our phylogenetic analysis.


Subject(s)
Acari , Argasidae , Chiroptera , Ornithodoros , Animals , Argasidae/genetics , Brazil , RNA, Ribosomal, 16S/genetics , Acari/genetics , Phylogeny , Larva/genetics
9.
Ticks Tick Borne Dis ; 15(2): 102303, 2024 03.
Article in English | MEDLINE | ID: mdl-38113807

ABSTRACT

Ticks are obligate hematophagous parasites that can transmit to vertebrate hosts several pathogens, including viruses, bacteria, protozoa and helminths. Among these agents, some Borrelia species some Borrelia species cause disease in humans and other vertebrate hosts; therefore, they have medical and veterinary health importance. To gather additional information on Borrelia species in Brazil, the current study aimed to detect the presence of these species in Ornithodoros cavernicolous ticks collected in September 2019 from cement pipes that are used by bats as shelter in a farm located in the midwestern region of Brazil. DNA samples obtained from 18 specimens of O. cavernicolous were subjected of two polymerase chain reactions, targeting a segment of the Borrelia fla B gene. Of the samples tested, only one (6 %, 1/18) showed amplification. The nucleotide sequence of the amplified DNA showed more than 97 % (293/300) identity with a sequence of a Borrelia sp. detected in blood collected from a bat from Macaregua Cave, Colombia, and more than 97 % (292/300) detected in lungs from vampire bats from northeastern Brazil. The deduced amino acid sequences were identical to each other. Phylogenetic analysis indicated that these sequences formed a group of Borrelia species (putatively associated with bats) that is closely related to sequences of Borrelia species of the Lyme borreliosis group. Further investigations should be carried out in order to determine whether the sequence of the Borrelia sp. we found belongs to a new taxon. It will also be of great importance to determine which vertebrate hosts, besides bats, O. cavernicolous ticks can parasitize in order to investigate whether the Borrelia sp. we found may be transmitted and cause disease to the other vertebrate hosts.


Subject(s)
Acari , Argasidae , Borrelia , Chiroptera , Ornithodoros , Humans , Animals , Ornithodoros/microbiology , Argasidae/genetics , Borrelia/genetics , Acari/genetics , Brazil/epidemiology , Chiroptera/parasitology , Phylogeny , DNA
10.
Exp Appl Acarol ; 61(2): 231-41, 2013 Oct.
Article in English | MEDLINE | ID: mdl-23543273

ABSTRACT

By the end of the 1960s, the argasid tick Ornithodoros peropteryx was described from larval specimens collected from the bat Peropteryx macrotis in Colombia. Since its original description, no additional record of O. peropteryx has been reported, and its post-larval stages have remained unknown. During July 2010, 18 larvae were collected from 9 bats (Centronycteris maximiliani), resulting in a mean infestation of 2.0 ± 2.2 ticks per bat (range 1-8). These bats were captured in a farm in northeastern Bolivia close to Guaporé River in the border with Brazil. Morphological examinations of the larvae revealed them to represent the species O. peropteryx. One engorged larva that was kept alive in the laboratory moulted to a nymph after 9 days. Fourteen days after the larval moulting, the nymph moulted to an adult female without taking any blood meal during the nymphal period. This adult female was used for a morphological description of the female stage of O. peropteryx. In addition, the larvae were used for a morphological redescription of this stage. One larva and two legs extirpated from the adult female were submitted to DNA extraction and PCR targeting a fragment of the mitochondrial 16S rDNA gene, which yielded DNA sequences at least 11 % divergent from any available argasid sequence in Genbank. We show that O. peropteryx ontogeny is characterized by a single, non-feeding, nymphal stage. This condition has never been reported for ticks.


Subject(s)
Argasidae/physiology , Chiroptera/parasitology , Mite Infestations/veterinary , Animals , Argasidae/genetics , Bolivia/epidemiology , DNA, Mitochondrial/genetics , Larva , Mite Infestations/epidemiology , Mite Infestations/parasitology , RNA/genetics , RNA, Ribosomal, 16S/genetics
11.
Zootaxa ; 3666: 579-90, 2013.
Article in English | MEDLINE | ID: mdl-26217870

ABSTRACT

The soft tick Ornithodoros guaporensis n. sp. (Acari: Ixodida: Argasidae) is described from larvae and adults. Morphological analysis and 16S rDNA sequences are provided. Adults were collected from a rocky fissure inhabited by bats located in the Amazonian forest in north-eastern Bolivia (Beni Department) close to the Guapord River. Larvae were obtained from eggs laid by females collected in the field, and which were fed on rabbits in the laboratory. Larvae of O. guaporensis are morphologically closely related to Ornithodoros rioplatensis, Ornithodoros puertoricensis and Ornithodoros talaje. Larvae of O. guaporensis and O. rioplatensis can be separated from O. puertoricensis and O. talaje by the number of pairs of dorsal setae (20 in O. guaporensis and O. rioplatensis, 18 in O. puertoricensis and 17 in O. talaje). Larvae of O. guaporensis and O. rioplatensis can be differentiated by the medial dental formula (2/2 in O. guaporensis and 3/3 in O. rioplatensis) and the apex of the hypostome, which is more pointed in O. rioplatensis than in O. guaporensis. The Principal Component Analysis performed with morphometric characters of larvae showed a clear separation among O. guaporensis, O. rioplatensis, O. puertoricensis and O. talaje. Significant morphological differences among adults of these four species were not found. The analysis of the 16S rDNA sequences allowed for the differentiation between O. guaporensis and the remaining Neotropical species of the family Argasidae.


Subject(s)
Argasidae/classification , Animal Structures/anatomy & histology , Animal Structures/growth & development , Animals , Argasidae/anatomy & histology , Argasidae/genetics , Argasidae/growth & development , Body Size , Bolivia , Female , Larva/anatomy & histology , Larva/classification , Larva/genetics , Larva/growth & development , Male , Molecular Sequence Data , Organ Size , Phylogeny , RNA, Ribosomal, 16S/genetics , Rabbits , Rivers , Tick Infestations/parasitology
12.
J Med Entomol ; 60(5): 968-977, 2023 09 12.
Article in English | MEDLINE | ID: mdl-37455018

ABSTRACT

Soft ticks (Argasidae) of the Pavlovskyella Pospelova-Shtrom subgenus are important vectors of relapsing fever spirochetes, which are agents of disease globally. South American representatives of the Pavlovskyella subgenus include 3 species: Ornithodoros (Pavlovskyella) brasiliensis Aragão, Ornithodoros (Pavlovskyella) furcosus Neumann, and Ornithodoros (Pavlovskyella) rostratus Aragão. Here, we describe a fourth species based on morphological and mitogenomic evidence of ticks collected in burrows of unknown hosts in central Chile. The larva of the new species separates from other South American soft ticks by the following combination of characters: 13 pairs of dorsolateral setae, dorsal plate hexagonal, hypostome blunt with denticles from apex almost to the base. Adults of this new species lack cheeks, possess a dorsoventral groove, and have humps, similar to O. (P.) brasiliensis; however, they lack bulging structures on the flanks of idiosoma. Moreover, females and males differ from O. (P.) rostratus by having 3 humps instead of spurs in tarsi I and from O. (P.) furcosus because of their smaller size and thinner anterior lip of the genital aperture in females. The phylogenetic analysis performed with mitogenomes of the Argasidae family depicts the new Pavlovskyella species from Chile in a monophyletic clade with other South American species in the subgenus, confirming a regional group.


Subject(s)
Acari , Argasidae , Ornithodoros , Female , Male , Animals , Argasidae/genetics , Chile , Phylogeny , Ornithodoros/genetics
13.
Methods Mol Biol ; 2503: 105-118, 2022.
Article in English | MEDLINE | ID: mdl-35575889

ABSTRACT

Molecular biology methods are highly sensitive to detect the genome of pathogens and to study their biology. Polymerase chain reaction (PCR) and reverse transcription followed by a polymerase chain reaction (RT-PCR) permit the detection of the presence and the replication of African swine fever virus in soft ticks. Here, we described our techniques to detect and quantify DNA and RNA of African swine fever virus in soft ticks including a housekeeping gene of soft ticks as internal control.


Subject(s)
African Swine Fever Virus , African Swine Fever , Argasidae , Ornithodoros , African Swine Fever Virus/genetics , Animals , Argasidae/genetics , DNA, Viral/genetics , Ornithodoros/genetics , RNA/genetics , Swine
14.
PLoS One ; 17(12): e0278582, 2022.
Article in English | MEDLINE | ID: mdl-36473013

ABSTRACT

Bacterial endosymbionts are abundantly found in both hard and soft ticks. Occidentia massiliensis, a rickettsial endosymbiont, was first identified in the soft tick Ornithodoros sonrai collected from Senegal and later was identified in a hard tick Africaniella transversale. In this study, we noted the presence of Occidentia species, designated as Occidentia-like species, in a soft tick O. turicata americanus. Sequencing and phylogenetic analyses of the two genetic markers, 16S rRNA and groEL confirmed the presence of Occidentia-like species in O. turicata americanus ticks. The Occidentia-like species was noted to be present in all developmental stages of O. turicata americanus and in different tick tissues including ovaries, synganglion, guts and salivary gland. The levels of Occidentia-like species 16S rRNA transcripts were noted to be significantly higher in ovaries than in a gut tissue. In addition, Occidentia-like species groEL expression was noted to be significantly higher in tick synganglion than in ovaries and gut tissues. Furthermore, levels of Occidentia-like species 16S rRNA transcripts increased significantly upon O. turicata americanus blood feeding. Taken together, our study not only shows that Occidentia-like species is present in O. turicata americanus but also suggests that this bacterium may play a role in tick-bacteria interactions.


Subject(s)
Argasidae , Ornithodoros , Animals , Argasidae/genetics , Ornithodoros/genetics , RNA, Ribosomal, 16S/genetics , Phylogeny , Senegal
15.
Exp Appl Acarol ; 55(3): 283-91, 2011 Nov.
Article in English | MEDLINE | ID: mdl-21739257

ABSTRACT

Specimens of Argas monachus Keirans et al. were collected from Myiopsitta monachus nests in 42 localities in Argentina and Paraguay from 2006 to 2010. A list of localities where this tick has been found is presented. 16S rDNA sequences of specimens of A. monachus from different localities were compared to confirm whether they belong to the same specific taxon. Argas monachus is present in the phytogeographic provinces of Chaco, Espinal, and Monte, but not in the Pampa (all from de Chaco Domain) where the host is well distributed. No differences were found among 16S rDNA sequences of geographically distant specimens.


Subject(s)
Argasidae/genetics , Parrots/parasitology , RNA, Ribosomal, 16S/genetics , Animals , Argentina , Geography
16.
Exp Appl Acarol ; 54(1): 93-104, 2011 May.
Article in English | MEDLINE | ID: mdl-21161720

ABSTRACT

Carios mimon is an argasid tick common on Chiroptera, originally described from larvae collected on bats Mimon crenulatum from Bolivia and Eptesicus brasiliensis from Uruguay. Later it was also registered from Argentina and recently included among the Brazilian tick fauna. In Brazil, this species is very aggressive to man, resulting in intense inflammatory response and pain. It is known only by the larval description and its morphology resembles that from other species currently included into the genus Carios, formerly classified into the subgenus Alectorobius, genus Ornithodoros. Here we describe adults and redescribe the larva of C. mimon, based on light and scanning electron microscopy. Remarks about its morphological similarity with other species of this genus are also discussed. Molecular analysis inferred from a portion of the 16S rRNA mitochondrial gene placed C. mimon in a cluster supported by maximal bootstrap value (100%) with other argasid species (mostly bat parasites in the New World), which have been classified into either the genus Ornithodoros or Carios, depending on the Argasidae classification adopted by different authors.


Subject(s)
Argasidae/ultrastructure , RNA, Ribosomal, 16S/chemistry , Animals , Argasidae/classification , Argasidae/genetics , Female , Larva/classification , Larva/ultrastructure , Male , Microscopy, Electron, Scanning , Phylogeny
17.
Ticks Tick Borne Dis ; 12(5): 101748, 2021 09.
Article in English | MEDLINE | ID: mdl-34052668

ABSTRACT

Ornithodoros tabajara n. sp. is described from laboratory-reared larvae and adult specimens collected in the Brazilian Caatinga. This new species shares the ecological niche with Ornithodoros rietcorreai and is likely associated with colonial rodents of genus Kerodon. However, O. tabajara n. sp. is morphologically easy to distinguish from O. rietcorreai and other Neotropical Ornithodoros by a unique combination of characters: larva with 17 pairs of dorsal setae (seven anterolateral, three central and seven posterolateral), sub-oval dorsal plate, hypostome blunt apically with dentition formula 2/2 along its extension, only one pair of posthypostomal setae, six pairs of sternal setae, posteromedian setae absent, and leave-shaped anal valves; alive adults with whitish islands of mammillae symmetrically distributed on dorsum (not visible in ethanol-preserved specimens), and median disk merging with posteromedian file. A phylogenetic analysis performed with mitochondrial 16S rDNA sequences points O. tabajara n. sp. as O. rietcorreai's sister taxon, which rises the hypothesis of sympatric speciation.


Subject(s)
Classification , Ornithodoros/classification , Animals , Argasidae/anatomy & histology , Argasidae/classification , Argasidae/genetics , Brazil , Ecosystem , Forests , Genetic Speciation , Ornithodoros/anatomy & histology , Ornithodoros/genetics , Phylogeny , RNA, Ribosomal, 16S/genetics
18.
Ticks Tick Borne Dis ; 12(4): 101688, 2021 07.
Article in English | MEDLINE | ID: mdl-33652332

ABSTRACT

Argasid systematics remains controversial with widespread adherence to the Hoogstraal (1985) classification scheme, even though it does not reflect evolutionary relationships and results in paraphyly for the main genera of soft ticks (Argasidae), namely Argas and Ornithodoros. The alternative classification scheme, proposed by Klompen and Oliver (1993), has problems of its own: most notably paraphyly of the subgenus Pavlovskyella and the controversial grouping together of the subgenera Alectorobius, Antricola, Carios, Chiropterargas, Nothoaspis, Parantricola, Reticulinasus and Subparmatus into the genus Carios. Recent phylogenetic analyses of 18S/28S rRNA sequences and mitochondrial genomes agree with the scheme of Klompen and Oliver (1993), with regard to the paraphyly of Pavlovskyella, placement of Alveonasus, Ogadenus, Proknekalia and Secretargas in the Argasinae and placement of Carios and Chiropterargas in the Ornithodorinae (Mans et al., 2019). The Carios clade and its constituent subgenera remain controversial, since the phylogenetic position of its type species Carios (Carios) vespertilionis Latreille, 1796 (formerly Argas vespertilionis) has not been determined with confidence. The current study aimed to resolve Carios sensu lato Klompen and Oliver, 1993, and Carios sensu stricto Hoogstraal, 1985, by determining and analysing phylogenetic nuclear and mitochondrial markers for C. (C.) vespertilionis. Both the nuclear and mitochondrial markers support placement of Carios s.s. within the subfamily Ornithodorinae, but to the exclusion of the clade that includes the 6 other subgenera that are part of Carios s.l. Klompen and Oliver (1993), namely Alectorobius, Antricola, Nothoaspis, Parantricola, Reticulinasus and Subparmatus. These 6 subgenera form a monophyletic clade that might be placed as new subgenera within the genus Alectorobius, or elevated to genera. Given the substantial differences in biology among these subgenera, we propose that these 6 subgenera be elevated to genera. Thus, we propose to modify the classification scheme of Mans et al. (2019) so that the subfamily Argasinae now has six genera, Alveonasus, Argas (subgenera Argas and Persicargas), Navis, Ogadenus, Proknekalia and Secretargas, and the subfamily Ornithodorinae has nine genera, Alectorobius, Antricola (subgenera Antricola and Parantricola), Carios, Chiropterargas, Nothoaspis, Ornithodoros (subgenera Microargas, Ornamentum, Ornithodoros, Pavlovskyella and Theriodoros), Otobius, Reticulinasus and Subparmatus (genera indicated in bold).


Subject(s)
Argasidae/classification , Genome, Mitochondrial , Animals , Argas/classification , Argas/genetics , Argas/growth & development , Argasidae/genetics , Argasidae/growth & development , Female , Genetic Markers , Larva/classification , Larva/genetics , Larva/growth & development , Ornithodoros/classification , Ornithodoros/genetics , Ornithodoros/growth & development , Phylogeny , RNA, Ribosomal, 18S/analysis , RNA, Ribosomal, 28S/analysis
19.
Insect Mol Biol ; 19(4): 501-15, 2010 Aug.
Article in English | MEDLINE | ID: mdl-20456507

ABSTRACT

Synthesis of the precursor yolk protein vitellogenin (Vg) occurs after engorgement in haematophagous arthropods. We identified the Vg cDNA of the soft tick Ornithodoros moubata (OmVg) and compared its expression in mated and virgin females. Both mated and virgin females showed increases in OmVg expression after engorgement but expression was higher in mated females than virgin females particularly as time advanced. Delayed mating in virgin females induced an increase in OmVg expression. OmVg expression was observed in the midgut and fat body by whole mount in situ hybridization, but enlarged fat body with high expression occurred in only mated females during the late phase of vitellogenesis. Therefore, engorgement initially induces OmVg expression but mating is necessary for continued Vg expression to produce mature eggs.


Subject(s)
Argasidae/genetics , Argasidae/physiology , Sexual Behavior, Animal , Vitellogenesis/genetics , Vitellogenins/genetics , Amino Acid Sequence , Animals , Base Sequence , DNA, Complementary/genetics , Female , Gene Expression Regulation, Developmental , Male , Models, Biological , Molecular Sequence Data , Molecular Weight , Phylogeny , RNA, Messenger/genetics , RNA, Messenger/metabolism , Regulatory Sequences, Nucleic Acid/genetics , Time Factors , Vitellogenins/metabolism
20.
Parasite ; 17(4): 349-55, 2010 Dec.
Article in English | MEDLINE | ID: mdl-21275242

ABSTRACT

Recently, in the province of Trapani (Western Sicily), some overwintering specimens of the argasid tick Argos (Persicargas) persicus (Oken, 1818) were observed and collected. Morphological and genetic analysis were utilized in order to reach a definitive identification. The species was found in two semi-natural sites where, having been found repeatedly, its presence does not appear accidental. Moreover the characteristics of the Sicilian findings seem to exclude a human-induced spread. This record, the first regarding Sicily and South Italy, is discussed together with the previous doubtful citations for Italy. These findings revalue not only all the old citations for Italy but also the hypothesis that the Mediterranean distribution of this argasid is of a natural origin.


Subject(s)
Argasidae , Tick Infestations/epidemiology , Animals , Argasidae/genetics , DNA, Protozoan/genetics , DNA, Protozoan/isolation & purification , DNA, Ribosomal/genetics , DNA, Ribosomal/isolation & purification , Ecosystem , Genes, Protozoan , Geography , Humans , Italy/epidemiology , Plant Bark/parasitology , Seasons , Sicily/epidemiology
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