Reexamination of the holotype of the louse species Esthiopterum tataupa Carriker, 1936 demonstrated that the species belongs to the genus Furnariphilus Price and Clayton, 1995 and is conspecific with Furnariphilus parkeri Price and Clayton, 1995. The Tataupa tinamou Crypturellus t. tataupa (Temminck, 1815), originally listed as the type host of this species, is not the true host. This association likely resulted from contamination during Carriker's 1934 Bolivian collections, when a furnariid (Sclerurus albigularis albicollis Carriker, 1935) was obtained at the same locality. The present study refines both the taxonomy and host association of this louse species and underscores the importance of continued critical evaluation of historical type specimens and refined morphological analysis. It also underscores the value of well-documented collections of hosts and parasites with associated field notes for assessing taxonomy and documenting ecological and evolutionary relationships of hosts and their parasites.
ABSTRACT The diversity of organisms is one of the most fundamental questions in sciences. Here, we inventory species distributed in 273 families of mites from Brazil. Taxonomic information is provided for all 88 superfamilies in Brazil, accompanied by relevant publications for the families, including notes on their identification and importance. However, despite recent taxonomic improvement in a few groups, particularly in Mesostigmata (Dermanyssoidea, Phytoseioidea and Uropodoidea), Ixodida (Ixodoidea), Sarcoptiformes (Analgoidea, Galumnoidea, Oppioidea, Oripodoidea, Phthiracaroidea, Pterolichoidea and Sarcoptoidea) and Trombidiformes (Arrenuroidea, Bdelloidea, Cheyletoidea, Eriophyoidea, Hygrobatoidea, Pygmephoroidea, Tarsonemoidea, Tetranychoidea, Trombiculoidea and Tydeoidea), knowledge remains limited for most other taxa. This limitation underscores the urgent need for taxonomic revisions and improvements in describing new species. Based on groups of host-specificity, we estimate nearly 50,000 species of mites occurring in Brazil, but the diversity could be greater. This enormous gap in our taxonomic knowledge of mites suggests that greater investment in training and hiring acarologists, is essential. In this context, the Taxonomic Catalog of the Brazilian Fauna (TCBF) should serve as a key platform for compiling, updating, and disseminating taxonomic data, ensuring that mite diversity in Brazil is systematically documented and accessible for future research and conservation efforts.
The limited temporal completeness and taxonomic accuracy of species lists, made available in a traditional manner in scientific publications, has always represented a problem. These lists are invariably limited to a few taxonomic groups and do not represent up-to-date knowledge of all species and classifications. In this context, the Brazilian megadiverse fauna is no exception, and the Catalogo Taxonomico da Fauna do Brasil (CTFB) (http://fauna.jbrj.gov.br/), made public in 2015, represents a database on biodiversity anchored on a list of valid and expertly recognized scientific names of animals in Brazil. The CTFB is updated in near real time by a team of more than 800 specialists. By January 1, 2024, the CTFB compiled 133,691 nominal species, with 125,138 that were considered valid. Most of the valid species were arthropods (82.3%, with more than 102,000 species) and chordates (7.69%, with over 11,000 species). These taxa were followed by a cluster composed of Mollusca (3,567 species), Platyhelminthes (2,292 species), Annelida (1,833 species), and Nematoda (1,447 species). All remaining groups had less than 1,000 species reported in Brazil, with Cnidaria (831 species), Porifera (628 species), Rotifera (606 species), and Bryozoa (520 species) representing those with more than 500 species. Analysis of the CTFB database can facilitate and direct efforts towards the discovery of new species in Brazil, but it is also fundamental in providing the best available list of valid nominal species to users, including those in science, health, conservation efforts, and any initiative involving animals. The importance of the CTFB is evidenced by the elevated number of citations in the scientific literature in diverse areas of biology, law, anthropology, education, forensic science, and veterinary science, among others.
This paper provides a catalogue of the type specimens of lice (Insecta: Psocodea: Phthiraptera) held in the collection of the Field Museum of Natural History (FMNH), Chicago, Illinois, USA. There are 178 nominal species, four of which are represented by holotype only; 14 by holotype, allotype and paratypes; 29 by holotype and paratypes; 127 by paratypes only; three by neoparatypes, and one by paralectotype. The main goal of this type catalog is to make the louse type specimens and their metadata more readily available to biodiversity researchers.
We present records of chewing lice collected from bird skins of the families Anhimidae, Threskiornithidae, and Aramidae deposited at the Museum of Zoology of University of São Paulo (MZUSP). Twenty-one chewing lice species from the suborders Amblycera and Ischnocera were identified, seven of which are new records for Brazil. These species belong to the genera Ardeicola (1), Colpocephalum (3), Ibidoecus (1), and Plegadiphilus (2). Furthermore, ten species were recorded from new localities in Brazil, and Colpocephalum cayennensis Price & Emerson, 1967 is for the first time recorded with precise locality in the country. Lastly, the bird host subspecies Phimosus infuscatus nudifrons (Spix, 1825) (Threskiornithidae) was for the first time found to harbor lice species.
The avian feather louse Philopterus-complex (Phthiraptera: Ischnocera: Philopteridae) currently contains 12 genera that have been grouped together because of shared morphological characteristics. Although previously lumped into a single genus (Philopterus), more recent morphological treatments have separated the group into several different genera. Here we evaluate the status of these genera using DNA sequence data from 118 ingroup specimens belonging to ten genera in the Philopterus-complex: Australophilopterus Mey, 2004, Cinclosomicola Mey 2004, Clayiella Eichler, 1940, Corcorides Mey, 2004, Mayriphilopterus Mey, 2004, Paraphilopterus Mey 2004, Philopteroides Mey 2004, Philopterus Nitzsch, 1818, Tyranniphilopterus Mey, 2004, and Vinceopterus Gustafsson, Lei, Chu, Zou, and Bush, 2019. Our sampling includes 97 new louse-host association records. Our analyses suggest that the genus Debeauxoecus Conci, 1941, parasitic on pittas (Aves: Pittidae), is outside of the Philopteruscomplex, and that there is strong support for the monophyly of a group containing the remaining genera from the complex. Some diverse genera, such as Philopterus (sensu stricto) and Mayriphilopterus are supported as monophyletic, whereas the genera Australophilopterus, Philopteroides, and Tyranniphilopterus are not. The present study is the largest phylogenetic reconstruction of avian lice belonging to the Philopterus-complex to date and suggests that further generic revision is needed in the group to integrate molecular and morphological information.
The nymphs I, II, III, and adult male and adult female stages of Mulcticola macrocephalus (Kellogg) (Phthiraptera, Ischnocera: Philopteridae), a monoxenous species of chewing louse infesting common nighthawk, Chordeiles minor (Forster) (Caprimulgiformes: Caprimulgidae), in North America, are described. Line drawings of whole nymphs and adults are presented, as are details of anterior dorsal head plates, metasternal plates, female subvulvar plates, and male genitalia. Ontogenetic characters exhibited during the postembryonic development of this species of chewing louse are described and discussed in relation to previous information in the literature.
To identify and to list ectoparasite species of black vulture in two locations in Bucaramanga, Colombia. Scope. To contribute to the knowledge of ectoparasites species found in black vultures in the metropolitan area of Bucaramanga, at the northeastern Andes. Methodology. The birds were captured in Guarin Marketplace and "El Carrasco" Solid Waste Disposal Center, both in the metropolitan area of Bucaramanga, Colombia. To obtain the ectoparasites, each black vulture were introduced into a fumigation chamber previously modified to preserve the life of the bird during the procedure. Moreover, some feathers were taken and preserved in ethanol 70%. Main results. In total, 1,696 ectoparasites were collected from 18 black vultures (Coragyps atratus) in two localities of Bucaramanga (Colombia). The parasites were identified as Cathartacarus coragyps (Gabuciniidae), Dermanysus gallinae (Dermanyssidae), Cuculiphilus alternatus (Menoponidae), Falcolipeurus marginalis (Philopteridae), Laemobothrion glutinans (Laemobothriidae) and Olfesia bisulcata (Hippoboscidae). The most abundant species were Cuculiphilus alternatus with 1,217 specimens and Cathartacarus coragyps with 295. Conclusions. Most of these records are new to the region and contribute to improving the knowledge concerning the ectoparasites distribution in the study area. Mann-Whitney tests and the calculated parasitological indexes show differences between the two sampling places.
Nearly all lineages of birds host parasitic feather lice. Based on recent phylogenomic studies, the three major lineages of modern birds diverged from each other before the Cretaceous-Paleogene (K-Pg) mass extinction event. In contrast, studies of the phylogeny of feather lice on birds, indicate that these parasites diversified largely after this event. However, these studies were unable to reconstruct the ancestral avian host lineage for feather lice. Here we use genome sequences of a broad diversity of lice to reconstruct a phylogeny based on 1,075 genes. By comparing this louse evolutionary tree to the avian host tree, we show that feather lice began diversifying on the common ancestor of waterfowl and landfowl, then radiated onto other avian lineages by extensive host-switching. Dating analyses and cophylogenetic comparisons revealed that two of three lineages of birds that diverged before the K-Pg boundary acquired their feather lice after this event via host-switching.
AbstractUnlike most bird species, individual kingfisher species (Aves: Alcedinidae) are typically parasitized by only a single genus of louse (Alcedoffula,Alcedoecus, orEmersoniella). These louse genera are typically specific to a particular kingfisher subfamily. Specifically,AlcedoecusandEmersoniellaparasitize Halcyoninae, whereasAlcedoffulaparasitizes Alcedininae and Cerylinae. AlthoughEmersoniellais geographically restricted to the Indo-Pacific region,AlcedoecusandAlcedoffulaare geographically widespread. We used DNA sequences from two genes, the mitochondrial COI and nuclear EF-1αgenes, to infer phylogenies for the two geographically widespread genera of kingfisher lice,AlcedoffulaandAlcedoecus. These phylogenies included 47 kingfisher lice sampled from 11 of the 19 currently recognized genera of kingfishers. We compared louse phylogenies to host phylogenies to reconstruct their cophylogenetic history. Two distinct clades occur withinAlcedoffula, one that infests Alcedininae and a second that infests Cerylinae. All species ofAlcedoecuswere found only on host species of the subfamily Halcyoninae. Cophylogenetic analysis indicated thatAlcedoecus, as well as the clade ofAlcedoffulaoccurring on Alcedininae, do not show evidence of cospeciation. In contrast, the clade ofAlcedoffulaoccurring on Cerylinae showed strong evidence of cospeciation.
The functional mechanism of anti-merozoite antibodies.Antibodies to merozoite surface proteins can mediate several eff ector mechanisms, including complement fi xation due to cytophillic antibodies that result in merozoite lysis of C3b opsonization; inhibition of merozoite invasion into the RBC; phagocytosis of IgG-opsonized merozoites; production of reactive oxygen species (ROS) or Nitric oxide (NO) in response to opsonized parasites
Twenty-four species of chewing lice of the genus Myrsidea Waterston, 1915 (Phthiraptera: Menoponidae) from Neotropical Suboscines (Passeriformes: Formicariidae, Furnariidae, Pipridae, Thamnophilidae, Tityridae, Tyrannidae) are recorded and discussed. They include: eight new species which are described and illustrated (Myrsidea capeki new species ex Chiroxiphia caudata; Myrsidea leptopogoni new species ex Leptopogon superciliaris; Myrsidea leucophthalmi new species ex Automolus leucophthalmus; Myrsidea pachyramphi new species ex Pachyramphus polychopterus; Myrsidea philydori new species ex Philydor rufum; Myrsidea pyriglenae new species ex Pyriglena leucoptera; Myrsidea scleruri new species ex Sclerurus scansor and Myrsidea zuzanae new species ex Furnarius rufus), as well as nine previously known species with additional data on intraspecific morphological variability, host associations and geographical distribution (Myrsidea barbati Price, Hellenthal & Dalgleish, 2005; Myrsidea dalgleishi Valim, Price & Johnson, 2011; Myrsidea flaviventris Price, Hellenthal & Dalgleish, 2005; Myrsidea klimesi Sychra, 2006; Myrsidea meyi Valim, Price & Johnson, 2011; Myrsidea oleaginei Price, Hellenthal & Dalgleish, 2005; Myrsidea olivacei Price, Hellenthal & Dalgleish, 2005; Myrsidea pitangi Price, Hellenthal & Dalgleish, 2005 and Myrsidea spellmani Price, Johnson & Dalgleish, 2008b). Seven further species are recorded at genus level only due to lack of adequate material. A 379 bp portion of the mitochondrial cytochrome oxidase I (COI) gene was sequenced from seven species in order to assess relative genetic divergences among Myrsidea populations.
The chewing louse genus Colpocephalum parasitizes nearly a dozen distantly related orders of birds. Such a broad host distribution is relatively unusual in lice. However, the monophyly of the genus Colpocephalum has never been tested using molecular characters. Using one nuclear and one mitochondrial gene, we inferred a phylogeny for 54 lice from the genus Colpocephalum and other morphologically similar genera. The resulting phylogeny demonstrates that Colpocephalum itself is not monophyletic. However, these data support the existence of a Colpocephalum complex within which several lineages are restricted to particular host orders. These lineages corresponded to previously described genera, some of which are morphologically distinct and currently considered subgenera. Maddison–Slatkin tests were performed on the resulting phylogeny and showed that host order, host family and biogeographic region had significant phylogenetic signal when mapped onto the Colpocephalum complex phylogeny. A PARAFIT analysis comparing the overall Colpocephalum complex phylogeny to a host phylogeny revealed significant congruence between host and parasite trees. We also compared the cophylogenetic history of Colpocephalum and their hosts to that of a second distantly related feather louse genus, Degeeriella , which also infests diurnal birds of prey. Using PARAFIT to identify individual host–parasite links that contributed to overall congruence, there was no evidence of correlated cophylogenetic patterns between these two louse groups, suggesting that their host distribution patterns have been shaped by different evolutionary processes.
Resumo Atualmente, 49 espécies de ácaros associadas a morcegos distribuídas em dez famílias e três subordens são registradas no Brasil. Para verificar ocorrência das espécies de ácaros ectoparasitos de morcegos no estado de Mato Grosso do Sul, foram revisados espécimes depositados na Coleção Zoológica de Referência da Universidade Federal de Mato Grosso do Sul e consultadas informações disponíveis na literatura. Foram registradas 25 espécies de ácaros de seis famílias e três subordens no Mato Grosso do Sul. Todas as espécies constituem novo registro geográfico para o estado. Adicionalmente é apresentada uma listagem das espécies de ácaros ectoparasitos de morcegos, com seus respectivos hospedeiros e estados em que ocorrem no Brasil.
We list the genera and species of chewing lice collected from birds by Helmut Sick, mainly from central Brazil, and particularly during the Roncador-Xingu Expedition, between 1943 and 1949. From the 123 samples studied, a wide variety of chewing louse genera and species were found, including 34 species as new records for Brazil, 37 species recorded from new Brazilian localities and 23 new host records. All material is deposited in the ectoparasite collection of the Museu de Zoologia da Universidade de São Paulo.
Parasite diversity accounts for most of the biodiversity on earth, and is shaped by many processes (e.g., cospeciation, host switching). To identify the effects of the processes that shape parasite diversity, it is ideal to incorporate both deep (phylogenetic) and shallow (population) perspectives. To this end, we developed a novel workflow to obtain phylogenetic and population genetic data from whole genome sequences of body lice parasitizing New World ground-doves. Phylogenies from these data showed consistent, highly resolved species-level relationships for the lice. By comparing the louse and ground-dove phylogenies, we found that over long-term evolutionary scales their phylogenies were largely congruent. Many louse lineages (both species and populations) also demonstrated high host-specificity, suggesting ground-dove divergence is a primary driver of their parasites' diversity. However, the few louse taxa that are generalists are structured according to biogeography at the population level. This suggests dispersal among sympatric hosts has some effect on body louse diversity, but over deeper time scales the parasites eventually sort according to host species. Overall, our results demonstrate that multiple factors explain the patterns of diversity in this group of parasites, and that the effects of these factors can vary over different evolutionary scales. The integrative approach we employed was crucial for uncovering these patterns, and should be broadly applicable to other studies.
Up to now, 49 species of bat mites and chiggers are recorded in Brazil, divided into ten families and three suborders. To verify the occurrence of the bat mites and chiggers species in the state of Mato Grosso do Sul, specimens deposited at the "Colecao Zoologica de Referencia da Universidade Federal de Mato Grosso do Sul" were examined and queried information available in literature. It was found 25 species of these mites, belonging to six families from bats in Mato Grosso do Sul. All species are a new geographic record for the state. Additionally, a checklist of bat mites and chiggers, with their respective hosts and states that occur in Brazil is presented.
Two new quill mite species collected from passerine birds in Brazil are described: Torotrogla synallaxis sp. nov. from Synallaxis spixi Sclater (Funariidae) and Syringophilopsis bonariensis sp. nov. from Molothrus bonariensis (Gmelin) (Icteridae). Additionally, three syringophilid species were recorded from new host species captured in Minas Gerais, Brazil: Syringophilopsis tyranni Bochkov and Galloway, 2004 from Satrapa icterophrys (Vieillot) (Tyrannidae); Syringophiloidus stawarczyki Skoracki, 2004 from Dacnis cayana (Linnaeus) (Thraupidae) and Syringophiloidus parapresentalis Skoracki, 2011 from Turdus rufiventris Vieillot (Turdidae). The syringophilid fauna presently recorded from Brazil is summarized. http://zoobank.org/urn:lsid:zoobank.org:pub:XXXX
A new feather mite species, Pteronyssoides turdinus n. sp. (Acariformes: Pteronyssidae), is described from two species of thrushes, Turdus amaurochalinus Cabanis (type-host) and T. leucomelas Vieillot (Passeriformes: Turdidae) in Minas Gerais, Brazil. The new species belongs to the parinus species group and most clearly differs from previously known species of this group by the following features: in both sexes of P. turdinus, setae c2 are anterior to the level of the sejugal furrow; in males, the anterior margin of the hysteronotal shield has a deep trapezoidal concavity, setae d1 are situated on the striated tegument, the adanal shield is represented by a narrow longitudinal sclerite, and tarsus and tibia of legs IV are subequal in length; in females, the opisthosomal sclerites are split into proper opisthosomal sclerites and pygidial fragments encompassing the bases of setae h2 and h3. This is the first description of a feather mite of the genus Pteronyssoides Hull, 1931 from birds of the family Turdidae.