The Experts below are selected from a list of 420 Experts worldwide ranked by ideXlab platform

Maciej Skoracki - One of the best experts on this subject based on the ideXlab platform.

Andre V. Bochkov - One of the best experts on this subject based on the ideXlab platform.

Blair O. Wolf - One of the best experts on this subject based on the ideXlab platform.

  • Avian thermoregulation in the heat: phylogenetic variation among avian orders in evaporative cooling capacity and heat tolerance.
    The Journal of Experimental Biology, 2018
    Co-Authors: Ben Smit, Maxine C. Whitfield, William A. Talbot, Alexander R. Gerson, Andrew E. Mckechnie, Blair O. Wolf
    Abstract:

    ABSTRACT Little is known about the phylogenetic variation of avian evaporative cooling efficiency and heat tolerance in hot environments. We quantified thermoregulatory responses to high air temperature ( T a ) in ∼100-g representatives of three orders, namely, the African cuckoo ( Cuculus gularis , Cuculiformes), lilac-breasted roller ( Coracias caudatus , Coraciiformes) and Burchell9s starling ( Lamprotornis australis , Passeriformes). All three species initiated respiratory mechanisms to increase evaporative heat dissipation when body temperature ( T b ) approached 41.5°C in response to increasing T a , with gular flutter observed in cuckoos and panting in rollers and starlings. Resting metabolic rate and evaporative water loss increased by quantitatively similar magnitudes in all three species, although maximum rates of evaporative water loss were proportionately lower in starlings. Evaporative cooling efficiency [defined as the ratio of evaporative heat loss (EHL) to metabolic heat production (MHP)] generally remained below 2.0 in cuckoos and starlings, but reached a maximum of ∼3.5 in rollers. The high value for rollers reveals a very efficient evaporative cooling mechanism, and is similar to EHL/MHP maxima for similarly sized columbids which very effectively dissipate heat via cutaneous evaporation. This unexpected phylogenetic variation among the orders tested in the physiological mechanisms of heat dissipation is an important step toward determining the evolution of heat tolerance traits in desert birds.

  • Avian thermoregulation in the heat: phylogenetic variation among avian orders in evaporative cooling capacity and heat tolerance
    2017
    Co-Authors: Ben Smit, Maxine C. Whitfield, William A. Talbot, Alexander R. Gerson, Andrew E. Mckechnie, Blair O. Wolf
    Abstract:

    Little is known about the phylogenetic variation of avian evaporative cooling efficiency and heat tolerance in hot environments. We quantified thermoregulatory responses to high air temperature (Ta) in ~100-g representatives of three orders: African cuckoo (Cuculus gularis, Cuculiformes), lilac-breasted roller (Coracias caudatus, Coraciiformes), and Burchells starling (Lamprotornis australis, Passeriformes). All three species initiated respiratory mechanisms to increase evaporative heat dissipation when body temperature (Tb) approached 41.5°C in response to increasing Ta, with gular flutter observed in cuckoos and panting in rollers and starlings. Resting metabolic rate (RMR) and evaporative water loss (EWL) increased by quantitatively similar magnitudes in all three species, although maximum rates of EWL were proportionately lower in starlings. Evaporative cooling efficiency [defined as the ratio of evaporative heat loss (EHL) to metabolic heat production (MHP)] generally remained below 2.0 in cuckoos and starlings, but reached a maximum of ~3.5 in rollers. The high value for rollers reveals a very efficient evaporative cooling mechanism, and is similar to EHL/MHP maxima for similarly sized columbids which very effectively dissipate heat via cutaneous evaporation. This unexpected phylogenetic variation among the orders tested in the physiological mechanisms of heat dissipation is an important step toward determining the evolution of heat tolerance traits in desert birds.

Luiz Gustavo A. Pedroso - One of the best experts on this subject based on the ideXlab platform.

  • new feather mites of the genera aniacarus and aniibius acariformes pterolichidae from two cuckoo species Cuculiformes cuculidae in brazil
    Zootaxa, 2015
    Co-Authors: Sergey Mironov, Fabio A. Hernandes, Luiz Gustavo A. Pedroso
    Abstract:

    Five new species of the family Pterolichidae are described from two common non-parasitic cuckoo species of the subfamily Crotophaginae (Cuculiformes: Cuculidae) in Brazil: Aniacarus ani sp. n. from the Smooth-billed Ani, Crotophaga ani Linnaeus, A. simplex sp. n., A. robustus sp. n., A. coronatus sp. n. and Aniibius guirae sp. n. from the Guira Cuckoo, Guira guira (Gmelin). A key to all known species of Aniacarus is provided. All four pterolichid species associated with the G. guira can occur simultaneously on one host individual. A brief review of studies of feather mites associated with Cuculidae is given.

  • Carcinopodacarus polymorphus gen. n. et sp. n. from Guira guira (Cuculiformes: Cuculidae) in Brazil: a first example of male polymorphism in the family Dermationidae (Acariformes: Analgoidea).
    Folia parasitologica, 2015
    Co-Authors: Fabio Akashi Hernandes, Luiz Gustavo A. Pedroso, Andre V. Bochkov
    Abstract:

    Carcinopodacarus polymorphus gen. n. et sp. n. (Acariformes: Dermationidae: Dermationinae) is described from the guira cuckoo Guira guira (Gmelin) (Cuculiformes: Cuculidae) in Brazil. The new genus differs from the closest genus, Psittophagoides Fain, 1964, by the following features: in both sexes, the anterior spines of trochanters I and II are absent (vs present in Psittophagoides), setae d2 are distinctly developed (vs only alveoli), and genual setae mGI are absent (vs present); in males, the hysteronotal shield is split transversally at the level of trochanters III (vs hysteronotal shield entire); in females, the platelets situated posterior to the propodonotal shield are absent (vs present), the metapodosomal sclerites are present (vs absent), and the adanal shields are fused anteriorly to each other (vs separated from each other). In this species, andropolymorphism is detected for the first time for the family. It involves various characters but the most impressive feature is the structure of legs III. In hetero- and mesomorphic males, these legs are strongly hypertrophied and have a distinct ventral spur on femora III; in homeomorphic males, legs III are not modified and subequal to legs IV.

  • From cuckoos to chickens: a caught-in-the-act case of host shift in feather mites (Arachnida: Acari: Psoroptoididae)
    Parasitology Research, 2014
    Co-Authors: Fabio A. Hernandes, Luiz Gustavo A. Pedroso, Sergey V. Mironov
    Abstract:

    Feather mites are highly specialized permanent ectosymbionts recorded from all recently recognized bird orders. These mites, specialized to live in the plumage of their hosts, rarely cause any visible damage to their specific hosts. Recently described feather mite Allopsoroptoides galli Mironov (Acariformes: Psoroptoididae) was reported to cause severe mange in chickens in Brazil, leading to unprecedented economic losses. Until now, the natural host of A. galli remained unknown. In this paper, we report its true wild host, the Guira cuckoo Guira guira (Cuculiformes: Cuculidae). In addition, a previously unknown heteromorphic form of males is described from the mite population distributed on its natural host. We also speculate a possible scenario by which this mite species could have been horizontally transferred from the wild populations of the natural host to the secondary hosts.

Fabio A. Hernandes - One of the best experts on this subject based on the ideXlab platform.

  • A review of the feather mite family Gabuciniidae Gaud amp; Atyeo (Acariformes: Astigmata: Pterolichoidea) of Brazil, with descriptions of eleven new species.
    Zootaxa, 2020
    Co-Authors: Fabio A. Hernandes
    Abstract:

    The feather mite family Gabuciniidae currently includes 16 genera and approximately 65 described species associated with birds of nine orders, with the greatest diversity on Accipitriformes. In this study, 11 new species are described from the following hosts: Aetacarus accipiter sp. nov. from the Bicolored Hawk Accipiter bicolor (Vieillot, 1817) (Accipitriformes: Accipitridae), Capitolichus campoflicker sp. nov. from the Campo Flicker Colaptes campestris (Vieillot, 1818) (Piciformes: Picidae), Coraciacarus cabure sp. nov. from the Barred Forest-falcon Micrastur ruficollis (Vieillot, 1817) (Falconiformes: Falconidae), Coraciacarus peixefrito sp. nov. from the Pheasant Cuckoo Dromococcyx phasianellus (Spix, 1824) (Cuculiformes: Cuculidae), Gabucinia neotropica sp. nov. from the Curl-crested Jay Cyanocorax cristatellus (Temminck, 1823) (type host) and C. chrysops (Vieillot, 1818) (Passeriformes: Corvidae), Hieracolichus caboclo sp. nov. from the Savanna Hawk Buteogallus meridionalis (Latham, 1790) (Accipitriformes: Accipitridae), Hieracolichus falcon sp. nov. from the Southern Caracara Caracara plancus (Miller, 1777) (Falconiformes: Falconidae), Piciformobia adjuncta sp. nov. from the Guira Cuckoo Guira guira (Gmelin, 1788) (Cuculiformes: Cuculidae), Proaposolenidia bicolor sp. nov. from the Bicolored Hawk Accipiter bicolor (Vieillot, 1817) (Accipitriformes: Accipitridae), Proaposolenidia plumbea sp. nov. from the Plumbeous Kite Ictinia plumbea (Gmelin, 1788) (Accipitriformes: Accipitridae), and Tocolichus toco sp. nov. from the Toco Toucan Ramphastos toco Statius Muller, 1776 (Piciformes: Ramphastidae). In addition, two new combinations are proposed, Proaposolenidia ostoda (Gaud, 1983) comb. nov. and Aetacarus hirundo (Megnin Trouessart, 1884) comb. nov., both transferred from the genus Hieracolichus. With the addition of these new species, the number of gabuciniids described from the Neotropical region has increased from 14 to 25 species. These findings indicate that Brazil is home to a large diversity of undescribed gabuciniids, which is not surprising considering the vast bird fauna of this country, and especially since most avian species from Brazil have yet to be investigated for their feather mites.

  • new feather mites of the genera aniacarus and aniibius acariformes pterolichidae from two cuckoo species Cuculiformes cuculidae in brazil
    Zootaxa, 2015
    Co-Authors: Sergey Mironov, Fabio A. Hernandes, Luiz Gustavo A. Pedroso
    Abstract:

    Five new species of the family Pterolichidae are described from two common non-parasitic cuckoo species of the subfamily Crotophaginae (Cuculiformes: Cuculidae) in Brazil: Aniacarus ani sp. n. from the Smooth-billed Ani, Crotophaga ani Linnaeus, A. simplex sp. n., A. robustus sp. n., A. coronatus sp. n. and Aniibius guirae sp. n. from the Guira Cuckoo, Guira guira (Gmelin). A key to all known species of Aniacarus is provided. All four pterolichid species associated with the G. guira can occur simultaneously on one host individual. A brief review of studies of feather mites associated with Cuculidae is given.

  • From cuckoos to chickens: a caught-in-the-act case of host shift in feather mites (Arachnida: Acari: Psoroptoididae)
    Parasitology Research, 2014
    Co-Authors: Fabio A. Hernandes, Luiz Gustavo A. Pedroso, Sergey V. Mironov
    Abstract:

    Feather mites are highly specialized permanent ectosymbionts recorded from all recently recognized bird orders. These mites, specialized to live in the plumage of their hosts, rarely cause any visible damage to their specific hosts. Recently described feather mite Allopsoroptoides galli Mironov (Acariformes: Psoroptoididae) was reported to cause severe mange in chickens in Brazil, leading to unprecedented economic losses. Until now, the natural host of A. galli remained unknown. In this paper, we report its true wild host, the Guira cuckoo Guira guira (Cuculiformes: Cuculidae). In addition, a previously unknown heteromorphic form of males is described from the mite population distributed on its natural host. We also speculate a possible scenario by which this mite species could have been horizontally transferred from the wild populations of the natural host to the secondary hosts.

  • feather mites of brazil acari astigmata analgoidea and pterolichoidea
    International Journal of Acarology, 2011
    Co-Authors: Michel P Valim, Fabio A. Hernandes, Heather C Proctor
    Abstract:

    ABSTRACT We present a checklist of feather mites known from native birds in Brazil. The list was compiled from a survey of Brazilian records published in indexing databases (e.g. Zoological Records) and from the available literature. To date, 185 nominal species representing 21 families have been recorded from Brazilian birds. Associations with 15 bird orders were found: Anseriformes, Apodiformes, Caprimulgiformes, Ciconiiformes, Columbiformes, Cuculiformes, Falconiformes, Galliformes, Gruiformes, Opisthocomiformes, Passeriformes, Piciformes, Psittaciformes, Tinamiformes and Trogoniformes. These birds sum to 218 species, which represent only 12.4% of all bird species occurring in Brazil. The feather mite fauna of several species-rich and important bird orders in Brazil remain unexplored, including Cathartiformes, Charadriiformes, Coraciiformes, Galbuliformes and Strigiformes. We estimate that between 900 and 5300 feather mite species are expected to occur on Brazilian birds, which is at least five times g...