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1.
Dev Biol ; 510: 50-65, 2024 Jun.
Artigo em Inglês | MEDLINE | ID: mdl-38521499

RESUMO

Bilaterian animals have evolved complex sensory organs comprised of distinct cell types that function coordinately to sense the environment. Each sensory unit has a defined architecture built from component cell types, including sensory cells, non-sensory support cells, and dedicated sensory neurons. Whether this characteristic cellular composition is present in the sensory organs of non-bilaterian animals is unknown. Here, we interrogate the cell type composition and gene regulatory networks controlling development of the larval apical sensory organ in the sea anemone Nematostella vectensis. Using single cell RNA sequencing and imaging approaches, we reveal two unique cell types in the Nematostella apical sensory organ, GABAergic sensory cells and a putative non-sensory support cell population. Further, we identify the paired-like (PRD) homeodomain gene prd146 as a specific sensory cell marker and show that Prd146+ sensory cells become post-mitotic after gastrulation. Genetic loss of function approaches show that Prd146 is essential for apical sensory organ development. Using a candidate gene knockdown approach, we place prd146 downstream of FGF signaling in the apical sensory organ gene regulatory network. Further, we demonstrate that an aboral FGF activity gradient coordinately regulates the specification of both sensory and support cells. Collectively, these experiments define the genetic basis for apical sensory organ development in a non-bilaterian animal and reveal an unanticipated degree of complexity in a prototypic sensory structure.


Assuntos
Anêmonas-do-Mar , Animais , Anêmonas-do-Mar/genética , Sistema Nervoso , Gastrulação/genética , Genes Homeobox
2.
Protoplasma ; 2024 Jan 18.
Artigo em Inglês | MEDLINE | ID: mdl-38236420

RESUMO

Some mosquitoes, including species of the genus Toxorhynchites, are known for actively preying on other mosquito larvae, making these predators valuable allies in the fight against vector-borne diseases. A comprehensive understanding of the anatomy and physiology of these potential biological control agents is helpful for the development of effective strategies for controlling vector populations. This includes the antennae, a crucial component in the search for hosts, mating, and selection of oviposition sites. This study utilized scanning electron microscopy to characterize the sensilla on the antennae of adult mosquitoes from two species that are exclusively phytophagous, including Toxorhynchites theobaldi and Toxorhynchites violaceus, as well as Lutzia bigoti, which females are allegedly hematophagous. The types of sensilla in each species were compared, and five basic types of antennal sensilla were identified: trichoid, chaetic, coeloconic, basiconic, and ampullacea. The analysis also found that they were morphologically similar across the three species, regardless of feeding habits or sex. The identification and characterization of basic types of antennal sensilla in T. theobaldi, T. violaceus, and L. bigoti suggest that these structures, which play a crucial role in the behavior and ecology, have common functions across different mosquito species, despite differences in feeding habits or sex.

3.
J Therm Biol ; 118: 103721, 2023 Dec.
Artigo em Inglês | MEDLINE | ID: mdl-38016229

RESUMO

Global warming has been identified as one of the main drivers of population decline in insect pollinators. One aspect of the insect life cycle that would be particularly sensitive to elevated temperatures is the developmental transition from larva to adult. Temperature-induced modifications to the development of body parts and sensory organs likely have functional consequences for adult behaviour. To date, we have little knowledge about the effect of sub-optimal temperature on the development and functional morphology of different body parts, particularly sensory organs, in ectothermic solitary pollinators such as butterflies. To address this knowledge gap, we exposed the pupae of the butterfly Pieris napi to either 23 °C or 32 °C and measured the subsequent effects on eclosion, body size and the development of the wings, proboscis, eyes and antennae. In comparison to individuals that developed at 23 °C, we found that exposure to 32 °C during the pupal stage increased mortality and decreased time to eclose. Furthermore, both female and male butterflies that developed at 32 °C were smaller and had shorter proboscides, while males had shorter antennae. In contrast, we found no significant effect of rearing temperature on wing and eye size or wing deformity. Our findings suggest that increasing global temperatures and its corresponding co-stressors, such as humidity, will impact the survival of butterflies by impairing eclosion and the proper development of body and sensory organs.


Assuntos
Borboletas , Humanos , Masculino , Animais , Feminino , Borboletas/anatomia & histologia , Temperatura , Larva , Pupa , Umidade
4.
Arthropod Struct Dev ; 76: 101296, 2023 Sep.
Artigo em Inglês | MEDLINE | ID: mdl-37657362

RESUMO

Mosquitoes rely mainly on the olfactory system to track hosts. Sensilla contain olfactory neuron receptors that perceive different kinds of odorants and transfer crucial information regarding the surrounding environment. Anopheles maculatus and An. sawadwongporni, members of the Maculatus Group, are regarded as vectors of malaria in Thailand. The fine structure of their sensilla has yet to be identified. Herein, scanning electron microscopy is used to examine the sensilla located on the antennae of adults An. maculatus and An. sawadwongporni, collected from the Thai-Myanmar border. Four major types of antennal sensilla are discovered in both species: chaetica, coeloconica, basiconica (grooved pegs) and trichodea. The antennae of female An. maculatus have longer lengths (µm, mean ± SE) in the long sharp-tipped trichodea (40.62 ± 0.35 > 38.20 ± 0.36), blunt-tipped trichodea (20.39 ± 0.62 > 18.62 ± 0.35), and basiconica (7.84 ± 0.15 > 7.41 ± 0.12) than those of An. sawadwongporni. Using light microscopy, it is found that the mean numbers of large sensilla coeloconica (lco) on both flagella in An. maculatus (left: 32.97 ± 0.48; right: 33.27 ± 0.65) are also greater when compared to An. sawadwongporni (left: 30.40 ± 0.62; right: 29.97 ± 0.49). The mean counts of lco located on flagellomeres 1-3, 6, and 9 in An. maculatus are significantly higher than those of An. sawadwongporni. The data in this study indicate that two closely related Anopheles species exhibit similar morphology of sensilla types, but show variations in length, and likewise in the number of large sensilla coeloconica between them, suggesting they might be causative factors that affect their behaviors driven by the sense of smell.


Assuntos
Anopheles , Malária , Feminino , Animais , Sensilas , Mosquitos Vetores , Microscopia Eletrônica de Varredura
5.
Rev. Bras. Neurol. (Online) ; 59(2): 30-38, abr.-jun. 2023. fig
Artigo em Inglês | LILACS-Express | LILACS | ID: biblio-1443710

RESUMO

Hippocrates was one of the greatest physicians ever, and merited unquestionably, the title of 'Father of Medicine'. He, together with other authors, formed an assemble of texts known as 'Hippocratic Collection' (or 'Hippocratic Corpus'). There, the ample and brilliant medical experience remained documented, and left as a legacy. Even after almost two and a half millennia, these medical writings continue to be admired, and regarded as a lasting fount of inspiration. However, regarding anatomy, including that of the nervous system, and related structures, the texts are poor. About the nervous system, he mentioned the brain and its two hemispheres, the spinal cord, and the sensory organs. The related structures are also cited, comprising the meninges, the cerebrospinal fluid, and the blood vessels, as well as the skull, and the vertebral column. The functions of the brain were partly explained, and he ascribed to the brain the main ruling function of the body, a mark of encephalocentric position. Thus, counterposed to his ample medical accomplishments was his poor anatomical contribution. However, it must be recognized that the incipient contribution on anatomy that was legated, represented an important starting point for upcoming scholars and further studies on the subject.


Hipócrates foi um dos maiores médicos de todos os tempos, merecendo, de modo inquestionável, o título de 'Pai da Medicina'. Ele, juntamente com outros autores, constituiu um conjunto de textos conhecido como 'Coleção Hipocrática' (ou 'Corpo Hipocrático'). Lá, a ampla e brilhante experiência médica permaneceu documentada e deixada como um legado. Mesmo após quase dois e meio milênios, estes escritos médicos continuam a ser admirados e vistos como uma fonte duradoura de inspiração. Entretanto, considerando a anatomia, os textos são pobres, inclusive os sobre o sistema nervoso e estruturas relacionadas. Quanto ao sistema nervosa, ele mencionou o cérebro e seus dois hemisférios, a medula, e os órgãos sensoriais. As estruturas relacionadas também são mencionadas, compreendendo as meninges, o líquido cefalorraquidiano, e os vasos sanguíneos, assim como o crânio e a coluna vertebral. As funções cerebrais foram explicadas em parte e ele atribuiu ao cérebro a principal função de controle do corpo, uma marca de sua posição encefalocêntrica. Assim, contraposto às suas amplas realizações médicas foi sua contribuição anatômica pobre. Entretanto, deve ser reconhecido que a contribuição incipiente sobre anatomia que foi legada representou um ponto de partida importante para os estudiosos porvindouros e os estudos que prosseguiram sobre o assunto.

6.
Cells ; 12(8)2023 04 13.
Artigo em Inglês | MEDLINE | ID: mdl-37190059

RESUMO

Serotonin (5-hydroxytryptamine (5-HT)) is a biogenic monoamine with pleiotropic functions. It exerts its roles by binding to specific 5-HT receptors (5HTRs) classified into different families and subtypes. Homologs of 5HTRs are widely present in invertebrates, but their expression and pharmacological characterization have been scarcely investigated. In particular, 5-HT has been localized in many tunicate species but only a few studies have investigated its physiological functions. Tunicates, including ascidians, are the sister group of vertebrates, and data about the role of 5-HTRs in these organisms are thus important for understanding 5-HT evolution among animals. In the present study, we identified and described 5HTRs in the ascidian Ciona intestinalis. During development, they showed broad expression patterns that appeared consistent with those reported in other species. Then, we investigated 5-HT roles in ascidian embryogenesis exposing C. intestinalis embryos to WAY-100635, an antagonist of the 5HT1A receptor, and explored the affected pathways in neural development and melanogenesis. Our results contribute to unraveling the multifaceted functions of 5-HT, revealing its involvement in sensory cell differentiation in ascidians.


Assuntos
Ciona intestinalis , Animais , Ciona intestinalis/metabolismo , Serotonina/metabolismo , Vertebrados , Invertebrados , Receptores de Serotonina
7.
Micron ; 171: 103483, 2023 08.
Artigo em Inglês | MEDLINE | ID: mdl-37207547

RESUMO

Among lizards, geckos possess special digital scales modified as hairy-like lamellae that allow attachment to vertical substrates for the movement using adhesive nanoscale filaments called setae. The present study shows new ultrastructural details on setae formation in the gecko Tarentula mauritanica. Setae derive from the special differentiation of an epidermal layer termed Oberhauchen and can reach 30-60 µm in length. Oberhautchen cells in the adhesive pad lamellae becomes hypertrophic and rest upon 2 layers of non-corneous and pale cells instead of beta-cells like in the other scales. Only 1-2 beta-layers are formed underneath the pale layer. Setae derive from the accumulation of numerous roundish and heterogenous beta-packets with variable electron-density in Oberhautchen cells, possibly indicating a mixed protein composition. Immunofluorescence and immunogold labeling for CBPs show that beta-packets merge at the base of the growing setae forming long corneous bundles. Pale cells formed underneath the Oberhautchen layer contain small vesicles or tubules with a likely lipid content, sparse keratin filaments and ribosomes. In mature lamellae these cells merge with Oberhautchen and beta-cells forming a thin electron-paler layer located between the Oberhautchen and the thin beta-layer, a variation of the typical sequence of epidermal layers present in other scales. The formation of a softer pale layer and of a thin beta-layer likely determines a flexible corneous support for the adhesive setae. The specific molecular mechanism that stimulates the cellular changes observed during Oberhautchen hypertrophy and the alteration of the typical epidermal stratification in the pad epidermis remains unknown.


Assuntos
Adesivos , Lagartos , Animais , Adesivos/metabolismo , Epiderme/ultraestrutura , Células Epidérmicas , Proteínas , Queratinas
8.
Protoplasma ; 260(5): 1407-1420, 2023 Sep.
Artigo em Inglês | MEDLINE | ID: mdl-37097493

RESUMO

Micro-ornamentations characterize the surface of scales in lepidosaurians and are summarized in four main patterns, i.e., spinulated, lamellated, lamellate-dentate, and honeycomb, although variations of these patterns are present in different species. Although geckos are known to possess a spinulated pattern derived from the Oberhautchen layer, also other pattern variations of the spinulated micro-ornamentation are present such as those indicated as dendritic ramification, corneous belts, and small bare patches. The present study mainly describes the variation of micro-ornamentations present in scales of different skin regions in the Mediterranean gecko Tarentula mauritanica using scannig and transmission electron microscopy. The study reports that the accumulation of corneous material in Oberhautchen cells is not homogenous in different areas of body scales and, when mature, this process gives rise to different sculpturing on the epidermal surface generating not only spinulae but also transitional zones leading to the other main patterns. It is hypothesized that spinulae formation derives from the vertical and lateral symmetric growth of tubercolate, non-overlapped scales of geckos. Sparse areas also result smooth or with serpentine-ridges likely revealing the beta-layer located underneath and merged with the Oberhautchen. The eco-functional role of this variable micro-ornamentation in the skin of lizards however remains largely speculative.


Assuntos
Epiderme , Lagartos , Animais , Células Epidérmicas
9.
Rev. Bras. Neurol. (Online) ; 59(1): 23-29, jan.-mar. 2023. fig
Artigo em Inglês | LILACS-Express | LILACS | ID: biblio-1426192

RESUMO

Aristoteles was probably the first anatomist in the modern sense of this term. He wrote on human anatomy relying on the external aspects, and the lacking data on internal structures were generalized through the study of lower animals. The different body regions were described according to a precise topography, and his contribution to the development of anatomy was extensive, as he correctly described many organs and introduced new terms to indicate anatomical structures. Regarding the nervous system, he identified the brain and the two hemispheres, the cerebellum, and the spinal cord. The brain coverings, the meninges, were identified, a tougher external, and a delicate internal, and the related blood vessels. He described the bony casing, the skull and part of its bones and sutures, as well as the vertebral column formed by distinct holed vertebrae. The sensory organs were also defined, but he overlooked the presence of nerves, confusing such structures with vessels, tendons, ducts, among other similar structures. Additionally, he explained the functions of the brain, to which he attributed an important role, despite his cardiocentric standpoint. More than twenty and three centuries have elapsed since Aristoteles began his biological investigation, and his work was and continues to be admired, despite the inaccuracies that were pointed out by later authors. Evidently, knowledge on anatomy of the nervous system before Aristoteles was very scant, thus, it must be recognized that the pioneer anatomical studies he performed may be seen as fundamental, leaving a solid ground for future research on anatomy.


Aristóteles foi provavelmente o primeiro anatomista no sentido moderno deste termo. Escreveu sobre anatomia humana baseado nos aspectos externos, e os dados em falta sobre as estruturas internas eram generalizados através do estudo de animais inferiores. As diversas regiões do corpo foram descritas de acordo a uma topografia precisa e sua contribuição para o desenvolvimento da anatomia foi extensa, considerando que ele descreveu corretamente muitos órgãos e introduziu novos termos para indicar estruturas anatômicas. Considerando o sistema nervoso, identificou o cérebro e os dois hemisférios, o cerebelo e a medula. As coberturas cerebrais, as meninges, foram identificadas, uma externa resistente, e uma delicada interna, e os vasos sanguíneos relacionados. Descreveu o invólucro ósseo, o crânio e parte de seus ossos e suturas, assim como a coluna vertebral formada por vértebras perfuradas distintas. Os órgãos sensoriais também foram descritos, mas a presença de nervos foi ignorada, confundindo tais estruturas com vasos, tendões, dutos, entre outras estruturas similares. Adicionalmente, descreveu funções do cérebro, ao qual atribuiu um papel importante, apesar do seu ponto de vista cardiocêntrico. Mais de vinte e três séculos decorreram desde que Aristóteles começou suas investigações biológicas, e sua obra foi e continua sendo admirada, apesar das imperfeições apontadas por autores que se seguiram. Evidentemente, o conhecimento da anatomia do sistema nervoso antes de Aristóteles era muito escasso, assim, deve ser reconhecido que os estudos anatômicos pioneiros que ele realizou podem ser vistos como fundamentais, deixando solo firme para pesquisas futuras sobre anatomia.

10.
Insects ; 13(10)2022 Oct 06.
Artigo em Inglês | MEDLINE | ID: mdl-36292855

RESUMO

Coeloides qinlingensis Dang et Yang, 1989 (Hymenoptera: Braconidae) is a biocontrol agent of several scolytid pine pests in Southwest China. We examined the fine morphology of the antennae of adult C. qinlingensis, as well as the type, shape, and distribution of antennal sensilla, via scanning electron microscopy. The antennae of female and male C. qinlingensis are filiform and comprise a scape, pedicel, and 31-36 flagellomeres. We detected sexual dimorphism in antennal flagellar length but not in the length of other subsegments. A total of nine morphological types of antennal sensilla varying in cuticular pore structure are present in both sexes, including nonporous types (sensilla trichodea, sensilla chaetica (2 subtypes), and sensilla coeloconica); apical pore types (sensilla basiconica and sensilla auricillica); and multiporous types (dome-shaped sensilla and sensilla placodea (2 subtypes)). Dome-shaped sensilla and sensilla auricillica are reported for the first time for C. qinlingensis, and their shape differs from that of sensilla in other parasitic wasps. The functional morphology of the sensilla of C. qinlingensis was compared with that of the sensilla of other parasitic wasps, including those that parasitize concealed insects. This information provides a foundation for further research on the chemical communication and behavior of C. qinlingensis.

11.
Acta Trop ; 232: 106494, 2022 Aug.
Artigo em Inglês | MEDLINE | ID: mdl-35508270

RESUMO

Antennae and maxillary palpi are the most important sensory organs involved in the behaviors of black flies. The ultrastructure of sensilla on these sensory appendages of two human-biting black fly species, Similium nigrogilvum and Simulium umphangense, was studied for the first time. Wild adult females of both species were collected in Umphang District, Tak Province, western Thailand. The morphology and distribution of sensilla were examined using scanning electron microscopy. Overall, the morphology of the antennae and maxillary palpi and distribution of sensilla are similar in the two species. Four major types of sensilla were found on the antennae of both species: sensilla basiconica (three subtypes), coeloconica, chaetica (four subtypes), and trichodea. However, sensilla basiconica subtype IV are only present on the antennal surface of S. nigrogilvum. Sensilla trichodea are the most abundant among the four types of sensilla that occur on the antennae of both species. Significant differences in the length of the antennae (scape and flagellomere IX), length of the maxillary palpi (whole and palpal segments I, III, IV and V), and the length and basal width of four sensilla types (trichodea, chaetica, basiconica, and coeloconica) were found. In addition, two types of sensilla were observed on the maxillary palpi: sensilla chaetica (three subtypes) and bulb-shaped sensilla. Differences were observed in the numbers of bulb-shaped sensilla in the sensory vesicles of S. nigrogilvum and S. umphangense. The findings are compared with the sensilla of other insects, and the probable functions of each sensillum type are discussed. The anatomical data on sensory organs derived from this study will help to better understand black fly behavior.


Assuntos
Sensilas , Simuliidae , Animais , Antenas de Artrópodes , Feminino , Humanos , Microscopia Eletrônica de Varredura , Sensilas/ultraestrutura , Tailândia
12.
Microsc Microanal ; : 1-14, 2022 Apr 22.
Artigo em Inglês | MEDLINE | ID: mdl-35450550

RESUMO

Social wasps have a widespread Neotropical distribution and are important pollinators and biological control agents for pest insects. The foraging activity of wasps is influenced by biotic and abiotic factors that are detected by the antennal sensilla that vary according to species, sex, caste, and environmental conditions. This study compares the types and quantities of antennal sensilla with a scanning electron microscope between the nocturnal Apoica flavissima and the diurnal Polistes simillimus wasps. Six types of sensilla were found in the antennae of both species: placoid, coeloconic, basiconic-type 1, basiconic-type 2, trichoid-type 1, and trichoid-type 2. Sensilla chaetica were found only in the scape and pedicel of A. flavissima. In the nocturnal wasp, there are 19,132.27 ± 1,247.72 sensilla in the left and 17,746.46 ± 1,477.46 in the right antennae, whereas in the diurnal wasp 14,936.72 ± 1,271.69 in the left and 16,090.82 ± 1,345.3 in the right antennae. A. flavissima has a longer antennal length and number of sensilla than P. simillimus. The higher number of antennal sensilla in the nocturnal wasp is not linked with the antennal size. The association of antennal sensilla functions with ecological and behavioral factors of A. flavissima and P. simillimus are discussed.

13.
Naturwissenschaften ; 108(5): 45, 2021 Sep 28.
Artigo em Inglês | MEDLINE | ID: mdl-34581877

RESUMO

Animals highly depend on their sensory organs to detect information about their surrounding environment. Among animal sensory organs, those of insects have a notable ability to detect information despite their small size, which might be, therefore, one of the reasons for the evolutionary success of insects. However, insect sensory organs are seldom fossilized in sediments due to their small size and fragility. A potential solution for this problem is the study of exceptionally well-preserved fossil material from amber. Unfortunately, the resolution of existing non-destructive analysis is insufficient to observe details of these micro sensory organs even with amber preservation. Here, we focus on the analysis of the micro sensory organs of an extinct male cockroach (Huablattula hui Qiu et al., 2019) in Cretaceous amber by combining destructive and non-destructive methods. Compared to extant species inhabiting dark environments, H. hui has relatively large compound eyes, and all the antennal sensilla for detecting multimodal information observed here are fewer or smaller. The characteristics of these sensory organs support the diurnality of the bright habitats of H. hui in contrast to many extant cockroaches. Like extant male mantises, grooved basiconic type sensilla exist abundantly on the antenna of the fossilized specimen. The abundance of grooved basiconic sensilla in mantid males results from using sex pheromones, and therefore, H. hui may have likewise used mantis-like intersexual communication. These lines of evidence suggest that the ecology and behavior of Cretaceous cockroaches were more diverse than those of related extant species.


Assuntos
Baratas , Mantódeos , Âmbar , Animais , Fósseis , Masculino , Sensilas
14.
Animals (Basel) ; 11(8)2021 Aug 23.
Artigo em Inglês | MEDLINE | ID: mdl-34438928

RESUMO

The ASICs, in mammals as in fish, control deviations from the physiological values of extracellular pH, and are involved in mechanoreception, nociception, or taste receptions. They are widely expressed in the central and peripheral nervous system. In this review, we summarized the data about the presence and localization of ASICs in different organs of zebrafish that represent one of the most used experimental models for the study of several diseases. In particular, we analyzed the data obtained by immunohistochemical and molecular biology techniques concerning the presence and expression of ASICs in the sensory organs, such as the olfactory rosette, lateral line, inner ear, taste buds, and in the gut and brain of zebrafish.

15.
Dev Dyn ; 250(10): 1450-1462, 2021 10.
Artigo em Inglês | MEDLINE | ID: mdl-33715274

RESUMO

BACKGROUND: Eya2 expression during mouse development has been studied by in situ hybridization and it has been shown to be involved skeletal muscle development and limb formation. Here, we generated Eya2 knockout (Eya2- ) and a lacZ knockin reporter (Eya2lacZ ) mice and performed a detailed expression analysis for Eya2lacZ at different developmental stages to trace Eya2lacZ -positive cells in Eya2-null mice. We describe that Eya2 is not only expressed in cranial sensory and dorsal root ganglia, retina and olfactory epithelium, and somites as previously reported, but also Eya2 is specifically detected in other organs during mouse development. RESULTS: We found that Eya2 is expressed in ocular and trochlear motor neurons. In the inner ear, Eya2lacZ is specifically expressed in differentiating hair cells in both vestibular and cochlear sensory epithelia of the inner ear and Eya2-/- or Eya2lacZ/lacZ mice displayed mild hearing loss. Furthermore, we detected Eya2 expression during both salivary gland and thymus development and Eya2-null mice had a smaller thymus. CONCLUSIONS: As Eya2 is coexpressed with other members of the Eya family genes, these results together highlight that Eya2 as a potential regulator may act synergistically with other Eya genes to regulate the differentiation of the inner ear sensory hair cells and the formation of the salivary gland and thymus.


Assuntos
Orelha Interna/metabolismo , Desenvolvimento Embrionário/genética , Regulação da Expressão Gênica no Desenvolvimento , Perda Auditiva/metabolismo , Peptídeos e Proteínas de Sinalização Intracelular/metabolismo , Proteínas Nucleares/metabolismo , Proteínas Tirosina Fosfatases/metabolismo , Animais , Diferenciação Celular/fisiologia , Orelha Interna/embriologia , Perda Auditiva/genética , Peptídeos e Proteínas de Sinalização Intracelular/genética , Camundongos , Camundongos Knockout , Camundongos Transgênicos , Proteínas Nucleares/genética , Proteínas Tirosina Fosfatases/genética
16.
J Dev Biol ; 9(1)2021 Jan 05.
Artigo em Inglês | MEDLINE | ID: mdl-33466292

RESUMO

The Drosophila eye displays peculiar sensory organs of unknown function, the mechanosensory bristles, that are intercalated among the adjacent ommatidia. Like the other Drosophila sensory organs, the mechanosensory bristles consist of a bipolar neuron and two tandemly aligned centrioles, the distal of which nucleates the ciliary axoneme and represents the starting point of the ciliary rootlets. We report here that the centriole associated protein Sas-4 colocalizes with the short ciliary rootlets of the mechanosensory bristles and with the elongated rootlets of chordotonal and olfactory neurons. This finding suggests an unexpected cytoplasmic localization of Sas-4 protein and points to a new underscored role for this protein. Moreover, we observed that the sheath cells associated with the sensory neurons also display two tandemly aligned centrioles but lacks ciliary axonemes, suggesting that the dendrites of the sensory neurons are dispensable for the assembly of aligned centrioles and rootlets.

17.
Arthropod Struct Dev ; 60: 101023, 2021 Jan.
Artigo em Inglês | MEDLINE | ID: mdl-33401135

RESUMO

The setae of mites are not regarded as secretory structures, yet in the flat mite genus Raoiella, each developmental stage presents droplets of fluid associated with the tips of their dorsal setae. To understand the origin of this fluid, the ultrastructure of the dorsal setae is investigated in females of Raoiella bauchani Beard & Ochoa and the invasive pest species Raoiella indica Hirst using scanning and transmission electron microscopy techniques. The dorsal setae are barbed along their entire length and have either a broadened plumose or a flat spatulate tip. Ultrastructurally, they present the typical features of mechanoreceptors, but have a "hollow" axis represented by a protoplasmatic core containing dendritic branches. This combination of ultrastructural characters indicates that the setae might be multimodal receptors: acting as both mechanoreceptors and contact chemoreceptors. The epidermal cells that underlie the setal sockets are columnar and have an ultrastructure that suggests they have a glandular function. Moreover, these cells present regular microvilli apically and form extracellular cuticular canals, containing epicuticular filaments, that are connected with the microvilli proximally and which open via pores onto the surface of the setal base distally. This arrangement indicates that the secretion from the microvilli passes into the canals and is then conducted to pores at the base of the seta, where it then accumulates and moves up the setal shaft, along the longitudinal grooves of the barbs. Based on similar arrangements in some insect taxa, the organization of the structures here observed in Raoiella suggests the passage of a non-polar, water insoluble, lipoid fluid through the cuticle, the function of which is still obscure.


Assuntos
Ácaros/ultraestrutura , Sensilas/ultraestrutura , Animais , Células Quimiorreceptoras/ultraestrutura , Feminino , Mecanorreceptores/ultraestrutura , Microscopia Eletrônica de Varredura , Microscopia Eletrônica de Transmissão , Especificidade da Espécie
18.
Zookeys ; 1079: 145-227, 2021.
Artigo em Inglês | MEDLINE | ID: mdl-35068961

RESUMO

SCUBA diving explorations of three islands off Dumont d'Urville Station at the coast of Adélie Land, East Antarctica, enabled the observation of marine ice caves. Sampling in this unusual habitat yielded a total of three species of Mysidae, altogether previously poorly known or unknown to science. Pseudommakryotroglodytum sp. nov. is described, based on the structure of the antennal scale, telson and on cornea-like lateral portions set off against the main body of eyeplates. Mysidetesilligi is re-established at species level after almost a century in synonymy. Re-descriptions are provided for M.illigi and M.hanseni, based on types and ice cave materials. Keys to the Southern Ocean species of Pseudomma and to the world-wide species of Mysidetes are given. Phylogenetic trees are provided for the genera Pseudomma and Mysidetes. 18S rDNA sequences of P.kryotroglodytum differ from GenBank sequences of other Pseudomma species. First sequence data are given for species of the genus Mysidetes: 18S differs between the two examined species and COI is quite diverse between and within species. We found previously unknown, probably sensorial structures in these ice cave species: in P.kryotroglodytum, the basal segment of the antennula shows a pit-like depression with striated pad on the bottom and a median cyst, connected with the bottom of the eyeplate cleft. M.illigi shows a female homologue of the appendix masculina bearing a field of modified setae. Subsequent investigations demonstrated these structures also in species from other habitats. The feeding apparatus and stomach contents of the three ice cave species point to brushing of small particles (detritus, microalgae) from available surfaces, such as sediment, rock and the ice surface. Differences in the feeding apparatus are very subtle between the two Mysidetes species. The high content of fat bodies in M.hanseni could help it to survive periods of starvation. The large storage volume of the foregut in P.kryotroglodytum points to the collection of food with low nutritional quality and could help to balance strongly fluctuating food availability. Summer specimens of M.hanseni showed a bimodal frequency of developmental stages in the marsupium and bimodal size-frequency distribution of free-living stages. The females with younger brood (embryos) were, on average, larger and carried more marsupial young than those with older brood (nauplioid larvae). All examined incubating and spent females showed (almost) empty foreguts and empty ovarian tubes, suggesting possible semelparity and death following the release of young. The absence of juveniles and immature females from summer samples suggests that growth and accumulation of fat and yolk occur outside ice caves, while such caves could be used by fattened adults as shelter for brooding. A provisional interpretation proposes a biannual life cycle for M.hanseni, superimposed with shifted breeding schedules, the latter characterised by early breeding and late breeding females, probably in response to harsh physical and trophic conditions along the continental coast of Antarctica.

19.
Proc Biol Sci ; 287(1940): 20202322, 2020 12 09.
Artigo em Inglês | MEDLINE | ID: mdl-33259758

RESUMO

Some probe-foraging birds locate their buried prey by detecting mechanical vibrations in the substrate using a specialized tactile bill-tip organ comprising mechanoreceptors embedded in densely clustered pits in the bone at the tip of their beak. This remarkable sensory modality is known as 'remote touch', and the associated bill-tip organ is found in probe-foraging taxa belonging to both the palaeognathous (in kiwi) and neognathous (in ibises and shorebirds) clades of modern birds. Intriguingly, a structurally similar bill-tip organ is also present in the beaks of extant, non-probing palaeognathous birds (e.g. emu and ostriches) that do not use remote touch. By comparison with our comprehensive sample representing all orders of extant modern birds (Neornithes), we provide evidence that the lithornithids (the most basal known palaeognathous birds which evolved in the Cretaceous period) had the ability to use remote touch. This finding suggests that the occurrence of the vestigial bony bill-tip organ in all modern non-probing palaeognathous birds represents a plesiomorphic condition. Furthermore, our results show that remote-touch probe foraging evolved very early among the Neornithes and it may even have predated the palaeognathous-neognathous divergence. We postulate that the tactile bony bill-tip organ in Neornithes may have originated from other snout tactile specializations of their non-avian theropod ancestors.


Assuntos
Bico , Evolução Biológica , Aves , Animais , Comportamento Alimentar , Mecanorreceptores , Tato , Vibração
20.
Gene Expr Patterns ; 38: 119149, 2020 12.
Artigo em Inglês | MEDLINE | ID: mdl-33007443

RESUMO

The Atlantic salmon has been studied extensively, particularly as a model for understanding the genetic and environmental contributions to the evolution and development of life history traits. Expression pattern analysis in situ, however, is mostly lacking in salmon. We examine the embryonic developmental expression of six6, a candidate gene previously identified to be associated with spawning ecotypes and age at sexual maturity, in Atlantic salmon. Six6 is a member of the sine oculis homeobox family of transcription factors and is known to regulate eye and brain development in other vertebrates. We assay the expression of this gene in embryonic Atlantic salmon Salmo salar by whole-mount in situ hybridization. In line with earlier studies in other vertebrate species, we find conserved expression in the developing brain and sensory organs, including optic and olfactory primordia. However, we also find previously unreported domains of expression that suggest additional roles in axial and appendicular development, cardiovascular, intestinal, and sensory organogenesis. Each of these systems are important in the sensory ecology of Atlantic salmon, suggesting it is plausible that six6 may have pleiotropic roles in this complex phenotype.


Assuntos
Proteínas de Peixes/genética , Regulação da Expressão Gênica no Desenvolvimento , Proteínas de Homeodomínio/genética , Salmo salar/genética , Animais , Encéfalo/crescimento & desenvolvimento , Encéfalo/metabolismo , Sistema Cardiovascular/crescimento & desenvolvimento , Sistema Cardiovascular/metabolismo , Proteínas de Peixes/metabolismo , Trato Gastrointestinal/crescimento & desenvolvimento , Trato Gastrointestinal/metabolismo , Proteínas de Homeodomínio/metabolismo , Salmo salar/crescimento & desenvolvimento
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