poison glands
Recently Published Documents


TOTAL DOCUMENTS

36
(FIVE YEARS 6)

H-INDEX

11
(FIVE YEARS 1)

Toxins ◽  
2021 ◽  
Vol 13 (11) ◽  
pp. 779
Author(s):  
Beatriz Mauricio ◽  
Pedro Luiz Mailho-Fontana ◽  
Luciana Almeida Sato ◽  
Flavia Ferreira Barbosa ◽  
Renato Mancini Astray ◽  
...  

Caecilians (order Gymnophiona) are apodan, snake-like amphibians, usually with fossorial habits, constituting one of the most unknown groups of terrestrial vertebrates. As in orders Anura (frogs, tree frogs and toads) and Caudata (salamanders and newts), the caecilian skin is rich in mucous glands, responsible for body lubrication, and poison glands, producing varied toxins used in defence against predators and microorganisms. Whereas in anurans and caudatans skin gland morphology has been well studied, caecilian poison glands remain poorly elucidated. Here we characterised the skin gland morphology of the caecilian Siphonops annulatus, emphasising the poison glands in comparison to those of anurans and salamanders. We showed that S. annulatus glands are similar to those of salamanders, consisting of several syncytial compartments full of granules composed of protein material but showing some differentiated apical compartments containing mucus. An unusual structure resembling a mucous gland is frequently observed in lateral/apical position, apparently connected to the main duct. We conclude that the morphology of skin poison glands in caecilians is more similar to salamander glands when compared to anuran glands that show a much-simplified structure.


Molecules ◽  
2021 ◽  
Vol 26 (4) ◽  
pp. 871
Author(s):  
Bethelihem Mekonnen ◽  
Xavier Cheseto ◽  
Christian Pirk ◽  
Abdullahi Yusuf ◽  
Sunday Ekesi ◽  
...  

The African weaver ant, Oecophylla longinoda, is used as a biological control agent for the management of pests. The ant has several exocrine glands in the abdomen, including Dufour’s, poison, rectal, and sternal glands, which are associated with pheromone secretions for intra-specific communication. Previous studies have analyzed the gland secretions of Dufour’s and poison glands. The chemistry of the rectal and sternal glands is unknown. We re-analyzed the secretions from Dufour’s and poison glands plus the rectal and sternal glands to compare their chemistries and identify additional components. We used the solid-phase microextraction (SPME) technique to collect gland headspace volatiles and solvent extraction for the secretions. Coupled gas chromatography–mass spectrometry (GC-MS) analysis detected a total of 78 components, of which 62 were being reported for the first time. These additional components included 32 hydrocarbons, 12 carboxylic acids, 5 aldehydes, 3 alcohols, 2 ketones, 4 terpenes, 3 sterols, and 1 benzenoid. The chemistry of Dufour’s and poison glands showed a strong overlap and was distinct from that of the rectal and sternal glands. The different gland mixtures may contribute to the different physiological and behavioral functions in this ant species.


Molecules ◽  
2020 ◽  
Vol 25 (9) ◽  
pp. 2112
Author(s):  
Vivek Kempraj ◽  
Soo Jean Park ◽  
Stefano De Faveri ◽  
Phillip W. Taylor

The green tree ant, Oecophylla smaragdina, is one of only two recognized species of weaver ants. While the identity and functions of chemicals produced and emitted by its congener O. longinoda have been studied quite extensively and serve as a valuable model in chemical ecology research, little comparable information is available about O. smaragdina. Although some analyses of chemicals produced and emitted by O. smaragdina have been reported, the literature is fragmentary and incomplete for this species. To address this knowledge gap, and to enable comparisons in the chemical ecology of the two weaver ant species, we here describe diverse chemicals from the cuticle, Dufour’s glands, poison glands, head, headspace volatiles, and trails of O. smaragdina.


2019 ◽  
Vol 9 (1) ◽  
Author(s):  
Pedro Luiz Mailho-Fontana ◽  
Carlos Jared ◽  
Marta Maria Antoniazzi ◽  
Juliana Mozer Sciani ◽  
Daniel Carvalho Pimenta ◽  
...  

AbstractTetrodotoxin (TTX), one of the most toxic substances in nature, is present in bacteria, invertebrates, fishes, and amphibians. Marine organisms seem to bioaccumulate TTX from their food or acquire it from symbiotic bacteria, but its origin in amphibians is unclear. Taricha granulosa can exhibit high TTX levels, presumably concentrated in skin poison glands, acting as an agent of selection upon predatory garter snakes (Thamnophis). This co-evolutionary arms race induces variation in T. granulosa TTX levels, from very high to undetectable. Using morphology and biochemistry, we investigated differences in toxin localization and quality between two populations at the extremes of toxicity. TTX concentration within poison glands is related to the volume of a single cell type in which TTX occurs exclusively in distinctive secretory granules, suggesting a relationship between granule structure and chemical composition. TTX was detected in mucous glands in both populations, contradicting the general understanding that these glands do not secrete defensive chemicals and expanding currently held interpretations of amphibian skin gland functionality. Skin secretions of the two populations differed in low-mass molecules and proteins. Our results demonstrate that interpopulation variation in TTX levels is related to poison gland morphology.


2018 ◽  
Vol 15 (1) ◽  
Author(s):  
Pedro Luiz Mailho-Fontana ◽  
Marta Maria Antoniazzi ◽  
Juliana Mozer Sciani ◽  
Daniel Carvalho Pimenta ◽  
Katia Cristina Barbaro ◽  
...  

2014 ◽  
Vol 64 (4) ◽  
pp. 365-381 ◽  
Author(s):  
Thiago J.S. Alves ◽  
Valéria Wanderley-Teixeira ◽  
Álvaro A.C. Teixeira ◽  
Christian S.A. Silva-Torres ◽  
José B. Malaquias ◽  
...  

Parasitoids have evolved mechanisms to evade their hosts’ defenses. Bracon vulgaris (Ashmead) is a larval ectoparasitoid responsible for natural reduction of Anthonomus grandis (Boheman) and Pectinophora gossypiella (Saunders), which are considered the main cotton pests in the cotton agro-ecosystem in northeastern Brazil. This study aimed to analyze the sensory structures (antennae and ovipositor) involved in the parasitism behavior of B. vulgaris, and to describe and evaluate associations between composition, morphology, and functions of these structures in the parasitoid-host interaction. Results showed that the B. vulgaris ovipositor is a multifunctional structure of 2.7 ± 0.3 mm in length composed of 3 valves. Valves 1 and 2 are elongated, rigid, and act jointly to pierce the host’s cuticle, to inject the poison glands secretion, and to deposit eggs. Valve 3 covers the other valves, giving them protection. Valve 3 also presents annulations in all its extension, which gives flexibility to the ovipositor, and trichoid sensilla that possibly capture vibrations from the host’s feeding and locomotion, thereby aiding the parasite in the host selection. The presence of cuticular microtrichia was possibly responsible for the cleaning of the ovipositor, keeping it functional between the various insertions that occur during the parasitism behavior. The parasitoid’s antennae are filliform-like, measure about 2 mm, and are composed of four types of sensilla (trichoids, basiconical, coeloconical, and placodes) that act as olfactory and gustatory receptors and/or express tactile, thermo,- and hygroreception functions. The integrated action of these sensory components corroborates the successful parasitism behavior of the parasitoid B. vulgaris.


2012 ◽  
Vol 9 (1) ◽  
pp. 20 ◽  
Author(s):  
J Vidal-Cordero ◽  
Gregorio Moreno-Rueda ◽  
Antonio López-Orta ◽  
Carlos Marfil-Daza ◽  
José L Ros-Santaella ◽  
...  

2010 ◽  
Vol 282 (4) ◽  
pp. 238-245 ◽  
Author(s):  
R. A. Saporito ◽  
M. Isola ◽  
V. C. Maccachero ◽  
K. Condon ◽  
M. A. Donnelly
Keyword(s):  

Sign in / Sign up

Export Citation Format

Share Document