• Title/Summary/Keyword: Olfactory receptor

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Antennal Sensory Organs in the Female Millipede Orthomorphella pekuensis (Polydesmida: Paradoxosomatidae)

  • Chung, Kyung-Hwun;Moon, Myung-Jin
    • Animal cells and systems
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    • v.10 no.4
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    • pp.183-189
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    • 2006
  • The fine structural characteristics of the antennal sensory organs of a female millipede, Orthomorphella pekuensis, were observed with field emission scanning electron microscopy. On the surface of the antenna, four basic types of sensory receptor with the function of either mechanical or olfactory reception are identified in this female millipede. Of these, chaetiform sensilla (CS) and trichoid sensilla (TS) are related to mechanical reception, and four large apical cone sensilla (AS) and three subtypes of basiconic sensilla ($BS_1,\;BS_2,\;BS_3$) are likely to function in olfactory reception, as these receptors have porous structure commonly. Although this millipede also possess a number of primary or secondary sexual characters to improve the efficiency of reproduction, we could not observe their prominent sexually dimorphic characters in the antennal sensilla with the exception of minor structural and numerical differences.

Characteristics of Electroantennogram Parameters for the Detection of Odorants

  • Yun, Eung-Sik;Ko, Hwi-Jin;Sun, Jong-Hwan;Park, Tai-Hyun
    • Journal of Microbiology and Biotechnology
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    • v.10 no.6
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    • pp.885-888
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    • 2000
  • Electroantennogram(EAG) can be applied to detect odorants since insects have highly specialized olfactory receptors inside their antennae. The characteristics of EAG parameters were investigated for the quantitative measurement of a general odorant using ammonia as a model odorant. The antennae of male silkworm moth, Bombyx mori, were used for the EAG. The electical signal curves generated from a pair of antennae originating from the same silkworm moth were never identical; however, they exhibited a typical type I or type II characteristic curve pattern for every pair of antennae. The correlation between the EAG parameters and the ammonia concentration was analyzed for the type I and type II antennae. The stability of each parameter was also investigated for each type of antenna. The results show the possibility of the quantitative measurement of general odorants using the EAG technique.

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The study on representation, Digital coding and Clustering of odor information (후각정보 표현, 부호화 및 클러스터링에 관한 연구)

  • Kim, Jeong-Do;Jung, Suk-Woo;Kim, Dong-Jin
    • Proceedings of the KIEE Conference
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    • 2004.11c
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    • pp.598-601
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    • 2004
  • In this paper, we suggest method that change odors to digital data. For this, we selected emotional adjective of odors as olfactory receptor This emotional adjective(expressional receptor) is about 40. Each odors are expressed by adjective equivalent to oneself. Expressed odors as emotional receptor is encoded as proposed method for transmission, and after transmission, It should be decoded for expression again. The applied decoding method is fuzzy c-means clustering algorithm(FCMA). But, because odor data is expressed to 40 dimensions, FCMA uses a lot of computing times and memories. To solve this problem, after we reduce dimension through principal component analysis(PCA), we use FCMA algorithm.

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A Study on Information Transmission Processing Types of Exhibition Medium per Sensory receptor - Focus on National Museum of Nature and Science's Global Gallery, Tokyo - (감각수용기 종류에 따른 전시매체 분석과 유형에 관한 연구 - 동경 국립과학박물관 지구관을 중심으로 -)

  • Jeong, Hye-In;Lim, Che-Zinn
    • Korean Institute of Interior Design Journal
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    • v.22 no.1
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    • pp.291-298
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    • 2013
  • A science museum responds independently based on the exhibits and exhibition environments as the visitors are different in purposes, interests and demands. Therefore a science museum should be designed keeping it in mind that there are various ways for visitors to perceive and use the exhibition spaces and exhibits. The purpose of this study is to compare and analyze the characteristics of sensory receptors for the exhibits in National Museum of Nature and Science's Global Gallery, Tokyo, in terms of information transmission and to identify the nature of exhibit medium that can affect the perception and recognition of the exhibits by visitors. Through these 9 sensory receptors, human recognizes first with visual, auditory and olfactory senses and reacts using vestibular organ, proprioceptor (stretch), tangoreceptor, themoreceptor, taste and olfactory senses. Human uses these information processing to recolonize the external environment. This process is similar to the visitor's information transmission process for the exhibition medium. By dividing the analysis results per exhibition theme and developing the information transmission processing types per sensory receptor, we could understand that the distribution conditions are closely connected with the composition of the exhibition scenario in the exhibtion area. Especially, the understanding of how the information transmission is made through sensory receptors could can be the criteria that determines on the factors that can identify the exhibition purposes of a science museum which are eduction and understanding.

Histochemical Detection of Ionic Zinc in the Rat Olfactory Mucosa: Zinc Selenium Autometallography ($ZnSe^{AMG}$) (랫드 후각점막내 Zinc 이온의 조직화학적 동정)

  • Nam, Dong-Woo;Sun, Yuan-Jie;Kim, Sung-Joo;Kim, Yong-Kuk;Kim, Soo-Jin;Yu, Yun-Cho;Jeong, Young-Gil;Jo, Seung-Mook
    • Applied Microscopy
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    • v.33 no.2
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    • pp.145-154
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    • 2003
  • The present study was designed to demonstrate ionic zinc in the rat nasal mucosa by means of zinc selenium autometallography ($ZnSe^{AMG}$). Rats were given sodium selenide either intraperitoneally (i.p) or intranasally (i.n). Prior to the i.n. administration the rats were anesthetized with pentobarbital sodium (30 mg/kg, i.p.). A thin plastic tube coupled to a Hamilton syringe was then inserted into the right nostril and $10{\mu}l$ of the solution was instilled. For the i.p. administration non-anesthetized rats were given $100{\mu}l$ of the sodium selenide solution (10 mg/kg). Control rats were instilled with saline. After 2 hrs survival, the rats were anaesthetized and transcardially perfused with 3% glutaraldehyde. The olfactory area was removed and put into same fixative. The nose was then sectioned ($30{\mu}m$) horizontally, autometallography (AMG) was performed according to Danscher et al. (1997). After silver enhancement, fine AMG grains were scattered in the whole length of the olfactory epithelium containing olfactory receptor neurons, sustentacular and basal cells. However, much higher concentration of the AMG grains occupied near the surface and in the basal region of the olfactory epithelium. Both groups of i.p. and i.n. administration showed almost same level in the concentration of the AMG grains. In i.n. group, few AMG grains were also found in olfactory nerves of the lamina propria, suggesting zinc transport into the olfactory bulb via olfactory axons. At the electron microscopic level, the AMG grains were most entirely found in the supporting cells of the olfactory epithelium, and they were mostly localized in lysosome-like organelles. The i.n. group showed various signs of tissue damage of the olfactory mucosa, where dense concentration of AMG grains were localized at crystalloid structures. The present study demonstrated dense population of ionic zinc in the rat olfactory epithelium. zinc may play a role in the olfactory functioin and in the pathogenesis of the neurodegerative disorders affecting nose.

Influence of Caffeine on Dopamine D$_1$and D$_2$Receptor mRNAs Expression in Rat Brain (도파민 D$_1$과 D$_2$수용체 mRNAs의 발현에 미치는 카페인의 영향)

  • 김근양;신지혜;김명옥
    • Journal of Life Science
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    • v.11 no.1
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    • pp.1-7
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    • 2001
  • The caffeine intake cause a local or wide ranges of convulsion and it is associated with release of dopamine (DA) receptors into the brain striatum. However, the effect of caffeine addiction on expression of DA receptors gene in the rat caudate-putamen (CPu), nucleus accumbens (NAc), and olfactory tubercle (OTu) has not been elucidated. In this study, we examined the influence of caffeine addiction on DA D $_1$and D$_2$receptor mRNAs after the treatment of caffeine for four weeks. Using the specific antisense ribo-probes for DA D$_1$and D$_2$receptor cDNAs, in situ hybridization was performed on the CPu, NAc, and OTu of the adult male Sprague Dawely rats. In caffeine-treated group, DA D$_1$and D$_2$receptor mRNAs were highly increased in CPu, NAc, and OTu. The expression density of DA D$_1$receptor mRNAs were 2.52${\pm}$1.40 (CPu), 2.78${\pm}$1.69 (NAc), and 3.91${\pm}$1.28 (OTu) in control group and 7.76${\pm}$2.09 (CPu), 4.2 ${\pm}$1.85 (NAc), and 8.21${\pm}$1.72 (OTu) in caffeine-treated group. The expression density of DA D$_2$receptor mRNA was 2.32${\pm}$1.52 (CPu), 2.63${\pm}$2.11 (NAc), and 3.61${\pm}$1.43 (OTu) in control group, and 6.41${\pm}$1.82 (CPu), 6.89${\pm}$1.32 (NAc), and 6.82${\pm}$1.18 (OTu) in caffeine-treated group. DA D$_1$receptor mRNA was higher expressed than DA D$_2$ receptor mRNA in CPu and NAc. These results suggest that caffeine reacts as a upregulator of the expression of DA D$_1$and D$_2$receptor mRNA among the neurotransmitters.

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Morphology, Histology, and Histochemistry of the Olfactory Organ in Korean Endemic Fish, Rhodeus uyekii (Pices, Cyprinidae) (한국고유종 각시붕어 Rhodeus uyekii 후각기관의 형태 및 조직, 세포화학적 특성 연구)

  • Kim, Hyun Tae;Yun, Seung Woon;Lee, Yong Joo;Park, Jong Young
    • Korean Journal of Ichthyology
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    • v.31 no.3
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    • pp.123-130
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    • 2019
  • The olfactory organ of the Korean endemic fish, Rhodeus uyekii, a mussel-spawning species, was researched anatomically, histologically and histochemically, for looking into a relation to the physical and chemical condition of its habitat and ecological habit, using stereo microscopy, light microscopy and scanning electron microscopy. The external structure of the olfactory organ consists of the semicircular-shaped anterior nostril with arched shape at its forward position, posterior nostrils and the nasal flap. Within the olfactory chamber, it has the rosette structure with 14 to 15 lamellae which is largely divided into the sensory and non-sensory regions. The sensory region has the olfactory receptor neurons, the supporting cells, the basal cells, the lymphatic cells, and the plasma cells, while the non-sensory region has the stratified epithelial cells, the mucous cells with sulfomucin and 1 type of unidentified cell. In particular, the arched feature in the anterior nostril and the mucous cell of sulfomucin were unique.

Insect GPCRs and TRP Channels: Putative Targets for Insect Repellents

  • Kim, Sang Hoon
    • Interdisciplinary Bio Central
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    • v.5 no.3
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    • pp.6.1-6.7
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    • 2013
  • Many insects such as mosquitoes cause life-threatening diseases such as malaria, yellow fever and West Nile virus. Malaria alone infects 500 million people annually and causes 1-3 million death per year. Volatile insect repellents, which are detected through the sense of smell, have long been used to protect humans against insect pests. Antifeed-ants are non-volatile aversive compounds that are detected through the sense of taste and prevent insects from feeding on plants. The molecular targets and signaling path-ways required for sensing insect repellents and antifeedants are poorly understood. Transient Receptor Potential (TRP) Ca2+-permeable cation channels exist in organisms ranging from C. elegans to D. melanogaster and Homo sapiens. Drosophila has 13 family members, which mainly function in sensory physiology such as vision, thermotaxis and chemotaxis. G protein-coupled receptors (GPCRs) initiate olfactory signaling cascades in mammals and in nematodes C.elegans. However, the mechanisms of G protein signaling cascades in insect chemosensation are controversial. In this review, I will discuss the putative roles of G protein-coupled receptors (GPCRs) and Transient Receptor Potential (TRP) channels as targets for insect repellents.

Gustatory Receptors Required for Avoiding the Toxic Compound Coumarin in Drosophila melanogaster

  • Poudel, Seeta;Lee, Youngseok
    • Molecules and Cells
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    • v.39 no.4
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    • pp.310-315
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    • 2016
  • Coumarin is a phenolic compound that mainly affects the liver due to its metabolization into a toxic compound. The deterrent and ovicidal activities of coumarin in insect models such as Drosophila melanogaster have been reported. Here we explore the molecular mechanisms by which these insects protect themselves and their eggs from this toxic plant metabolite. Coumarin was fatal to the flies in a dosage-dependent manner. However, coumarin feeding could be inhibited through activation of the aversive gustatory receptor neurons (GRNs), but not the olfactory receptor neurons. Furthermore, three gustatory receptors, GR33a, GR66a, and GR93a, functioned together in coumarin detection by the proboscis. However, GR33a, but not GR66a and GR93a, was required to avoid coumarin during oviposition, with a choice of the same substrates provided as in binary food choice assay. Taken together, these findings suggest that anti-feeding activity and oviposition to avoid coumarin occur via separate mechanisms.

Perception of Sex Pheromone in Moth (나방의 성페로몬 감지)

  • Park, Kye Chung
    • Korean journal of applied entomology
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    • v.61 no.1
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    • pp.1-14
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    • 2022
  • Moths have a well-developed sex pheromone communication system. Male moths exhibit an extremely sensitive and selective sex pheromone detection system so that they can detect the sex pheromone produced by conspecific females and locate them for successful mating. Using the pheromone detection system, male moths display characteristic stereotypic behavioral responses, flying upwind to follow intermittent filamentous pheromone strands in pheromone plume. The chemical composition of female sex pheromone in moths, typically comprised of multiple compounds, is species-specific. Male moths contain specialized pheromone receptor neurons on the antennae to detect conspecific sex pheromone accurately, and distinguish it from the pheromones produced by other species. The signals from pheromone receptor neurons are integrated and induce relevant behavior from the male moths. Male moths also contain olfactory sensory neurons in pheromone sensilla, specialized for pheromone-related behavioral antagonist compounds, which can enhance discrimination between conspecific and heterospecific pheromones. Here we review reports on the sex pheromone detection system in male moths and their related responses, and suggest future research direction.