• Title/Summary/Keyword: Korean bats

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Characteristics of Auditory Stereocilia in the Apical Turn of the Echolocating Bats by Scanning Electron Microscopy

  • Kim, Jinyong;Jung, Yongwook
    • Applied Microscopy
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    • v.44 no.1
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    • pp.8-14
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    • 2014
  • The auditory system of the Korean greater horseshoe bat (Rhinolophus ferrumequinum korai, RFK) is adapted to its own echolocation signal, which consist of constant frequency (CF) element and frequency modulated (FM) element. In contrast, the Japanese long-fingered bat (Miniopterus schreibersii fuliginosus, MSF) emits FM signals. In the present study, the characteristics of stereocilia in RFK (a CF/FM bat) and MSF (a FM bat) were studied in the apical turn of the cochlea where the lower frequencies are transduced. Stereocilia lengths and numbers were quantitatively measured in RFK by scanning electron microscopy and compared with those of MSF. Each inner hair cells (IHCs) of RFK possessed three rows of stereocilia, whereas MSF possessed five rows of stereocilia. Gradients in stereocilia lengths and numbers of stereocilia of the IHCs of RFK were found to be less pronounced and fewer, respectively, than those of MSF. Each outer hair cells (OHCs) possessed three rows of stereocilia in both species. OHCs stereocilia in RFK that distinguished it from MSF were a shorter length and a greater number of stereocilia. These features suggest that the apical cochleas of RFK are adapted for the processing of higher frequency echolocation calls rather than that of MSF.

Elemental analysis of the liver, kidney, and intestine tissues from a Hodgson's bat (Myotis formosus tsuensis)

  • Yu, Hee Jeong;Kang, Jung-Hoon;Lee, Seungwoo;Choi, Yu Jung;Oh, Dayoung;Lim, Jong-Deock;Ryu, Doug-Young
    • Korean Journal of Veterinary Research
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    • v.56 no.1
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    • pp.51-52
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    • 2016
  • Hodgson's bats are critically endangered in South Korea. This study analyzed the concentrations of elements in liver, kidney, and intestine tissues from a Hodgson's bat found dead in the wild. The concentrations of essential elements followed the order Fe > Zn > Cu > Mn > Se in the three tissues. Hg was detected at the highest concentrations among the non-essential elements analyzed in the liver and kidney tissues, while As was the most highly concentrated non-essential element in the intestine. To the best of our knowledge, this is the first study of tissue element concentrations in Hodgson's bats.

External Morphology and Ultrasound Characteristics of the Ussurian Tube-nosed Bat (Murina Ussuriensis) (작은관코박쥐(Murina ussuriensis)의 외부형태 및 초음파 특성에 관한 기초 연구)

  • Chung, Chul Un;Han, Sang Hoon;Kim, Sung Chul;Lee, Hwa Jin
    • Journal of Environmental Science International
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    • v.23 no.3
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    • pp.521-525
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    • 2014
  • The Ussurian tube-nosed bat (Murina ussuriensis) is a registered endangered species that has not been observed in South Korea since 1960. We were able to capture three individuals of M. ussuriensis between 2011 and 2013 at Sobaeksan National Park. The discovery of this species was the first time within 50 years. To collect basic data on the M. ussuriensis, we analyzed the external morphology and ultrasound characteristics of the captured bats. The results indicated that M. ussuriensis weigh approximately 5.2 g, which is less than that of a typical small bat such as Pipistrellus abramus. The bat's wing-type ratio was determined to be 1.22 and classified as a broad and short wingspan type. The bat uses FM signals for ultrasound with a peak frequency of 92 kHz. The M. ussuriensis seems to be a forest-dwelling bat that preys on insects by maneuvering expertly within the complex mazelike structure of forests. In the future, further research on the hibernation and foraging sites of the bats is necessary to protect and monitor the species.

A Comprehensive Study of SARS-CoV-2: From 2019-nCoV to COVID-19 Outbreak

  • Waris, Abdul;Ali, Muhammad;Khan, Atta Ullah;Ali, Asmat;Baset, Abdul
    • Microbiology and Biotechnology Letters
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    • v.48 no.3
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    • pp.252-266
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    • 2020
  • The coronavirus disease 2019 (COVID-19) is a highly contagious pneumonia that has spread throughout the world. It is caused by a novel, single stranded RNA virus called severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2). Genetic analysis revealed that, phylogenetically, the SARS-CoV-2 is related to severe acute respiratory syndrome-like viruses seen in bats. Because of this, bats are considered as a possible primary reservoir. The World Health Organization has declared the COVID-19 outbreak as a pandemic. As of May 27, 2020, more than 5,406,282 confirmed cases, and 343,562 confirmed deaths have been reported worldwide. Currently, there are no approved vaccines or antiviral drugs available against COVID-19. Newly developed vaccines are in the first stage of clinical trials, and it may take a few months to a few years for their commercialization. At present, remdesivir and chloroquine are the promising drugs for treating COVID-19 patients. In this review, we summarize the diversity, genetic variations, primary reservoirs, epidemiology, clinical manifestations, pathogenesis, diagnosis, treatment strategies, and future prospects with respect to controlling the spread of COVID-19.

Characteristics of Echolocation Calls of the Parti-coloured Bat, Vespertilio sinensis, in Relation to Environment Type (환경특성에 따른 안주애기박쥐(Vespertilio sinensis)의 반향정위 특징)

  • Chung, Chul-Un;Han, Sang-Hoon
    • Journal of Environmental Science International
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    • v.24 no.3
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    • pp.353-358
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    • 2015
  • In this study, we analyzed two types of echolocation calls used by the parti-coloured bat, Vespertilio sinensis. Bats were captured in the Naejangsan National Park in October 2013. Call sounds of hand-released bats were recorded at the location of capture within the National Park. We analyzed pulse duration (PD), pulse interval (PI), peak frequency (PF), maximum frequency ($F_{MAX}$), minimum frequency ($F_{MIN}$), and bandwidth (BW). V. sinensis emitted the different types of the echolocation calls depending on the surrounding environment. Frequency modulated-constant frequency (FM-CF) signal of audible range was emitted when they flew in the uncluttered space over the canopy. However, when flying in the cluttered space below the canopy, they only emitted FM signal. FM-CF signal is in the audible range (e.g., low frequency), and FM signal has a harmonic broadband frequency range of two. There were significant differences in PD, PI, PF, FMAX, FMIN, and BW between the calls emitted over and below the canopy. Considering the functional characteristics of FM and CF signals, we conclude that the foraging activity of V. sinensis was observed below the canopy, and recommend the use of FM signal and broadband as echolocation signals.

Identification of a PAS Domain-containing Protein in a Mammalian Hibernator, Murina leucogaster

  • Cho, Sang-Gil;Kim, Dong-Yong;Eom, Ki-Hyuk;Bae, Ki-Ho
    • Animal cells and systems
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    • v.13 no.2
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    • pp.119-125
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    • 2009
  • Mammalian hibernation is a type of natural adaptation that allows organisms to avoid harsh environment and to increase the possibility of survival. To investigate the molecular link between circadian and hibernating rhythms in the greater tube-nosed bats, Murina leucogaster, we set out to identify circadian genes that are expressed in bats, with specific focus on the PAS domain by using PCR-based screens. We could isolate a eDNA clone, designated as LPAS1, that encodes a protein of 521 amino acid residues. LPAS1 is closely related with CLOCK family with the highest homology to human CLOCK. Based on RT-PCR analyses, LPAS1 transcripts are ubiquitously present in tissues from both summer active and winter dormant periods. Given that LPAS1 is a member of the bHLH-PAS protein superfamily but lacks polyglutamine transactivation domains, it is likely to function as a repressor for endogenous CLOCK to hinder its roles in promoting transcription. Our result will open a new avenue to further examine the functional interconnection between the circadian clock and the circannual clock such as mammalian hibernation.

The Thermal Preference and the Selection of Hibernacula in Seven Cave-dwelling Bats (동굴성 박쥐 7종의 온도선호도와 동면처 선택)

  • Kim, Sun-Sook;Choi, Yu-Seong;Yoo, Jeong-Chil
    • Korean Journal of Ecology and Environment
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    • v.47 no.4
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    • pp.258-272
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    • 2014
  • Bats hibernating in caves and unused mines were surveyed during six hibernation periods (from December to February, 2005 and 2011) in Korea. We recorded 13,288 individuals of 11 species at 140 hibernacula (60 caves and 80 abandoned mines): Rhinolophus ferrumequinum (n=3,509), Eptesicus serotinus (n=6), Hypsugo alaschanicus (n=349), Miniopterus fuliginosus (n=5,919), Murina hilgendorfi (n=417), Myotis aurascens (n=294), Myotis bombinus (n=2), Myotis formosus (n=401), Myotis macrodactylus (M.mac, n=151), Myotis petax (n=2,131) and Plecotus ognevi (n=109). We studied the thermal preference and selection of hibernacula of seven dominant bat species. Four species (Myotis petax, Hypsugo alaschanicus, Plecotus ognevi and Murina hilgendorfi) hibernated mainly at the cold site below than $7^{\circ}C$, while three species (Myotis formosus, Rhinolophus ferrumequinum and Miniopterus fuliginosus) hibernated at warm site above than $7^{\circ}C$. Rhinolophus ferrumequinum had broad-ranged temperature zone for their hibernating site. The mean body temperature of each species was $2.64{\pm}0.98^{\circ}C$ for Murina hilgendorfi, $2.76{\pm}1.68^{\circ}C$ for Hypsugo alaschanicus, $2.78{\pm}0.98^{\circ}C$ for Plecotus ognevi, $4.52{\pm}1.02^{\circ}C$ for Myotis petax, $7.83{\pm}1.94^{\circ}C$ for Miniopterus fuliginosus, $9.19{\pm}2.35^{\circ}C$ for Rhinolophus ferrumequinum and $13.64{\pm}0.76^{\circ}C$ for Myotis formosus, respectively. The body temperatures of hibernating bats were closely related to the rock surface temperatures rather than the ambient temperatures. In conclusion, the diversity of bats community in hibernacula were closely related to the range of inner ambient temperature of hibernacula, and more species of bats were occupied at sites presenting a broad range of ambient temperatures.

A Karvotvpic Studv on Six Korean Vespertilionid Bats (애기박쥐과에 속하는 한국산 박쥐류 6종에 대한 핵형학적 연구)

  • 유동호;윤명희
    • The Korean Journal of Zoology
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    • v.35 no.4
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    • pp.489-496
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    • 1992
  • The karyotypes of 4 Korean Myotis species (M. mystucinus gracilis, M. jormous tsuensis, M. duubentonii ussuriensis and M. macrodoctvlusp and 2 Pipistrelfus species (p. coreensis and p. abramusl belonging to the Vespertilionidae were examined. The 4 Mvotis species had the karyotypes of 2n : 44 with FN : 50 (M. m. gracilis and M. f. tsuensisl or 52 (M. d. ussuriensis and M. mncrodactylus). Furthermore the karyotype of R obrumus (2n : 26, FN : 441 seemed advanced compared with that of U coreensis (2n : 44, FN : 501 which is similar to the original karyotype of Mvotis species (2n : 44, FN : 50).

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Structure and Variability of the Isolation Calls of Juvenile Oriental Discoloured Bats (Vespenilio superans) from Korea (안주애기 박쥐 (Vespenilio superans) 새끼의 Isolation Call의 구조와 변화)

  • 서병희;박시룡
    • The Korean Journal of Zoology
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    • v.35 no.2
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    • pp.226-230
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    • 1992
  • 5마리의 안주애기박쥐(Vespenilio superons) 새끼들의 Isolation call에 대해 연구를 하였다. 이들의 소리는 각각의 unit(2-9)로 구성되어 있으며 연결음을 내고 있다. 배음의 unit가운데 기본음의 주파수 범위는 5-23 kHz에 놓여 있다. 주파수 변조 패턴에 따라 대개의 unit들은 2타임으로 분류되나, 개체적 변이가 발견되었다. 새끼들의 소리는 개체마다 특징적으로 나타났다. (unit 수/call, 사용된 unit 유형, 주파수 범위 ); 이들의 전형적인 유형은 발달 과정을 통해 고유한 소리로 나타났다.

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Comparative Study on Components and Activities of Sperm Head Plasma Membrane in Active and Hibernating Animals (활동 및 동면동물의 정자 두부 Plasma Membrane의 성분 및 활성에 관한 비교 연구)

  • Oh, Yung-Keun;Ahn, Byung-Sik;Choi, In-Ho;Jung, Noh-Pal;Shin, Hyung-Cheul;Kwak, Byoung-Ju
    • Applied Microscopy
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    • v.29 no.2
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    • pp.241-253
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    • 1999
  • Fertilization pattern of north temperate bats is known to be unique for their sperm storage in the female reproductive tract during hibernation (e.g. Korean greater horseshoe bats). They copulate in fall but their ejaculated spermatozoa survive until the next spring. In another words they can persist to survive during long hibernation under the cold condition $(8\sim13^{\circ}C)$ and are to be fertilized with the ovum ovulated in the next spring, so called delayed fertilization. The present study was designed to observe morphological and functional changes of spermatozoa plasma membrane of the bats, hamsters which are hibernators, and mice which are non-hibernators in the room and the cold (bat-hibernation) temperatures and to confirm influence of the temperature on spermatozoa; survival rate, acrosome reaction rate, protein distribution, $Na^+-K^+-ATPase$ activities and scanning electron microscopic histochemistry. Based on the experimental results obtained in the present study, there were no significant morphological and functional differences in the spermatozoa plasma membrane in both the room and cold (bat-hibernation) temperatures and such an absence of difference suggests that the spermatozoa plasma membrane might play a pertinent role as a protector for consistent fertilization during and after hibernation.

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