• 제목/요약/키워드: Flagellum

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Magnetic Orientations of Bull Sperm Separated into Head and Flagellum Treated by DTT or Heparin

  • Suga, D.;Shinjo, A.;Kurnianto, E.;Nakada, T.
    • Asian-Australasian Journal of Animal Sciences
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    • 제13권2호
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    • pp.167-175
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    • 2000
  • This paper describes the magnetic orientation of bull sperm separated into the head and the flagellum treated by DTT or heparin in a 5,400G static field. Semen samples collected from four bulls (Japanese Black) were mixed to the same sperm density. One percentage triton X-100 was used to extract the plasma membrane. The intact and demembranated sperm suspensions were treated with 20, 200, 2,000 mM DTT, 100, 1,000 or 10,000 units heparin solutions at $4^{\circ}C$ for 6 days. The decondensation of the sperm nuclei treated by DTT or heparin was examined by measuring the head area at 1, 3 and 6 days. After measuring the area, each sample was exposed to a 5,400G static magnetic field generated by Nd-Fe-B permanent magnets for 24 hours at room temperature. Results showed that the sperms were separated into the head and the flagellum through the DTT treatment. Almost of the separated heads showed that their long axis oriented perpendicularly to the magnetic lines of force, and most of the long axis perpendicularly oriented heads showed that their flat plane oriented perpendicularly in a 5,400G magnetic field. Also, the demembranation of the head tended to increase those perpendicular orientations, while those perpendicular orientations of the head declined with the decondensation of the sperm nuclei. These findings suggest that strong magnetic anisotropy for the perpendicular orientation of the long axis and the flat plane of the head occurs in the sperm nuclei in a 5,400G magnetic field. The separated flagellum showed lower parallel orientation, and the separated and demembranated flagellum showed parallel orientation to the magnetic lines of force in this magnetic field. These findings suggest that weak magnetic anisotropy of the parallel orientation of the flagellum occurs in the inside components in a 5,400G field.

한국산 동자개(Pseudobagrus fulvidraco)의 정세포변형과정과 성숙한 정자의 미세해부학적 구조(Siluriformes: Bagridae) (Anatomical Ultrastructure of Spermiogenesis and Spermatozoa of Pseudobagrus fulvidraco (Siluriformes: Bagridae) from Korea)

  • 김구환;권덕문
    • 한국어류학회지
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    • 제21권2호
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    • pp.81-86
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    • 2009
  • 한국산 동자개 Pseudobagrus fulvidraco의 정세포변형과 성숙한 정자의 미세구조를 주사 및 투과전자현미경으로 관찰하였다. 정세포변형은 측면에서 발생되는 편모, 핵의 회전, 염색물질로 채워진 핵의 함입과 핵와의 형성이 특징적이었다. 성숙한 정자의 구조는 첨체가 없는 둥근두부와 짧은중편 그리고 긴 편모로 구성되어 있었다. 짧은 중편에는 다수의 미토콘드리아가 있으며 cytoplasmic canal에 의하여 편모와 분리되어 있었다. 편모는 전형적인 9+2 구조이며 axonemal fins를 가지고 있었다. Axonemal fins는 동자개과에서 공통적으로 나타나는 형질로 여겨지며 그 외 다른 특징을 경골어류에서 비교하였다.

The First Record of Long Headed Eagle Ray, Aetobatus flagellum (Pisces: Myliobatidae) from Korea

  • Oh, Ji-Na;Kim, Sung;Kim, Choong-Gon;Soh, Ho-Young;Jeong, Da-Wa;Lee, Youn-Ho
    • Ocean Science Journal
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    • 제41권1호
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    • pp.53-57
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    • 2006
  • A specimen of Aetobatus flagellum was collected at Uljin in June 2005 for the first time in Korea. This specimen is characterized by the cephalic fin, the long snout, the dorsal fin between pelvic fins, spiracles on the dorsal side of the disc, the deeply notched nasal curtain and the one row of the teeth in the lower and the upper jaws. And unlike Aetobatus narinari, it does not have any spots on the its dorsal side of the disc. We report this specimen as the first record from Korea and name it 'Bak-jui-ga-o-ri' in Korean.

한국산 왜몰개 Aphyocypris chinensis 정자의 미세해부학적 구조 (Pisces: Cyprinidae) (Fine Structure of Spermatozoa of Venus Fish, Aphyocypris chinensis (Pisces: Cyprinidae) from Korea)

  • 김구환;안승주
    • 한국어류학회지
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    • 제31권4호
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    • pp.208-213
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    • 2019
  • Aphocypris chinensis 정자의 구조는 잉어류 정자의 일반적인 구조와 비슷하나 핵의 구조, 중심립의 위치, 미토콘드리아의 수와 배열 그리고 편모의 구조에서 차이가 있었다. A. chinensis 정자의 핵와가 기부중심립을 포함하고 있는 것은 잉어류 정자의 공통된 특징으로 볼 수 있다. 섬유성물질에 의하여 원형질막과 연결된 중심립은 말단부중심립의 기저부 위치까지 cytoplasmic canal이 함입되어 있다. 이와 같은 구조는 잉어류의 공통된 특징으로 사료된다. 잉어류 정자의 미토콘드리아의 수를 구분해보면, 4개의 그룹(1개, 2~5개, 6~10개, 11개 이상)으로 구분할 수 있다. A. chinensis는 잉어류 정자에서 지금까지 보고된 미토콘드리아의 수가 가장 많은 종이다. 잉어류 정자에서 나타나는 중편부와 미부에 분포하는 vesicles의 분포형태도 어류 정자의 미세해부학적 분류의 형질로 활용할 수 있을 것으로 사료된다. 편모의 위치가 핵의 측면으로 위치해 있는 것은 A. chinensis를 포함한 대부분 잉어류 정자의 공통된 특징으로 사료된다.

돌마자(Microphysogobio yaluensis)의 정소 내 생식세포에 관한 연구 (A Study on the Reproductive Cells in Testes of Microphysogobio yaluensis)

  • 김재구;김동희;류동석
    • Applied Microscopy
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    • 제39권3호
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    • pp.245-252
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    • 2009
  • 모래무지아과에 속하는 한국고유종 돌마자 (Microphysogobio yaluensis)의 정소 내 생식세포를 조사하여 수온변화, 환경오염 및 서식지 파괴 등으로 멸종위기에 처한 한국고유종 보존을 위한 기초자료를 제시하고자 돌마자의 정소 내 생식세포의 특성을 확인한 바 다음과 같은 결과를 얻었다. 돌마자의 정소가 성숙초기에는 정소의 정소낭 내에는 발생과정이 비슷한 생식세포들이 분포하였으며, 정소낭과 정소낭 사이에는 라이디히 세포들이 존재하였다. 또한 성숙후기 정소의 정소낭에는 정자들이 가득하였으며 제2정모세포들도 남아있었다. 제1정모세포의 핵은 직경 3 ${\mu}m$ 정도의 구형이었으며 미토콘드리아들은 세포질 한 쪽에 모여 있었다. 제2정모세포들은 직경 1.5 ${\mu}m$ 정도의 구형 또는 난형의 핵을 보유하였으며 제1정모세포보다 작았다. 정자완성과정 중에 있는 정세포의 핵은 구형으로 전자밀도가 높게 나타났으며 편모를 형성하기 시작하였고 세포질의 미토콘드리아는 편모를 따라 재배열되었다. 특히 정자의 두부는 구형으로 첨체는 보유하지 않았으며 편모는 전형적인 9+2 구조의 미세소관으로 이루어져 있는 특성들을 나타내었다.

Ultrastructures of Germ Cells During Spermatogenesis and Taxonomic Values in Sperm Morphology in Male Mya arenaria oonogai (Heterodonta: Myidae)

  • Kim, Jin-Hee;Chung, Jae-Seung;Park, Young-Je
    • 한국패류학회지
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    • 제27권4호
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    • pp.377-386
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    • 2011
  • The ultrastructures of germ cells during spermatogenesis and sperm morphology in male Mya arenaria oonogai, which was collected on the coastal waters of Samcheonpo, south coast of Korea, were investigated by transmission electron microscopic observations. In the early stage of the spermatid during spermiogenesis, a few granules and a proacrosomal granule, which is formed by the Golgi complex, appear on the spermatid nucleus, and then it becomes a proacrosomal vesicle. Consequently, it becomes an acrosome by way of the process of acrosome formation. The morphologies of the sperm nucleus type and the acrosome of this species have a curved cylindrical type and cone shape, respectively. The spermatozoon is approximately $48-50{\mu}m$ in length including a curved cylinderical sperm nucleus (about $2.65{\mu}m$ long), an acrosome (about $0.64{\mu}m$ in length) and tail flagellum ($40-45{\mu}m$ long). As some ultrastructural characteristics of the acrosomal vesicle, the peripheral parts of two basal rings show electron opaque part (region), while the apex part of the acrosome shows electron lucent part (region). These charateristics of the sperm belong to the family Myidae or some species of Veneridae in the subclass Heterodonta, unlike a characteristic of the subclass Pteriomorphia showing all part of the acrosome being composed of electron opaque part (region). Therefore, it is easy to distinguish the families or the subclasses by the acrosome structures. Exceptionally, In particular, a cylinder-like nucleus of the sperm is curved (the angle of the nucleus is about $20^{\circ}$), as seen in some species of Veneridae (range from $0^{\circ}-80^{\circ}$). The number of mitochondria in the midpiece of the sperm of this species are four, as one of common characteristics appeared in most species except for a few species in Veneridae in the subclass Heterodonta. Cross-sectioned axoneme of the sperm tail flagellum shows a 9+2 structure: the axoneme of the sperm tail flagellum consists of nine pairs of peripheral microtubules at the periphery and a pair of central doublets at the center.

Spermiogenesis and Taxonomic Value of Sperm Morphologies of Two Species in Veneridae (Bivalvia: Heterodonta)

  • Kim, Jin-Hee;Kim, Sung-Han
    • 한국패류학회지
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    • 제27권2호
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    • pp.149-157
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    • 2011
  • Some characteristics of the formations of acrosomal vesicles during the late stage of spermatids during spermiogenesis and taxonomical charateristics of sperm morphology in male two species (Saxidomus purpurata and Meretrix petechialis) in the family Veneridae were investigated by electron microscope observations. In two species, the morphologies of the spermatozoa have the primitive type and are similar to those of other bivalves in that it contains a short midpiece with five mitochondria surrounding the centrioles. The morphologies of the sperm nuclear types of S. purpurata and M. petechialis in Veneridae have the curved cylindrical and cylinderical type, respectively. And the acrosome shapes of two species are the same cap-shape type. In particular, the axial filament is not found in the lumen of the acrosome of two species, however, subacrosomal material are observed in the subacrosomal spaces between the anterior nuclear fossa and the acrosomal vesicle of two species. The spermatozoon of S. purpurata is approximately 46-$52{\mu}m$ in length, including a curved sperm nucleus (about $3.75{\mu}m$ in length), a long acrosome (about $0.40{\mu}m$ in length),and a tail flagellum (about 45-$47{\mu}m$ long). And the spermatozoon of M. petechialis is approximately 47-$50{\mu}m$ in length including a slightly curved sperm nucleus (about $1.50{\mu}m$ in length), an acrosome (about $0.56{\mu}m$ in length) and tail flagellum (44-$48{\mu}m$ in length). In two species, the axoneme of the sperm tail flagellum of each species consists of nine pairs of microtubules at the periphery and a pair of cental doublets at the center. Therefore, the axoneme of the sperm tail flagellum shows a 9 + 2 structure. In particular, taxonomically important some charateristics of sperm morphologies of two species in the family Veneridae are acrosomal morphology of the sperm, The axial filament is not found in the acrosome as seen in a few species of the family Veneridae in the subclass Heterodonta. The acrosomal vesicle is composed of right, left basal rings and the apex part of the acrosomal vesicle. In particular, right and left basal rings show electron opaque part (region), while the apex part of the acrosomal vesicle shows electron lucent part (region). These charateristics belong to the subclass Heterodonta, unlikely a characteristic of the subclass Pteriomorphia showing all part of the acrosome being composed of electron opaque part (region). Therefore, it is easy to distinguish the families or the subclasses by the acrosomal structures. The number of mitochondria in the midpiece of the sperm of S. purpurata and M. petechialis in Veneridae are five. However, the number of mitochondria in the midpiece of the sperm in most species of Veneridae in the subclass Heterodonta are four. Therefore, the number of mitochondria of the sperm midpiece of two species are exceptionally 5, and it is only exceptional case in the species in Veneridae in the subclass Heterodonta. Except these cases, the number of mitochondria in the sperm midpiece in all families in the subclass Heterodontaare are 4, and now widely used in taxonomic analyses.

Computational Fluid Dynamics Modeling Studies on Bacterial Flagellar Motion

  • Kumar, Manickam Siva;Philominathan, Pichai
    • International Journal of Fluid Machinery and Systems
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    • 제4권3호
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    • pp.341-348
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    • 2011
  • The study of bacterial flagellar swimming motion remains an interesting and challenging research subject in the fields of hydrodynamics and bio-locomotion. This swimming motion is characterized by very low Reynolds numbers, which is unique and time reversible. In particular, the effect of rotation of helical flagella of bacterium on swimming motion requires detailed multi-disciplinary analysis. Clear understanding of such swimming motion will not only be beneficial for biologists but also to engineers interested in developing nanorobots mimicking bacterial swimming. In this paper, computational fluid dynamics (CFD) simulation of a three dimensional single flagellated bacteria has been developed and the fluid flow around the flagellum is investigated. CFD-based modeling studies were conducted to find the variables that affect the forward thrust experienced by the swimming bacterium. It is found that the propulsive force increases with increase in rotational velocity of flagellum and viscosity of surrounding fluid. It is also deduced from the study that the forward force depends on the geometry of helical flagella (directly proportional to square of the helical radius and inversely proportional to pitch).

볼락 (Sebastes inermis)의 정자형성과정에 관한 미세구조적 연구 (Ultrastructural Study on Spermatogenesis of Rockfish, Sebastes inermis (Pisces: Scorpaenidae))

  • 이정식
    • Applied Microscopy
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    • 제26권3호
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    • pp.267-275
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    • 1996
  • The internal ultrastructural changes of germ cells and external morphology of spermatozoon during the spermatogenesis in the rockfish, Sebastes inermis were studied using transmission and scanning electron microscope. The testis is seminiferous tubule type in internal structure. Seminiferous tubule consist of many cyst which contain numerous germ cells in same developmental stage. Spermatogonium contained a large nucleus with single nucleolus in interphase. Primary spermatocyte identified by the presence of synaptonemal complex in nucleus and the contained a number of mitochondria, endoplasmic reticula and Golgi bodies in cytoplasm. The nucleoplasm of secondary spermatocyte was more concentrated than that of the previous phase. Spermatids were more condensed in nucleus and cytoplasm, and show the long-spherical shape. In the cytoplasm of spermatid mitochondria located to lower portion of the nucleus and Golgi bodies located to upper portion, but proacrosomal granule is not appeared. The spermatozoon consist of the head and tail. No acrosome could be found in the head. The cytoplasmic collar of posterior part in sperm head contained mitochondria which surrounded axial filament. The well developed axonemal lateral fins were identified in sperm flagellum, and the axial filament of the flagellum consist of nine pairs of peripheral microtubules and one pair of central microtubules.

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Spermatogenesis and Reproductive Cycle in Male Spisula sachalinensis (Bivalvia: Mactridae) of Korea

  • Lee, Ki-Yong;Chung, Ee-Yung;Lee, Jeong-Yong
    • 한국패류학회지
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    • 제24권1호
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    • pp.1-10
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    • 2008
  • Spermatogenesis and the reproductive cycle in male Spisula sachalinensis were investigated by cytological and histological observations. The morphology of the spermatozoon has a primitive type and is similar to those of other bivalves in that it contains a short midpiece with four mitochondria surrounding the centrioles. But spermatozoon of this species has not axial rod and satellite body in the midpiece. The morphologies of the sperm nucleus type and the acrosome shape of this species have a globe-shape type and modified cap-like shape, respectively. The spermatozoon is approximately $40-45{\mu}m$ in length including the sperm nucleus length (about $1.35{\mu}m$), acrosome length (about $1.50{\mu}m$) and tail flagellum. The axoneme of the sperm tail flagellum consists of nine pairs of microtubules at the periphery and a pair at the center. The axoneme of the sperm tail shows a 9+2 structure. The spawning period of these species lasts from June to July, and the main spawning occurs in July when seawater temperatures are greater than $20^{\circ}C$. The male reproductive cycle of this species can be categorized into five successive stages: early active stage (October to January), late active stage (February to April), ripe stage (April to June), partially spawned stage (June and July), and spent/inactive stage (August to September).

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