• 제목/요약/키워드: ultrastructure.

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모래무지(Teleostei, Cyprinidae) 정자변형과정과 정자의 미세구조 (Ultrastructure of Pseudogobio esocinus (Teleostei, Cyprinidae) Spermiogenesis and Spermatozoa)

  • 김구환;권덕문;이준일;정성배
    • 한국수산과학회지
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    • 제40권3호
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    • pp.147-152
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    • 2007
  • Spermiogenesis and mature spermatozoa of the Korean false minnow Pseudogobio esocinus (Cyprinidae) are described by means of scanning and transmission electron microscopy. Spermiogenesis is characterized by lateral development of the flagellum, absence of nuclear rotation, and eccentric nuclear fossa formation. The spermatozoa have a spherical head containing a nucleus with highly condensed chromatin and no acrosome. The nuclear fossa contains the proximal centriole and anterior part of the distal centriole. The midpiece is type A II and contains semi-fused mitochondria around the axoneme. However, the symmetrical distribution of 4 or more the mitochondria does not follow a general pattern of the cyprinid spermatozoa. Cytoplasmic vesicles in the midpiece are common in Cypriniformes and some of Siluriformes and Characiformes spermatozoa.

Proteomic profiles and ultrastructure of regenerating protoplast of Bryopsis plumosa (Chlorophyta)

  • Klochkova, Tatyana A.;Kwak, Min Seok;Kim, Gwang Hoon
    • ALGAE
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    • 제31권4호
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    • pp.379-390
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    • 2016
  • When a multinucleate cell of Bryopsis plumosa was collapsed by a physical wounding, the extruded protoplasm aggregated into numerous protoplasmic masses in sea water. A polysaccharide envelope which initially covered the protoplasmic mass was peeled off when a cell membrane developed on the surface of protoplast in 12 h after the wounding. Transmission electron microscopy showed that the protoplasmic mass began to form a continuous cell membrane at 6 h after the wounding. The newly generated cell membrane repeated collapse and rebuilding process several times until cell wall developed on the surface. Golgi bodies with numerous vesicles accumulated at the peripheral region of the rebuilding cell at 24 h after the wounding when the cell wall began to develop. Several layers of cell wall with distinctive electron density developed within 48-72 h after the wounding. Proteome profile changed dramatically at each stage of cell rebuilding process. Most proteins, which were up-regulated during the early stage of cell rebuilding disappeared or reduced significantly by 24-48 h. About 70-80% of protein spots detected at 48 h after the wounding were newly appeared ones. The expression pattern of 29 representative proteins was analyzed and the internal amino acid sequences were obtained using mass spectrometry. Our results showed that a massive shift of gene expression occurs during the cell-rebuilding process of B. plumosa.

초파리 단안 신경계의 미세형태학적연구 (Ultrastructure of Ocellar Never System in Drosophila melanogaster)

  • 윤춘식
    • 생명과학회지
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    • 제9권6호
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    • pp.709-714
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    • 1999
  • 성층 초파리의 단안 신경계를 미세형태학적으로 연구 하였다. 단안은 수용기말단, 개재신경 그리고 신경교세포의 3종류로 구성되어 있다. 이들은 전자현미경 사진상에서 각기 다른 밝기를 보여주고 있으므로 쉽게 구분이 가능했다. 신경교세포 내에는 조면소포체가 풍부하게 존재하고, 수용기 말단과 개재신경내에는 신경세포에서 물질의 이동 통로인 미소관이 다수 관찰되었다, 수용기말단과 신경교세포를 연결해주는 capital projection이라는 인상적인 구조물이 관찰된다. 수용기 말단과 개재신경의 시냅스 활성부에 존재하는 리본모양의 구조물과 이들 주위에 모여있는 시냅스 소포들이 자주 관찰되었다. 그리고 단안 시신경이 최종적으로 집중되어 뇌로 신호를 전달해 주는 거대개재신경(giant interneuron)의 횡단 구조를 관찰 할 수 있었다.

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잠두 위조 바이러스와 세포 미세구조 (Broad Bean Wilt Fabaviruses and Their Specific Ultrastructures)

  • 최홍수;조점덕;이금희;김정수
    • Applied Microscopy
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    • 제31권3호
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    • pp.215-222
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    • 2001
  • 잠두위조바이러스(broad bean wilt virus) 5종의 분리주에 대하여 명아주 등 29종의 지표식물반응에 의한 병원성을 분류하였다. 이들 분리주에 감염된 세포에서 3종류의 서로 다른 특이한 미세구조가 관찰되었다. 첫번째 구조는 바이러스입자로 된 $1\sim2$층의 원형관(tube)이고, 둘째는 6각형의 벌집구조(comb)로서 이것은 외부모양이 원형 또는 각으로 된 구조로 구분되었으며, 셋째는 세포원형질 내에 존재하는 다량의 막구조(membrane proliferation)이었다.

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Ultrastructure of the flagellar apparatus in cryptomorphic Cryptomonas curvata (Cryptophyceae) with an emphasis on taxonomic and phylogenetic implications

  • Nam, Seung Won;Shin, Woongghi
    • ALGAE
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    • 제31권2호
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    • pp.117-128
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    • 2016
  • Cryptomonas curvata Ehrenberg is a photosynthetic freshwater flagellate and the type species of the genus Cryptomonas. We examined the flagellar apparatus of cryptomorphic C. curvata by transmission electron microscopy. The major components of the flagellar apparatus are the non-keeled rhizostyle (Rhs), striated fibrous root (SR), striated fiber-associated microtubular root (SRm), mitochondrion-associated lamella (ML), and two types of microtubular roots (3r and 2r). The non-keeled Rhs originate at the ventral basal body and consist of two types of microtubule bands extending together into the middle of the cell. The SR and SRm extend parallel to the left side of the cell. The ML originates from the ventral basal body and is a plate-like fibrous structure associated with mitochondria. The 3r extends from the dorsal basal body toward the dorsal anterior of the cell. The 2r originates between the two basal bodies and extends shortly to the left of the cell. The overall configuration of the flagellar apparatus is most similar to that previously reported for C. pyrenoidifera. These results demonstrate that the features of the flagellar apparatus are useful for distinguishing closely related species and inferring phylogenetic relationships among taxa.

저출력레이저가 성인의 치은섬유아세포의 성장양상과 미세구조에 미치는 영향에 관한 실험적 연구 (An Experimental Study on Growth Pattern and Ultrastructure of Human Gingival Fibroblasts Treated by Low Level Laser)

  • Nak-Hyun Ahn;Keum-Back Shin
    • Journal of Oral Medicine and Pain
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    • 제17권2호
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    • pp.129-149
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    • 1992
  • In order to verify the acceleration effect of low level laser (LLL) on oral mucosal wound healing process at cell biological level, the author studied growth pattern and ultrastructure in human gingival fibroblasts flashed by GaAlAs LLL-830 nm, 15mW for 10 minutes/flash one to three times at interval of 3-4 days through the evaluation of cell growth rate, protein conent/cell, DNA content/cell and ultrastructural changes for 14 days. The results were as follows : 1. The growth rate in gingival fibloblasts treated by LLL showed 4 orderly stages-decreasing stage after LLL treatment, acute increasing stage 3 days after LLL treatment, restring stage and recovering stage. 2. The effect of multiple flashes on LLL at interval of 3 days more or less was not proportional to times of flash on acceleration of growth in gingival fibroblasts. 3. The total protein content per gingival fibroblast was not significantly changed by LLL treatment in comparison with control group. But some kinds of protein which might be cell growth promoting factors were decreased immediately after LLL treatment, thereafter were acutely increased in cellular protein profile. 4. In ultrastructural changes of gingival fibroblasts treated by LLL, more prominent rough endoplasmic reticulum, mitochondrial hyperplasia/hypertrophy and increased extracellular fibrillar matrix were observed in comparison with control group under same experimental period.

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꼬치동자개 (Pseudobagrus brevicorpus) 정자의 미세구조와 계통적 고찰(경골어류, 메기목, 동자개과) (Ultrastructure of Spermatozoa of the Slender Catfish, Pseudobagrus brevicorpus (Teleostei, Bagridae) with Phylogenetic Considerations)

  • 김구환;이준일
    • 한국수산과학회지
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    • 제36권5호
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    • pp.480-485
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    • 2003
  • Morphology of the spermatozoa from the testes of the catfish (Pseudobagrus brevicorpus) was studied by transmission and scanning electron microscopy. The spermatozoa of P. brevicorpus are approximately $82.25\pm0.06\;{\mu}m$ in length and relatively simple cells composed of a spherical head, a short midpiece and a tail as in most teleost fish, The nucleus measuring about $2.00\pm0.02\;{\mu}m$ in length is depressed with a deep nuclear fossa of about $1.05\pm0.03\;{\mu}m$ in length three fifths of the nuclear length. The nuclear fossa contains the proximal and distal centrioles. The two centrioles are oriented approximately $150^{\circ}$ to each other. The mitochondria are arranged in two layers and their number is 12 or more. They are separated from the axoneme by the cytoplasmic canal. The axoneme is the 9+2 microtubular pattern and has inner but no outer dynein arms as in other bagrids. The axonemal fins were the closed to axonemal doublet 3 and 8. The axonemal fins and lost outer dynein arm are shared in Bagridae and the deep nuclear fossa is shared in Siluriformes. The axonemal fins observed in Bagridae and Amblycipitidae of Siluriformes might be the apomorphic character in Ostariophysi.

Spermatid Differentiation and Sperm Ultrastructure of the Granular Ark, Tegillarca granosa (Bivalvia: Arcidae)

  • Lee, Jung-Sick;Park, Jung-Jun;Shin, Yun-Kyung;Jin, Young-Guk
    • Fisheries and Aquatic Sciences
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    • 제10권3호
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    • pp.143-149
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    • 2007
  • This study describes spermatogenesis and sperm ultrastructure of the granular ark, Tegillarca granosa using light and electron microscopy. In the active spermatogenic season, the testis comprises many spermatogenic follicles that contain germ cells in different developmental stages. Primary spermatocytes in the pachytene stage are characterized by synaptonemal complexes. The early spermatids are characterized by the appearance of several Golgi bodies, increased karyoplasmic electron density, and tubular mitochondria. The mass of proacrosomal granules consists of numerous heterogeneous granules with high electron density that are about 20 nm in diameter. From the midstage of spermiogenesis, the well-developed mitochondria in the cytoplasm aggregate posterior to the nucleus and surround the proximal and distal centrioles. The proacrosomal granules condense and form a single acrosome with a thin envelope. During late spermiogenesis, the acrosome begins to elongate becoming conical. The sperm is approximately $35.0{\mu}m$ long and consists of a head, midpiece, and tail. The head comprises a round nucleus and a conical acrosome. A micro fibrous axial rod is observed between the nucleus and acrosome. The midpiece has a calyx-like structure with five mitochondria, and the tail, which has the typical "9+2" microtubular system, originates from the distal centriole.

멍게(Halocynthia roretzi) 혈구의 종류와 미세구조 (Classification and Ultrastructure of Hemocytes in the Tunicate Halocynthia roretzi (Ascidiacea: Pyuridae))

  • 신윤경;전제천;손맹현;김혜진;이정식
    • 한국수산과학회지
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    • 제45권5호
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    • pp.480-485
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    • 2012
  • The hemocytes of the tunicate Halocynthia roretzi are classified into six types based on their size, cellular form, and fine structure of the cytoplasmic granules: hyalinocytes, granulocytes, phagocytes, nephrocytes, morula cells, and multi-vacuole cells. Based on cell size, they are ordered multi-vacuole cells ($7.5{\mu}m$)>nephrocytes ($7.1{\mu}m$)>phagocytes ($6.8{\mu}m$)>granulocytes ($6.1{\mu}m$)>morula cells ($5.7{\mu}m$)>hyalinocytes ($5.4{\mu}m$). The proportion of hemocytes is ranked in the order multi-vacuole cells (54.8%)>nephrocytes (16.9%)>granulocytes (9.9%)>morula cells (8.8%)>phagocytes (6.1%)>hyalinocytes (3.5%).

Ultrastructural Changes and Shear Force of Duck Meat during Aging at 0℃

  • Kim, Young-Boong;Jeon, Ki-Hong;Kim, Young-Ho;Lee, Nam-Hyuck;Ku, Su-Kyung;Jang, Ae-Ra
    • 한국축산식품학회지
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    • 제32권5호
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    • pp.578-583
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    • 2012
  • The purpose of this study was to evaluate the ultrastructural and shear force changes of duck breast and leg meat during aging at $0^{\circ}C$. Pekin ducks (45 d old) purchased from Greemud Co. were used for this experiment, and were stored at $0^{\circ}C$ for 7 d in order to determine the changes of the meat structure using transmission electron microscopy (TEM) and shear force. At day 0, A-band, I-band, M-line and Z-line of sarcomeres were seen clearly, but sarcomeres started to lose structure and become extended in length from day 2. With extended aging periods, myofibrils were destroyed and symptoms of aging became more obvious. In the duck breast meat, some myofibrils were also destroyed at the Z-line, but were mainly destroyed at the M-line. The change in structure of duck leg meat over time was similar to that of breast meat. After five days and seven days of aging, mitochondria size and quantity were determined to be increased between the myofibrils. Shear force was decreased over time. From this study, aging at $0^{\circ}C$ was found to negatively influence the ultrastructure and shear force of duck meat.