Lateral musculature in the whitemouth croaker (Micropogonias furnieri): Its characterization with respect to different gonadal conditions

Histochemical and ultrastructural studies were performed on the lateral musculature from individual female whitemouth croaker, Micropogonias furnieri, at the anterior, medium and posterior regions. Based upon histochemical myosin-ATPase (m-ATPase) determination, diverse types of red, pink and white...

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Autor principal: Devincenti, C.V
Otros Autores: Díaz, A.O, Goldemberg, A.L
Formato: Capítulo de libro
Lenguaje:Inglés
Publicado: 2000
Acceso en línea:Registro en Scopus
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100 1 |a Devincenti, C.V. 
245 1 0 |a Lateral musculature in the whitemouth croaker (Micropogonias furnieri): Its characterization with respect to different gonadal conditions 
260 |c 2000 
270 1 0 |m Devincenti, C.V.; Departamento de Biología, Fac. de Ciencias Exactas y Naturales, Univ. Nacional de Mar del Plata, Funes 3250 3er, (7600) Mar del Plata, Buenos Aires, Argentina 
506 |2 openaire  |e Política editorial 
504 |a Broughton, N.M., Goldspink, G., Jones, N.V., Histological differences in the lateral musculature of O-group roach, Rutilus rutilus (L) from different habitats (1981) J. Fish Biol., 18, pp. 117-122 
504 |a Carpené, E., Veggetti, A., Mascarello, F., Histochemical fibre types in the lateral muscle of fishes in fresh, brackish and salt water (1982) J. Fish Biol., 20, pp. 379-396 
504 |a Chayen, J., Bitensky, L., Butcher, R.G., (1973) Practical Histochemistry, , London: John Wiley & Sons 
504 |a Coughlin, D.J., Rome, L.C., The roles of pink and red muscle in powering steady swimming in scup, Stenotomus chrysops (1996) Am. Zool., 36, pp. 666-677 
504 |a Crupkin, M., Montecchia, C.L., Trucco, R.E., Seasonal variations in gonadosomatic index, liver-somatic index and myosin/actin ratio in actomyosin of mature hake (Merluccius hubbsi) (1988) Comp. Biochem. Physiol., 89 A, pp. 7-10 
504 |a Dal Pai-Silva, M., Dal Pai, V., Da Mota, D., Rodrigues, A.C., Histochemical study of muscle fiber types in Synbranchus marmoratus Bloch, 1795 (1995) Ann. Anat., 177, pp. 65-70 
504 |a Davies, M.L.F., Johnston, I.A., Van De Wal, J., Muscle fibers in rostral and caudal myotomes of the Atlantic cod (Gadus morhua L.) have different mechanical properties (1995) Phys. Zool., 68, pp. 673-697 
504 |a Defendi, V., Pearson, B., Quantitative estimation of succinic dehydrogenase activity in a single microscopic tissue section (1955) J. Histochem. Cytochem., 3, pp. 61-69 
504 |a Devincenti, C.V., (1998) Tipos de Fibras Presentes en Los Miotomos de Peces: Estudios Histológicos e Histoquímicos, , Tesis Doctoral. Universidad Nacional de Mar del Plata 
504 |a Devincenti, C.V., Díaz, A.O., Goldemberg, A.L., Characterization of lateral musculature in the striped weakfish (Cynoscion striatus Cuvier) (1998) Anat. Histol. Embryol., 27, pp. 399-406 
504 |a Gill, H.S., Weatherley, A.H., Lee, R., Legere, D., Histochemical characterization of myotomal muscle of five teleost species (1989) J. Fish Biol., 34, pp. 375-386 
504 |a Gillerman, R.G., Characterization of swimming muscle in the Atlantic mackerel, Scomber scombrus L (1980) J. Fish Biol., 17, pp. 31-41 
504 |a Goldemberg, A.L., Paron, L., Crupkin, M., Acid phosphatase activity in pre-and post-spawning hake (Merluccius hubbsi) (1987) Comp. Biochem. Physiol., 87 A, pp. 845-849 
504 |a Guth, L., Samaha, F.J., Procedure for the histochemical demonstration of actomyosin ATPase (1970) Exp. Neurol., 28, pp. 365-367 
504 |a Higgins, P.J., The histochemistry of muscle in juvenile Atlantic salmon Salmo salar L (1990) J. Fish Biol., 37, pp. 521-529 
504 |a Hotchkiss, R.D., A microchemical reaction resulting in the staining of polysaccharide structures in fixed tissue preparations (1948) Arch. Biochem., 16, pp. 131-141 
504 |a Isaac-Nahum, V.J., Synopsis of biological data on the whitemouth croaker, Micropogonias furnieri (Desmarest, 1823) (1988) FAO Fish. Synop., p. 150 
504 |a Jasra, P.K., Talesara, C.L., Kiran, S., Polymorphism of myofibrillar proteins in histochemically identified myotomal muscle fibre types of Heteropneustes fossilis (Bloch) and Labeo rohita (Hamilton) (1991) J. Fish Biol., 38, pp. 165-173 
504 |a Johnston, I.A., Altringham, J., Muscle function in locomotion (1988) Nature, 335, pp. 767-768 
504 |a Johnston, I.A., Davison, W., Goldspink, G., Adaptations in Mg+2-activated myofibrillar ATPase activity induced by temperature acclimation (1975) FEBS Lett., 50, pp. 293-295 
504 |a Johnston, I.A., Moon, T.W., Fine structure and metabolism of multiply innervated fast muscle fibres in teleost fish (1981) Cell Tiss. Res., 219, pp. 93-109 
504 |a Johnston, I.A., Patterson, S., Ward, P., Goldspink, G., The histochemical demonstration of myofibrillar adenosine triphosphatase activity in fish muscle (1974) Can. J. Zool., 52, pp. 871-877 
504 |a Karasinsky, J., Kirlarski, W., Polymorphism of myosin isoenzymes and myosin heavy chains in histochemically typed skeletal muscles of the roach Rutilus rutilus, L (1989) Cyprinidae, Fish. Comp. Biochem. Physiol, 92 B, pp. 727-731 
504 |a Kiessling, A., Hung, S.S.O., Storebakken, T., Differences in protein mobilization between ventral and dorsal parts of white epaxial muscle from fed, fasted and refed white sturgeon (Acipenser transmontanus) (1993) J. Fish Biol., 43, pp. 401-408 
504 |a Kiessling, A., Storebakken, T., sgård, T., Kiessling, K.H., Changes in the structure and function of the epaxial muscle of rainbow trout (Oncorhynchus mykiss) in relation to ration and age. 1 growth dynamics (1991) Aquaculture, 93, pp. 335-356 
504 |a Kryvi, H., Totland, G.K., Fibre types in locomotory muscles of the cartilaginous fish Chimaera monstrosa (1978) J. Fish Biol., 12, pp. 257-265 
504 |a Mascarello, F., Romanello, M.G., Scapolo, P.A., Histochemical and immunohistochemical profile of pink muscle fibres in some teleosts (1986) Histochemistry, 84, pp. 251-255 
504 |a Mascarello, F., Rowlerson, A., Radaelli, G., Scapolo, P.A., Veggetti, A., Differentiation and growth of muscle in the fish Sparus aurata (L): I. Myosin expression and organization of fibre types in lateral muscle from hatching to adult (1995) J. Musc. Res. Cell. Motil., 16, pp. 213-222 
504 |a Meyer-Rochow, V.B., Ingram, J.R., Red-white muscle distribution and fibre growth dynamics: A comparison between lacustrine and riverine populations of the southern smelt Retropina retropina Richardson (1993) Proc. R. Soc. Lond., B252, pp. 85-92 
504 |a Mosse, P.R.L., Hudson, R.C.L., The functional roles of different muscle fibre types identified in the myotomes of marine telcosts: A behavioural, anatomical and histochemical study (1977) J. Fish Biol., 11, pp. 417-430 
504 |a Nathanailides, C., Lopez-Albors, O., Stickland, N.C., Temperature and developmentally induced variation in the histochemical profile of myofibrillar ATPase activity in carp (1995) J. Fish Biol., 47, pp. 631-640 
504 |a Pecora, R.P., (1991) Variaciones Estacionales de Los Lípidos del Músculo de la Merluza (Merluccius Hubbsi) y su Influencia en los Cambios Producidos Durante la Conservación en Hielo, , Tesis Doctoral. Universidad Nacional de Mar del Plata 
504 |a Rome, L.C., Funke, R.P., Alexander, R.M., Lutz, G., Aldridge, H., Scott, F., Freadman, M., Why animals have different muscle fibre types (1988) Nature, 335, pp. 824-827 
504 |a Roura, S.I., Roldán, H., Goldemberg, A.L., Trucco, R.E., Crupkin, M., Effect of Triton x-100 treatment on the lipid composition, biochemical and functional properties of hake (Merluccius hubbsi) myofibrils purified from pre-and post-spawned fish (1993) Comp. Biochem. Physiol., 106 B, pp. 191-197 
504 |a Rowlerson, A., Scapolo, P.A., Mascarello, F., Carpené, E., Veggetti, A., Comparative study of myosins present in the lateral muscle of some fish: Species variations in myosin isoforms and their distribution in red, pink and white muscle (1985) J. Musc. Res. Cell Motil., 6, pp. 601-640 
504 |a Sänger, A.M., The so-called tonic muscle fibre type in cyprinid axial muscle: Their morphology and response to endurance exercise training (1997) J. Fish Biol., 50, pp. 487-497 
504 |a Sänger, A.M., Kim, Z.S., Adam, H., The fine structure of muscle fibres of roach, Rutilus rutilus (L) and chub, Leuciscus cephalus (L), Cyprinidae, Teleostei: Interspecific differences and effects of habitat and season (1990) J. Fish Biol., 36, pp. 205-213 
504 |a Takeuchi, T., Kuriaki, H., Histochemical detection of phosphorylase in animal tissues (1953) J. Histochem. Cytochem., 3, pp. 153-160 
504 |a Te Kronnie, G., Tatarczuch, L., Van Raamsdonk, W., Kirlarski, W., Muscle fibre types in the myotome of stickleback, Gasterosteus aculeatus L., a histochemical, immunohistochemical and ultrastructural study (1983) J. Fish Biol., 22, pp. 303-316 
504 |a Zawadowska, B., Kirlarski, W., Histochemical characterization of the muscle fiber types of the teleost (Esox lucius L.) (1984) Acta Histochem., 75, pp. 91-100 
520 3 |a Histochemical and ultrastructural studies were performed on the lateral musculature from individual female whitemouth croaker, Micropogonias furnieri, at the anterior, medium and posterior regions. Based upon histochemical myosin-ATPase (m-ATPase) determination, diverse types of red, pink and white fibres were discerned. Red muscle had abundant mitochondria and stained intensely for aerobic enzymes, white muscle scarcely stained for the same enzymes and pink muscle responded in an intermediate manner. Both white and pink muscle had few mitochondria. The relative proportion of red muscle increased towards the caudal region; pink muscle diminished towards this region and white muscle modified its proportion only in the anterior region. m-ATPase activity showed differences in relation to the gonadal condition along the body, particularly in the white fibres at the anterior and medium regions.  |l eng 
593 |a Departamento de Biología, Fac. de Ciencias Exactas y Naturales, Univ. Nacional de Mar del Plata, Funes 3250 3er, (7600) Mar del Plata, Buenos Aires, Argentina 
690 1 0 |a MYOSIN 
690 1 0 |a ANIMAL 
690 1 0 |a ARTICLE 
690 1 0 |a CYTOLOGY 
690 1 0 |a FAST MUSCLE FIBER 
690 1 0 |a FEMALE 
690 1 0 |a HISTOLOGY 
690 1 0 |a OVARY 
690 1 0 |a PERCIFORMES 
690 1 0 |a PHYSIOLOGY 
690 1 0 |a SKELETAL MUSCLE 
690 1 0 |a SLOW MUSCLE FIBER 
690 1 0 |a ANIMALS 
690 1 0 |a FEMALE 
690 1 0 |a MUSCLE FIBERS, FAST-TWITCH 
690 1 0 |a MUSCLE FIBERS, SLOW-TWITCH 
690 1 0 |a MUSCLE, SKELETAL 
690 1 0 |a MYOSINS 
690 1 0 |a OVARY 
690 1 0 |a PERCIFORMES 
700 1 |a Díaz, A.O. 
700 1 |a Goldemberg, A.L. 
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