ON THE MEMBRANE POTENTIAL OF THE UNFERTILIZED EGG OF THE MEDAKA, ORYZIAS LATIPES AND CHANGES ACCOMPANYING ACTIVATION*
1958; Wiley; Volume: 4; Issue: 2 Linguagem: Inglês
10.1111/j.1440-169x.1958.tb00148.x
ISSN0367-0228
Autores Tópico(s)Fish biology, ecology, and behavior
ResumoEmbryologiaVolume 4, Issue 2 p. 79-91 Free Access ON THE MEMBRANE POTENTIAL OF THE UNFERTILIZED EGG OF THE MEDAKA, ORYZIAS LATIPES AND CHANGES ACCOMPANYING ACTIVATION* REIJI HORI, REIJI HORI Biological Institute, Toyama University, Toyama, JapanSearch for more papers by this author REIJI HORI, REIJI HORI Biological Institute, Toyama University, Toyama, JapanSearch for more papers by this author First published: October 1958 https://doi.org/10.1111/j.1440-169X.1958.tb00148.xCitations: 22 * This work was partly supported by the Scientific Fund of the Ministry of Education. AboutPDF ToolsRequest permissionExport citationAdd to favoritesTrack citation ShareShare Give accessShare full text accessShare full-text accessPlease review our Terms and Conditions of Use and check box below to share full-text version of article.I have read and accept the Wiley Online Library Terms and Conditions of UseShareable LinkUse the link below to share a full-text version of this article with your friends and colleagues. Learn more.Copy URL Share a linkShare onEmailFacebookTwitterLinkedInRedditWechat Literature Aketa, K., 1954. The chemical nature and the origin of the cortical alveoli in the egg of the medaka, Oryzias latipes. Embryologia, 2, 63–66. 10.1111/j.1440-169X.1954.tb00054.x CASGoogle Scholar Brooks, S. C., 1939. Intake and loss of radioactive cations by certain marine eggs. Proc. Soc. Exp. Biol. and Med., 42, 557–558. 10.3181/00379727-42-10973P CASWeb of Science®Google Scholar Dan, K., 1933. Electrokinetic studies of marine ova. I. Arbacia puncturata. J. Cell, and Comp. Physiol., 3, 447–492. 10.1002/jcp.1030030411 Google Scholar Dan, K., 1934. Electrokinetic studies of marine ova. II. Cumingea tellinoides, Asterias forbesii, Echinarachnius parma, Nereis limbatus and Cerebratulus lacteus. Biol. Bull., 66, 247–256. 10.2307/1537378 Web of Science®Google Scholar Dorfman, W. A., 1934. Electrical polarity of the amphibian egg and its reversal through fertilization. Protoplasma, 21, 245–257. 10.1007/BF01984499 CASGoogle Scholar Fursphan, E. J., 1955. Electrical measurement on sea urchin eggs. Appendix to thesis on "Studies on certain sensory and motor system of decapod crustaceans." California Institute of Technology, Pasadena. P. 130–149. (cited from A. Tyler, A. Monroy, C. Y. Kao, and H. Grundfest, 1956. Membrane potential and resistance of the starfish egg before and after fertlization. Biol. Bull., 111, 153–177.) Google Scholar Grundfest, H., Kao, C. Y., Monroy, A., and Tyler, A., 1955. Existence of a "resting potential" in the egg of the starfish Asterias forbessi. Biol. Bull., 109, 346. Web of Science®Google Scholar Hasama, B., 1934. Über die bioelektrischen Phänomene am Ei von Hynobius neblosus bei künstlicher Befruchtung. Protoplasma, 22, 597–606. 10.1007/BF01608926 Google Scholar Heilbrunn, L. V., 1956. The dynamics of living protoplasm. Academic Press, New York . Google Scholar Kodgkin, A. L., 1951. The ionic basis of electrical activity in nerve and muscle. Biol. Revs., 26, 339–409. 10.1111/j.1469-185X.1951.tb01204.x Web of Science®Google Scholar Hori, R., 1955. On the propagation of cortical response of the sea urchin egg to electrical stimulation. Exp. Cell Res., 9, 399–406. 10.1016/0014-4827(55)90070-7 CASPubMedWeb of Science®Google Scholar Iida, T., 1943 a. Changes of electric capacitance following fertilization in sea urchin eggs. J. Fac. Sci. Tokyo Imp. Univ., IV, 6, 141–151. Google Scholar Iida, T., 1943 b. Correlative Changes of capacitance and permeability following fertilization in sea urchin eggs. Ibid., IV, 6, 153–163. Google Scholar Iida, T., 1943 c. Effects of diluted sea water on membrane capacitance of sea urchin eggs. Ibid., IV, 6, 165–173. Google Scholar Kamata, T., 1936. Membrane potential of the egg of Oyyzias latipes. Ibid., IV, 4, 203–213. Google Scholar Kamata, T., and Kinoshita, H., 1940. Membrane potential of sea urchin egg. Proc. Imp. Acad. Tokyo, 16, 149–152. Google Scholar Kao, C. Y., 1956. Changing electrical Constance of the Fundulus egg plasma membrane. J. Gen. Physiol., 40, 107–119. 10.1085/jgp.40.1.107 CASPubMedWeb of Science®Google Scholar Lillie, R. S., 1909. The general biological significance of changes in the permeability of the surface layer or plasma membrane of living cells. Biol. Bull., 17, 188–208. 10.2307/1536115 Web of Science®Google Scholar Lundberg, A., 1955. Microelectrode experiments on unfertilized sea urchin eggs. Exp. Cell Res., 9, 393–398. 10.1016/0014-4827(55)90069-0 CASPubMedWeb of Science®Google Scholar Maéno, T., Morita, H., and Kuwabara, M., 1956. Potential measurements on the eggs of Japanese killi-fish, Oryzias latipes. J. Fac. Sci. Kyushu Univ., ser. E, 2, 87–94. Web of Science®Google Scholar Malm, M., and Wachtmeister, L., 1950. A comparison between the potassium content of unfertilized and fertilized sea-urchin eggs. Arkiv f. Kemi, 2, 443–449. CASWeb of Science®Google Scholar Mazia, D., 1937. The release of calcium in Arbacia egg on fertilzation. J. Cell and Comp. Physiol., 10, 291–304. 10.1002/jcp.1030100304 CASWeb of Science®Google Scholar Monroy-Oddo, A., 1946. Variations in Ca and Mg contents in Arbacia eggs as a result of fertilization. Experientia, 2, 371–372. 10.1007/BF02163945 CASPubMedWeb of Science®Google Scholar Monroy-Oddo, A., and Esposito, A., 1951. Changes in the potassium content of sea urchin eggs on fertilization. J. Gen. Physiol., 34, 285–293. 10.1085/jgp.34.3.285 PubMedWeb of Science®Google Scholar Moser, F., 1939. Studies on a cortical layer response to stimulating agents in the Arbacia egg. II. Response to chemical and physical agents. J. Exp. Zool., 80, 447–471. 10.1002/jez.1400800305 CASWeb of Science®Google Scholar ÖRström, A., and ÖRström, M., 1942. Über die Bindung von Kalzium in Ei und Larve von Paracentrotus lividus. Protoplasma, 36, 475–490. 10.1007/BF01600970 Google Scholar Péterfi, T., and Rothschild, V., 1935. Bio-electric transients during fertilization. Nature, 135, 874–875. 10.1038/135874c0 Google Scholar Pumphrey, R. J., 1931. The potential difference across the surface bounding the unfertilized egg of the brown trout. Proc. Roy. Soc. London, ser. B, 108, 511–521. 10.1098/rspb.1931.0057 CASWeb of Science®Google Scholar Rothschild, Lord, 1938. The biophysics of the egg surface of Echinus esculentus during fertilization and cytolysis. J. Exp. Biol., 15, 209–216. CASGoogle Scholar Rothschild, Lord, 1956. Fertilization. Methuen, London . Google Scholar Rothschild, Lord, 1957. The membrane capacitance of the sea urchin egg. J. Biophys. Biochem. Cytol., 3, 103–110. 10.1083/jcb.3.1.103 CASPubMedWeb of Science®Google Scholar Rothschild, Lord, and Swann, M. M., 1949. The fertilization reaction in the sea-urchin egg. A propagated response to sperm attachment. J. Exp. Biol., 26, 164–176. CASPubMedWeb of Science®Google Scholar Scheer, B. T., Monroy, A., Santangelo, M., and Riccobono, G., 1954. Action potentials in sea urchin eggs at fertilization. Exp. Cell Res., 7, 284–287. 10.1016/0014-4827(54)90065-8 CASPubMedWeb of Science®Google Scholar Shapiro, H., and Davson, H., 1941. Permeability of the Arbacia egg to potassium. Biol. Bull., 81, 295–296. Google Scholar Svaetichen, G., 1953. The cone action potential. Acta physiol. Scand., 29, Suppl., 106, 565–600. Google Scholar Sugiyama, M., 1953. Physiological analysis of the cortical response of the sea urchin egg to stimulating reagents. II. The propagating or non-propagating nature of the cortical changes induced by various reagents. Biol. Bull., 104, 216–223. 10.2307/1538795 CASWeb of Science®Google Scholar Sugiyama, M., 1956. Physiological analysis of the cortical response of the sea urchin egg. Exp. Cell Res., 10, 364–376. 10.1016/0014-4827(56)90009-X CASPubMedWeb of Science®Google Scholar Tamashige, M., and Yamaguchi, T., 1956. Changes in the membrane potential of the herring egg upon fertilization (in Japanese). Zool. Mag. (Tokyo), 65, 132. Google Scholar Taylor, C. V., and Whitaker, D. M., 1926. A measurable potential difference between the cell interior and outside medium. Carnegie Inst., Year Book, No. 25, 248–249. Google Scholar Tyler, A., Monroy, A., Kao, C. Y., and Grundfest, H., 1955. Electrical potential changes upon fertilization of the starfish egg. Biol. Bull., 109, 352–353. Web of Science®Google Scholar Tyler, A., 1956. Membrane potential and resistance of the starfish egg before and after fertilization. Ibid., 111, 153–177. Web of Science®Google Scholar Tyler, A., and Monroy, A., 1956. Change in rate of release of K42 upon fertilization in eggs of Arbacia punctulata. Ibid., 111, 296. Web of Science®Google Scholar Umrath, K., 1954. Über das elektrische Potential und der Aktionsstrom von Eierstockeiern von Rana esculenta. Protoplasma, 43, 385–401. 10.1007/BF01248277 Web of Science®Google Scholar Yamamoto, T., 1936. Shrinkage and permeability of the chorion of Oryzias egg, with special reference to the reversal of selective permeability. J. Fac. Sci. Tokyo Imp. Univ., IV, 4, 249–261. Google Scholar Yamamoto, T., 1939 a. Changes of the cortical layer of the egg of Oryzias latipes at the time of fertilization. Proc. Imp. Acad. (Tokyo), 15, 269–271. 10.2183/pjab1912.15.269 Google Scholar Yamamoto, T., 1939 b. Mechanism of membrane elevation in the egg of Oryzias latipes at the time of fertilization. Ibid., 15, 272–274. Google Scholar Yamamoto, T., 1941. The osmotic properties of the egg of fresh-water fish, Oryzias latipes. J. Fac. Sci. Tokyo Imp. Univ., IV, 5, 461–472. Google Scholar Yamamoto, T., 1944 a. Physiological studies on fertilization and activation of fish eggs. I. Response of the cortical layer of the egg of Oryzias latipes to insemination and artificial stimulation. Annot. Zool. Japon., 22, 109–125. Google Scholar Yamamoto, T., 1944 b. Physiological studies on fertilization and activation of fish eggs. II. The conduction of the "fertilization-wave" in the egg of Oryzias latipes. Ibid., 22, 126–136. Google Scholar Yamamoto, T., 1954. Physiological studies on fertilization and activation of fish egg. V. The role of calcium ions in activation of Oryzias eggs. Exp. Cell Res., 6, 56–68. 10.1016/0014-4827(54)90147-0 CASPubMedWeb of Science®Google Scholar Yamamoto, T., 1956. The physiology of fertilization in the medaka (Oryzias latipes). Exp. Cell Res., 10, 387–393. 10.1016/0014-4827(56)90011-8 CASPubMedWeb of Science®Google Scholar Citing Literature Volume4, Issue2October 1958Pages 79-91 ReferencesRelatedInformation
Referência(s)