THE LONG‐LIVED MESSENGER RIBONUCLEIC ACID OF FLOWERING‐PLANT SEEDS
1976; Wiley; Volume: 51; Issue: 3 Linguagem: Inglês
10.1111/j.1469-185x.1976.tb01129.x
ISSN1469-185X
Autores Tópico(s)Plant tissue culture and regeneration
ResumoBiological ReviewsVolume 51, Issue 3 p. 329-362 THE LONG-LIVED MESSENGER RIBONUCLEIC ACID OF FLOWERING-PLANT SEEDS PETER I. PAYNE, PETER I. PAYNE Agricultural Research Council, Unit of Developmental Botany, 181A Huntingdon Road, Cambridge CB 3 oDYSearch for more papers by this author PETER I. PAYNE, PETER I. PAYNE Agricultural Research Council, Unit of Developmental Botany, 181A Huntingdon Road, Cambridge CB 3 oDYSearch for more papers by this author First published: August 1976 https://doi.org/10.1111/j.1469-185X.1976.tb01129.xCitations: 60AboutPDF 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 References Abelson, H. T. & Penman, S. (1972). Messenger RNA formation: resistance to inhibition by 3′-deoxycytidine. Biochem. biophys. Acta 277, 129–33. CASPubMedWeb of Science®Google Scholar Allende, J. E. & Bravo, M. (1966). Amino acid incorporation and aminoacyl transfer in a wheat embryo system. J. biol. Chem. 241, 5813–18. CASPubMedWeb of Science®Google Scholar Attardi, G., Parnas. H., Hwang, M. I. H. & Attardi, B. (1966). Giant-size rapidly labeled nuclear ribonucleic acid and cytoplasmic messenger ribonucleic acid in immature duck erythrocytes. J. molec. Biol. 20, 145–82. 10.1016/0022-2836(66)90123-9 CASPubMedWeb of Science®Google Scholar Aviv, H. & Leder, P. (1972). Purification of biologically active globin messenger RNA by chromatography on oligothymidylic acid-cellulose. Proc. natn. Acad. Sci. U.S.A. 69, 1408–12. 10.1073/pnas.69.6.1408 CASPubMedWeb of Science®Google Scholar Bachenheimer, S. & Darnell, J. E. (1975). Adenovirus-2 mRNA is transcribed as part of a high molecular weight precursor RNA. Proc. natn. Acad. Sci. U.S.A. 72, 4445–9. 10.1073/pnas.72.11.4445 CASPubMedWeb of Science®Google Scholar Barker, G. R. & Bray, C. M. (1972). Nucleic acid and protein synthesis in germinating seeds. Symp. Biol. Hung. 13, 61–8. CASGoogle Scholar Barker, G. R., Bray, C. M. & Detlefsen, M. A. (1971). An examination of the evidence for stable messenger RNA in seed. Biochem. J. 124, 5P–6P. 10.1042/bj1240005P CASPubMedWeb of Science®Google Scholar Barker, G. R. & Hollinshead, J. A. (1964). Nucleotide metabolism in germinating seeds. The ribonucleic acid of Pisum arvense. Biochem. J. 93, 78–83. 10.1042/bj0930078 CASPubMedWeb of Science®Google Scholar Barker, G. R. & Rieber, M. (1967). The development of polysomes in the seed of Pisum arvense. Biochem. J. 105, 1195–201. 10.1042/bj1051195 CASPubMedWeb of Science®Google Scholar Barton, L. V. (1961). Seed Preservation and Longevity, London : Leonard Hill. Google Scholar Bhat, S. P. & Padayatty, J. D. (1974). Presence of conserved messenger RNA in rice embryos. Ind. J. Biochem. Biophys. 11, 47–50. CASPubMedGoogle Scholar Biswas, B. B. (1969). Ribosomes in cotyledons of mungbean seeds at different stages of germination. Archs Biochem. Biophys. 132, 198–204. 10.1016/0003-9861(69)90353-1 CASPubMedWeb of Science®Google Scholar Boedtker, H., Crkvenjakov, R. B., Last, J. A. & Doty, P. (1974). The identification of collagen messenger RNA. Proc. natn. Acad. Sci. U.S.A. 71, 4208–12. 10.1073/pnas.71.10.4208 CASPubMedWeb of Science®Google Scholar Brawerman, G. (1974). The isolation of messenger RNA from mammalian cells. Meth. Enzym. 30, Part F, 605–12. 10.1016/0076-6879(74)30058-4 CASPubMedGoogle Scholar Bcurr, H. & Lingrel, J. B. (1971). Poly A sequences at the 3′ termini of rabbit globin mRNAs. Nature (New Biol.) 233, 41–3. PubMedGoogle Scholar Chapman, J. A. & Rieber, M. (1972). Distribution of ribosomes in dormant and imbibed seeds of Pisum arvense: electron-microscopic observations. Biochem. J. 105, 1201–2. Google Scholar Chen, D. & Osborne, D. J. (1970). Hormones in the translational control of early germination in wheat embryos. Nature, Lond. 226, 1157–60. 10.1038/2261157a0 CASPubMedWeb of Science®Google Scholar Chen, D., Sarid, S. & Katchalski, E. (1968a). Protein biosynthesis in germinating wheat embryos. Agrochimica 12, 389–97. CASWeb of Science®Google Scholar Chen, D., Sarid, S. & Katchalski, E. (1968b). Studies on the nature of messenger RNA in germinating wheat embryos. Proc. natn. Acad. Sci. U.S.A. 60, 902–9. 10.1073/pnas.60.3.902 CASPubMedWeb of Science®Google Scholar Chen, D., Schultz, G. A. & Katchalski, E. (1971). Early ribosomal RNA transcription and appearance of cytoplasmic ribosomes during germination of the wheat embryo. Nature (New Biol.) 231, 69–72. 10.1038/newbio231069a0 CASPubMedWeb of Science®Google Scholar Cherry, J. H. (1967). Nucleic acid metabolism in ageing cotyledons. Symp. Soc. exp. Biol. 21, 247–68. CASPubMedGoogle Scholar Ching, T. M. (1972). Metabolism of germinating seeds. In Seed Biology, vol. 2 (ed. T. T. Kozlowski). New York : Academic Press. Inc. Google Scholar Cozzone, A. & Marchis-Mouren, G. (1967). Messenger ribonucelic acid stability in rat pancreas and liver. Biochemistry 6, 3911–7. 10.1021/bi00864a037 CASPubMedWeb of Science®Google Scholar Darnbrough, C. & Ford, P. J. (1976). Cell-free translation of maternal mRNA of Xenopus laevis. Devi Biol. (in the press). 10.1016/0012-1606(76)90152-4 Web of Science®Google Scholar Delseny, M. (1971). Cytological aspects of metabolism of RNA during the germination of Vicia sativa. Revue gén. Bot. 78, 161–70. Google Scholar Delseny, M., Aspart, L., Balat, H. & Guitton, Y. (1974). Détection de séquences polyribo-adényliques dans les ARN de Radis. C. r. hebd. Séanc. Acad. Sc., Paris, 278, Serie D, 1225–8. CASWeb of Science®Google Scholar Delseny, M., Peralta, A. T. & Guitton, Y. (1975). Effects of cordycepin on RNA metabolism in germinating seedlings. Biochem. Biophys. Res. Commun. 64, 1278–85. 10.1016/0006-291X(75)90831-1 CASPubMedWeb of Science®Google Scholar Deltour, R. (1970). Synthèse et translocation de RNA dans les cellules radiculaires de Zea mays au début de la germination. Planta, 92, 235–9. 10.1007/BF00388557 CASPubMedWeb of Science®Google Scholar Diez, J. & Brawerman, G. (1974). Elongation of the polyadenylate segment of messenger RNA in the cytoplasm of mammalian cells. Proc. natn. Acad. Sci. U.S.A. 71, 4091–5. 10.1073/pnas.71.10.4091 CASPubMedWeb of Science®Google Scholar Dure, L. S. (1972). Translation control by ABA in cotton seed embryogenesis. Symp. Biol. Hung. 13, 285–91. Google Scholar Dure, L. S. (1973). Regulation of protein synthesis in cotton seed embryogenesis and germination. Biochem. Soc. Symp. 38, 217–34. PubMedGoogle Scholar Dure, L. S. (1974). Translation control in seed embryogenesis and germination. Abstracts of papers, AGFD 12, 167th ACS National Meeting, Los Angeles, California, 1974. Google Scholar Dure, L. S. (1975). Seed formation. A. Rev. Pl. Physiol. 26, 259–78. 10.1146/annurev.pp.26.060175.001355 CASWeb of Science®Google Scholar Dure, L. S. & Waters, L. C. (1965). Long-lived messenger RNA: Evidence from cotton seed germination. Science N.Y. 147, 410–12. 10.1126/science.147.3656.410 CASPubMedWeb of Science®Google Scholar Efron, D., Evenari, M. & Groot, N. (1971). Amino-acid incorporation activity of lettuce seed ribosomes during germination. Life Sci. 10, 1015–9. 10.1016/0024-3205(71)90105-6 CASPubMedWeb of Science®Google Scholar Efron, D. & Marcus, A. (1973a). Translation of TMV-RNA in a cell free wheat embryo system. Virology 53, 343–8. 10.1016/0042-6822(73)90212-2 CASPubMedWeb of Science®Google Scholar Efron, D. & Marcus, A. (1973b). Efficient synthesis of rabbit globin in a cell-free system from wheat embryo. FEES Lett. 33, 23–7. 10.1016/0014-5793(73)80150-4 CASPubMedWeb of Science®Google Scholar Fabisz-Kijowska, A., Dullin, P. & Walerych, W. (1975). Isolation and purification of RNA polymerases from rye embryos. Biochim. biophys. Acta 390, 105–16. 10.1016/0005-2787(75)90013-1 CASPubMedWeb of Science®Google Scholar Firtel, R. A. & Lodish, H. F. (1973). A small nuclear precursor of messenger RNA in the cellular slime mold Dictyostelium discoideum. J. molec. Biol. 79, 295–14. 10.1016/0022-2836(73)90007-7 CASPubMedWeb of Science®Google Scholar Franklin, R. M. (1963). The inhibition of ribonucleic synthesis in mammalian cells by actinomycin D. Biochim. biophys. Acta 72, 555–65. 10.1016/0006-3002(63)90281-6 CASPubMedWeb of Science®Google Scholar Fraser, R. S. S. (1975). Studies on messenger and ribosomal RNA synthesis in plant tissue cultures induced to undergo synchronous cell division. Eur. J. Biochem. 50, 529–37. 10.1111/j.1432-1033.1975.tb09893.x CASPubMedWeb of Science®Google Scholar Gientka-Rychter, A. & Cherry, J. H. (1968). De novo synthesis of isocitratase in peanut (Arachis hypogaea) cotyledons. Pl. Physiol., Lancaster 43, 653–9. 10.1104/pp.43.4.653 CASPubMedWeb of Science®Google Scholar Goldberg, I. H. & Friedman, P. A. (1971). Antibiotics and nucleic acids. A. Rev. Biochem. 40, 775–810. 10.1146/annurev.bi.40.070171.004015 CASPubMedWeb of Science®Google Scholar Gordon, M. E. & Payne, P. I. (1976). In vitro translation of the long-lived messenger ribonucleic acid of dry seeds. Planta 130, 269–73. 10.1007/BF00387832 CASPubMedWeb of Science®Google Scholar Grierson, D. & Covey, S. (1975). Changes in the amount of ribosomal RNA and poly(A)-containing RNA during leaf development. Planta 127, 77–86. 10.1007/BF00388865 CASPubMedWeb of Science®Google Scholar Gross, P. R. (1967). The control of protein synthesis in embryonic development and differentiation. Current Topics in Developmental Biology 2, 1–66. 10.1016/S0070-2153(08)60282-3 CASPubMedGoogle Scholar Hammett, J. R. & Katterman, F. R. (1975). Storage and metabolism of poly (adenylic acid)-mRNA in germinating cotton seeds. Biochemistry 14, 4375–9. 10.1021/bi00691a005 CASPubMedWeb of Science®Google Scholar Harkers, E. & Muller, W. (1962). On the inhibition of RNA synthesis by actinomycin. Biochem. Biophys. Res. Commun. 7, 107–10. 10.1016/0006-291X(62)90155-9 CASPubMedWeb of Science®Google Scholar Harris, B. & Dure, L. S. (1974). Differential effects of 3′-deoxynucleosides on RNA synthesis in cotton cotyledons. Biochemistry 13, 5463–7. 10.1021/bi00724a002 CASPubMedWeb of Science®Google Scholar Higgins, T. J. V., Mercer, J. F. B. & Goodwin, P. B. (1973). Poly (A) sequences in plant polysomal RNA. Nature (New Biol.) 246, 68–9. 10.1038/newbio246068a0 CASPubMedWeb of Science®Google Scholar Hock, B. & Beevers, H. (1966). Development and decline of the glyoxylate-cycle enzymes in water-melon seedlings (Citrullus vulgaris). Effects of dactinomycin and cycloheximide. Z. Pflanzenphysiol. 55, 405–14. CASWeb of Science®Google Scholar Hunter, T. R., Knowland, J. Zimmern, D. & Hunt, T. (1976). The messenger RNA for the coat protein of tobacco mosaic virus. Nature, Lond. 260, 759–64. 10.1038/260759a0 CASPubMedWeb of Science®Google Scholar Ihle, J. N. (1971). A serine protease from germinating cotton. Fedn Proc. Fedn Am. Sacs. exp. Biol. 30, 1184. Abs. no. 766. Web of Science®Google Scholar Ihle, J. N. & Dure, L. S. (1969). Synthesis of a protease in germinating cotton cotyledons catalyzed by mRNA synthesised during embryogenesis. Biochem. Biophys. Res. Commun. 36, 705–10. 10.1016/0006-291X(69)90667-6 CASPubMedWeb of Science®Google Scholar Ihle, J. N. & Dure, L. S. (1970). Hormonal regulation of translation inhibition requiring RNA synthesis. Biochem. Biophys. Res. Common. 38, 995–1001. 10.1016/0006-291X(70)90338-4 CASPubMedWeb of Science®Google Scholar Ihle, J. N. & Dure, L. S. (1971). Translation control in seed embryogenesis and germination. Abstracts of papers. AGFD 51. 162nd ACS National Meeting, Washington D.C., 1971. Google Scholar Ihle, J. N. & Dure, L. S. (1972a). The temporal separation of transcription and translation and its control in cotton embryogenesis and germination. In Plant Growth Substances 1970 (ed. D. J. Carr). Berlin : Springer-Verlag. Google Scholar Ihle, J. N. & Dure, L. S. (1972b). The developmental biochemistry of cottonseed embryogenesis and germination. I. Purification and properties of a carboxypeptidase from germinating cotyledons. J. biol. Chem. 247, 5034–40. CASPubMedWeb of Science®Google Scholar Ihle, J. N. & Dure, L. S. (1972c). The developmental biochemistry of cottonseed embryogenesis and germination. III. Regulation of the biosynthesis of enzymes utilised in germination. J. biol. Chem. 247, 5048–55. CASPubMedWeb of Science®Google Scholar Ihle, J. N., McRorie, R. A. & Dure, L. S. (1970). Translation inhibition and its reversalbyactinomycin D. Fedn Proc. Fedn Am. Socs. exp. Biol. 29, 669. Abs. no. 2379. Google Scholar Jachymczyk, W. J., Sieliwanowicz, B. & Chlebowicz, E. (1974). Activation of preexisting messenger RNA in dry pea embryo axes. Acta biochim. pol. 21, 137–43. CASPubMedWeb of Science®Google Scholar Jachymczyk, W. J., Zawierucha, R. & Sieliwanowicz, B. (1971). Activation of ribosomes from pea seeds by trypsin. Acta biochim. pol. 18, 129–34. CASPubMedWeb of Science®Google Scholar Jelinek, W., Adesnik, M., Salditt, M., Sheiness, D., Wall, G., Malloy, G., Philipson, L. & Darnell, J. E. (1973). Further evidence on the nuclear origin and transfer to the cytoplasm of polyadenylic sequences in mammalian cell RNA. J. molec. Biol. 75, 515–32. 10.1016/0022-2836(73)90458-0 CASPubMedWeb of Science®Google Scholar Jendrisak, J. J. & Becker, W. M. (1974). Purification and subunit analysis of wheat-germ ribonucleic acid polymerase. II. Biochem. J. 139, 771–7. 10.1042/bj1390771 CASPubMedWeb of Science®Google Scholar Julien, R. & Guitton, Y. (1972). Germination des grains et biologie moléculaire. Soc. bot. Fr., Mémoires 1972, 133–40. 10.1080/00378941.1972.10839113 Google Scholar Key, J. L. (1969). Hormones and nucleic acid metabolism. A. Rev. Pl. Physiol. 20, 449–74. 10.1146/annurev.pp.20.060169.002313 CASWeb of Science®Google Scholar Lado, P., Schwendimann, M. & Marré, E. (1968). Repression of isocitrate lyase synthesis in seeds germinated in the presence of glucose. Biochim. biophys. Acta 157, 140–8. 10.1016/0005-2787(68)90272-4 CASPubMedWeb of Science®Google Scholar Leaver, C. J. & Dyer, J. A. (1974). Caution in the interpretation of plant ribosome studies. Biochem. J. 144, 165–7. 10.1042/bj1440165 CASPubMedWeb of Science®Google Scholar Lewin, B. (1975). Units of transcription and translation: the relationship between heterogeneous nuclear RNA and messenger RNA. Cell 4, 11–20. 10.1016/0092-8674(75)90128-2 CASPubMedWeb of Science®Google Scholar Loening, U. E. (1968). RNA structure and metabolism. A. Rev. Pl. Physiol. 19, 37–70. 10.1146/annurev.pp.19.060168.000345 CASWeb of Science®Google Scholar Longo, C. P. (1968). Evidence for de novo synthesis of isocitratase and malate synthase in germinating peanut cotyledons. Pl. Physiol., Lancaster 43, 660–4. 10.1104/pp.43.4.660 CASPubMedWeb of Science®Google Scholar McCarthy, W. J., App, A. A. & Crotty, W. J. (1971). The effect of calcium on in vitro polyphenylalanine synthesis by rice embryos. Biochim. biophys. Acta 246, 132–40. 10.1016/0005-2787(71)90078-5 CASPubMedWeb of Science®Google Scholar MacDonald, I. R. & Ellis, R. J. (1969). Does cycloheximide inhibit protein synthesis specifically in plant tissues Nature, Lond. 222, 791–2. 10.1038/222791a0 CASWeb of Science®Google Scholar Maherchandani, N. & Naylor, J. M. (1972). Onset of the synthesis of RNA and protein in mature aleurone tissue of wild oats (Avena fatua). Can. J. Bot. 50, 305–13. 10.1139/b72-041 CASWeb of Science®Google Scholar Manahan, C. O., App, A. A. & Still, C. C. (1973). The presence of polyadenylate sequences in the ribonucleic acid of a higher plant. Biochem. Biophys. Res. Commun. 53, 588–95. 10.1016/0006-291X(73)90702-X CASPubMedWeb of Science®Google Scholar Mano, Y. (1966). Role of a trypsin-like protease in ‘informosomes’ in a trigger mechanism of activation of protein synthesis by fertilisation in sea urchin eggs. Biochem. biophys. Res. Commun. 25, 216–21. 10.1016/0006-291X(66)90583-3 CASPubMedWeb of Science®Google Scholar Mano, Y. & Nagano, H. (1966). Release of maternal RNA from some particles as a mechanism of activation of protein synthesis by fertilization in sea urchin eggs. Biochem. biophys. Res. Commun. 25, 210–15. 10.1016/0006-291X(66)90582-1 CASPubMedWeb of Science®Google Scholar Marcus, A. (1969). Seed germination and the capacity for protein synthesis. Symp. Soc. exp. Biol. 23, 143–60. CASPubMedGoogle Scholar Marcus, A. (1970). Tobacco mosaic virus ribonucleic acid-dependent amino acid incorporation in a wheat embryo system in vitro. Analysis of the rate limiting reaction. J. biol. Chem. 245, 955–61. CASPubMedWeb of Science®Google Scholar Marcus, A. & Feeley, J. (1964). Activation of protein synthesis in the imbibition phase of seed germination. Proc. natn. Acad. Sci. U.S.A. 51, 1075–9. 10.1073/pnas.51.6.1075 CASPubMedWeb of Science®Google Scholar Marcus, A. & Feeley, J. (1965). Protein synthesis in imbibed seeds. II. Polysome formation during imbibition. J. biol. Chem. 240, 1675–80. CASPubMedWeb of Science®Google Scholar Marcus, A. & Feeley, J. (1966). Ribosome activation and polysome formation in vitro: requirement for ATP. Proc. natn. Acad. Sci. U.S.A. 56, 1770–7. 10.1073/pnas.56.6.1770 CASPubMedWeb of Science®Google Scholar Marcus, A., Feeley, J. & Volcani, T. (1966). Protein synthesis in imbibed seeds. III. Kinetics of amino acid incorporation, ribosome activation, and polysome formation. Pl. Physiol., Lancaster 41, 1167–72. 10.1104/pp.41.7.1167 CASPubMedWeb of Science®Google Scholar Marcus, A., Spiegel, S. & Brooker, J. D. (1975). Preformed mRNA and the programming of early embryo development. In Control Mechanisms in Development (ed. R. H. Meints and E. Davies), pp. 1–19. New York : Plenum Publishing Corp. 10.1007/978-1-4684-3255-8_1 Web of Science®Google Scholar Marcus, A. & Weeks, D. P. (1971). Preformed messenger of quiescent wheat embryos. Biochem. J. 124, 6P–7P. 10.1042/bj1240006P CASPubMedWeb of Science®Google Scholar Mayer, A. M. (1973). The control of the initial stages of germination: some biochemical investigations. Seed Sci. & Technol. 1 51–72. CASWeb of Science®Google Scholar Mayer, A. M. & Shain, Y. (1974). Control of seed germination. A. Rev. Pl. Physiol. 25, 167–93. 10.1146/annurev.pp.25.060174.001123 CASWeb of Science®Google Scholar Mazus, B. (1973). RNA polymerase activity in isolated Triticum aestivum embryos during germination. Phytochemistry 12, 2809–13. 10.1016/0031-9422(73)80490-X CASWeb of Science®Google Scholar Monroy, A., Maggio, R. & Rinaldi, A. M. (1965). Experimentally induced activation of the ribosomes of the unfertilised sea urchin egg. Proc. natn. Acad. Sci. U.S.A. 54, 107-II. 10.1073/pnas.54.1.107 CASWeb of Science®Google Scholar Mori, T., Ibuki, F., Matsushita, S. & Hata, T. (1968). Occurrence of ribonucelic acids that have template activities in soybean seeds. Archs. Biochem. Biophys. 124, 607–9. 10.1016/0003-9861(68)90372-X CASPubMedWeb of Science®Google Scholar Mori, T., Ibuki. F., Matsushita, S. & Hata, T. (1969). Characterisation of ribonucleic acids contained in the soluble fraction from soybean seeds. Agr. Biol. Chem. 33, 1229–35. 10.1271/bbb1961.33.1229 CASWeb of Science®Google Scholar Mori, T. & Matsushita, S. (1970). Isolation of ribonucleic acids having template activities from particulate components of soybean seeds. Agr. Biol. Chem. 34, 1004–8. 10.1271/bbb1961.34.1004 CASWeb of Science®Google Scholar Mori, T. & Yokoyama, Z. (1975). Ribonucleic acids with messenger activities in the cotyledons of soybean seeds. Agr. Biol. Chem. 39, 785–90. 10.1271/bbb1961.39.785 CASWeb of Science®Google Scholar Naora, H. (1973). Nuclear RNA. In The Ribonucleic Acids (ed. P. R. Stewart and D. S. Letham), pp. 37–58. Berlin : Springer-Verlag. 10.1007/978-3-662-00499-9_3 Google Scholar Neumann, J. (1964). The effect of actinomycin D on lettuce seedlings and its differential uptake by roots and shoots. Physiologia Pl. 17, 363–70. 10.1111/j.1399-3054.1964.tb08168.x CASWeb of Science®Google Scholar Opik, H. (1968). Development of cotyledon cell structure in ripening Phaseolus vulgaris seeds. J. exp. Bot. 19, 64–76. 10.1093/jxb/19.1.64 Web of Science®Google Scholar Osborne, D. J., Roberts, B. E., Payne, P. I. & Sen, S. (1974). Protein synthesis and viability in rye embryos, in Mechanisms of Regulation of Plant Growth (ed. R. L. Bieleski, A. R. Ferguson and M. M. Cresswell), pp. 805–12. Bulletin 12, The Royal Society of New Zealand, Wellington . Google Scholar Paterson, B. M., Roberts, B. E. & Yaffe, D. (1974). Determination of actin messenger RNA in cultures of differentiating embryonic chick skeletal muscle. Proc. natn. Acad. Sci. U.S.A. 71, 4467–71. 10.1073/pnas.71.11.4467 CASPubMedWeb of Science®Google Scholar Payne, J. F. & Bal, A. K. (1972). RNA polymerase activity in germinating onion seeds. Phytochemistry, 11, 3105–10. 10.1016/S0031-9422(00)86357-8 CASWeb of Science®Google Scholar Payne, P. I. & Boulter, D. (1969). Free and membrane bound ribosomes of the cotyledons of Vicia faba (L.). I. Seed development. Planta 84, 263–71. 10.1007/BF00388112 CASPubMedWeb of Science®Google Scholar Payne, P. I. & Loening, U. E. (1970). RNA breakdown accompanying the isolation of pea root microsomes. An analysis by polyacrylamide gel electrophoresis. Biochim. biophys. Acta 224, 128–35. 10.1016/0005-2787(70)90626-X CASPubMedWeb of Science®Google Scholar Penman, S., Vasco, C. & Penman, M. (1968). Localisation and kinetics of formation of nuclear heterodisperse RNA, cytoplasmic heterodisperse RNA and polyribosome-associated messenger RNA in HeLa cells. J. molec. Biol. 34, 49–69. 10.1016/0022-2836(68)90234-9 CASPubMedWeb of Science®Google Scholar Polya, G. M. (1973). Transcription. In The Ribonucleic Acids (ed. P. R. Stewart and D. S. Letham), pp. 7–36. Berlin : Springer-Verlag. 10.1007/978-3-662-00499-9_2 Google Scholar Poulson, R. & Beevers, L. (1973). RNA metabolism during the development of cotyledons of Pisum sativum L. Biochim. biophys. Acta 308, 381–9. 10.1016/0005-2787(73)90331-6 CASPubMedWeb of Science®Google Scholar Purdom, I., Williamson, R. & Birnstiel, M. (1972). Kinetic analysis of the base sequence heterogeneity of RNA molecules by RNA/DNA hybridisation. In Nucleic Acid Hybridisation in the Study of Cell Differentiation (ed. H. Ursprung), pp. 25–36. Berlin : Springer-Verlag. 10.1007/978-3-540-37149-6_3 Google Scholar Roberts, B. E., Mathews, M. B. & Bruton, C. J. (1973). Tobacco mosaic virus RNA directs the synthesis of a coat protein peptide in a cell-free system from wheat. J. molec. Biol. 80, 733–42. 10.1016/0022-2836(73)90206-4 CASPubMedWeb of Science®Google Scholar Roberts, B. E. & Paterson, B. M. (1973). Efficient translation of tobacco mosaic virus RNA and rabbit globin 9S RNA in a cell-free system from commercial wheat germ. Proc. natn. Acad. Sci. U.S.A. 70, 2330–4. 10.1073/pnas.70.8.2330 CASPubMedWeb of Science®Google Scholar Roberts, B. E., Payne, P. I. & Osborne, D. J. (1973). Protein synthesis and the viability of rye grains. Loss of activity of protein-synthesizing systems in vitro associated with a loss of viability. Biochem. J. 131, 275–86. 10.1042/bj1310275 CASPubMedWeb of Science®Google Scholar Schultz, G. A., Chen, D. & Katchalski, E. (1972). Localisation of a messenger RNA in a ribosomal fraction from ungerminated wheat embryos. J. molec. Biol. 66, 379–90. 10.1016/0022-2836(72)90421-4 CASPubMedWeb of Science®Google Scholar Sen, S., Payne, P. I. & Osborne, D. J. (1975). Early ribonucleic acid synthesis during the germination of rye (Secale cereale) embryos and the relationship to early protein synthesis. Biochem. J. 148, 381–7. 10.1042/bj1480381 CASPubMedWeb of Science®Google Scholar Shapiro, A. L., Vinuela, E. & Maizel, J. V. (1967). Molecular weight estimation of polypeptide chains by electrophoresis in SDS-polyacrylamide gels. Biochem. Biophys. Res. Commun. 28, 815–20. 10.1016/0006-291X(67)90391-9 CASPubMedWeb of Science®Google Scholar Citing Literature Volume51, Issue3August 1976Pages 329-362 ReferencesRelatedInformation
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