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  1. NTU Theses and Dissertations Repository
  2. 生命科學院
  3. 動物學研究所
請用此 Handle URI 來引用此文件: http://tdr.lib.ntu.edu.tw/jspui/handle/123456789/75679
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dc.contributor.author黃秀雅zh_TW
dc.date.accessioned2021-07-01T08:14:37Z-
dc.date.available2021-07-01T08:14:37Z-
dc.date.issued1974
dc.identifier.citation1. Alfert, M. and I. I. Geschwind, 1953 A selective staining method for the basic proteins of cell nuclei. Proc. Natl. Aced. Sci. 39:392-999.
2. Alfert, M., 1956 Chemical differentiation of nuclear proteins during spermatogenesis in the salmon. J. Biophysic and Biochem. Cytol. 2:109-117.
3. Beer, D., 1965 Asynchronous replication of DNA in a heterochromatic set of chromosomes in Pseudococcus obscurus. Genetics 52: 275-285.
4. Berlowitz, L., 1965 Correlation of genetic activity, heterochromatization and RNA metabolism. Proc. Natl. Acad. Sci. 53: 68-73.
5. Berlowits, L., 1965 Analysis of histone in situ in developmentally inactivated chromatin. Proc. Natl. Acad. Sci. 54: 476-480.
6. Bernstein, M. H. and D. Maizia, 1953 The deoxyribonucleoprotein of sea urchin sperm I. Isolation and analysis. Biochim. Biophys. Acta (Amst). 10: 600-606.
7. Bloch D. P. and H.Y. C. Hew, 1960 Schedule of spermetogenesis in the pulmonate snail Helix asperse, with special reference to histone transition. J. Biophysic and Biochem. Cytol. 7: 515-531.
8. Bloch, D. P., 1962 Symposium: synthetic processes in the cell nucleus I. Histone synthesis in non-replicating chromosomes. J. Histoshem. Cytochem. 10: 137-144.
9. Bloch, D. P. and S. D. Brack, 1964 Evidence for the cytoplasmic synthesis of nuclear histone during spermiogenesis in the grasshopper Chortophaga viridifasciata (DE GEER). J. Cell Biol. 22: 327-340.
10. Bloch, D. P., 1969 A catalog of sperm histones. Genetics suppl. 6l: 93-111.
11. Brown, S. W., 1959 Lecanoid chromosome behavior in three more families of Coccidae (Homoptera). Chromosoma 10: 278-300.
12. Brown, S. W. and W. A. Nelson-Rees, 1961 Radiation analysis of a lecanoid system. Cenetics. 46: 983-1007.
13. Brown, S. W. and U. Nur, 1964 Heterochromnatic chromosomes in the coccid. Science 145: 130-136.
14. Claypool, C. J. and D. P. Bloch, 1967 Synthesis of ribonucleic acid and histone change during spermatogenesis in the grasshopper Chortophaga viridifasciata. Nature 215: 5103-5109.
15. Das, C. C., kaufmann, R. P. and Helen Cay, 1964 Histone-protein transition in Drosophila melanogaster. Exp. cell Res. 35: 507-514.
16. DeLange, R. J. and E, L. Smith, 1971 Histones: structure and function. Annu. Rev. Biochem. 40: 279-313.
17. Desai, L. S. and G. E. Foley, 1974 Human leukemic cells cytochemical studies on acidic nuclear proteins. J. Histochem. Cytochem. 22: 40-45.
18. Elgin., S. C., S. C. Froehner, J. E. Smart, and J. Eonner, 1971 The biology and chemistry of chromosomal proteins Advances in Cell and Molecular Biology 1: 1-57.
19. Frenster, J. H., 1965 Nuclear polyanions as de-repressors of synthesis of ribonucleic acid. Nature 206: 680-683.
20. Huang, C. C., 1971. Replication of euchromatin and heterochromatin in a mealybug. Chromosoma (Ber1.) 34: 230-242.
21. Hughes-Schrader, S., 1935 The chromosome cycle of Phenacoccus (Coccidae) Biol. Bull. 69: 462-468.
22. Hughes-Schrader, S., 1948 Cytology of Coccids (Coccidea-Homoptera). Advances in Genetics 2:127-201.
23, Kaye, J. S. and R. McMaster-kaye, 1966 The fine structure and chemical composition of nuclei during spermiogenesis in the house cricket. I. Initial stages of differentiation and the loss of non-h1ston protein. J. Cell Biol. 31: 159-179.
24, Lorick, C., 1970 Differential DNA synthesis in heterochromatic and euchromatic chromosome sets of Planococcus citri. Chromosome (Ber1.) 32: 11-30.
25. Maio, J. J. and C. L. Schildkraut, 1967 Isolated mammalian chromosomes I. Genera1 characteristics of nucleic acids and proteins. J. Mol. Biol. 24: 29-39.
26. Monesi, V., 1965 Synthetic activities during spermatogenesis in the mouse. Exp. Cell Res. 39: 197-224.
27. Nelson-Rees, W. A., 1960 A study of sex predetermination in the mealy bug Planococcus citri (Risso). J. Exp. Zool. 86: 405-422.
28. Nur, U., 1966 Nonreplication of heterochromatic chromosomes in a mealy bug Planococcus citri (Coccoidea-Homoptera). Chromosoma (Ben1.) 19: 439-448.
29. Nun, U., 1967 Reversal of heterochromatization and the activity of the paternal chromosome set in the male mealy bug. Genetics 56: 375-389.
30. Pallotta, D。, L. Berlowitz, and L. Rodriguez, 1970 Histories of genetically active and inactive chromatin in mealy bugs. Exp. Cell Res. 60: 474-477.
31. Paul, J. and R. S. Gilmour, 1968 Organ-specific restriction of transcription in mammalian chromatin. J. Mol. Biol. 34: 305-316.
32. Pollister, A. W. and .A. E. Mirsky, 1946 The nucleoprotamine of trout sperm. J. Gen. Physiol. 30: 101-115.
33. Schrader, F., 1921 The chromosomes of Pseudococcus nipae. Biol. Bull. 40: 259-270.
34. Schrader. F., 1923 A study of the chromosomes in three species of Pseudococcus. Arch. Zellforsch. 17: 45-62.
35. Stein, C. S., T. C. Spelsberg, and I.. J. Kleinsmith, 1974 Nonhistone chromosomal proteins and gene regulation. Science 183: 817-824.
36. Stellwagen, R. H., and R. D. Cole, 1969 chromosomal proteins Annu. Rev。 Biochem. 38: 951-989.
37. Teng, C. S., C. T. Teng, and V. C, Allfrey, 1971 Studies of nuclear acid proteins: Evidence foe their phosphorylation, tissue specificity, selective binding to deoxyribonucleic acid, and stimulatory effects on transcription. J. Biol. Chem. 246: 3597-3609.
38。 Vaughn, J。 C., 1966 The relationship of the sphere chromatophile to the fate of displaced histones following histone transition in rat spermiogenesis. J. Cell Cell Biol. 31: 257-278.
39. Vaughn, J. C. and L. A, Thomson, 1972 A kinetic study of DNA and basic protein metabo1isn during spermatogenesis in the sand crab, Emerita analoga. J. Cell Biol. 52: 322-337.
40. Wang, T. Y., 1969 Diametric effects of histones and the non-histone proteins on DNA replication in vitro. Exp. Cell Res. 57: 467-469.
41. Wolfe, S. L. and J. N. Grim, 1967 The relationship of Isolated chrosome fibers to the fibers of the embedded nucleus. J. Ultrastrut. Res. 19: 382-397.
42. Zirkin, E. R., 1970 The protein composition of nuclei during spermiogenesis in the leopard frog, Rena pipiens, Chromosoma (Ber1.) 31:231-240.
43. Zirkin, B. R. and S. L. Wolfe, 1970 The chemical composition of nuclei and chromosomes isolated by the Langmuir trough technique. Chromosoma (Ber1.) 32: 162-170.
44, Zirkin, B. R., 1971 The fine structure of nuclei in mature sperm I. Application of the Langmuir trough-critical point method to histone-containing sperm nuclei. J. Ultrastruct. Res. 36: 237-248.
45.Nw, u.,1962 Speens, Sprem bunnles and fertilzatiol in a mealy bog, Pseadaeeous obsoures Essig, (Hamptera•Coroeidea). J•Marpha 111:173-199.
46.Nw.U,1962, A sapernumelarg chnmosone with an accamalrtian mechanism in the leaamoid genetic system. Chrouesena 13:249-271.
dc.identifier.urihttp://tdr.lib.ntu.edu.tw/jspui/handle/123456789/75679-
dc.description.abstract本實驗分別以弱齡性及酸性Fast Green FcF水溶液從事雄性粉介殼蟲(P. uitri)生殖細胞和體細胞的細胞化學實驗,組織切底經TCA水解DNA後,弱齡性Fast Green FcF染色可以顯示組織?;在TcA水解後經鹽酸的萃取組織?則酸性Fast Green FcF染色顯示細胞的酸性蛋白質分佈,試驗結果:
1、組織?的分佈與DNA的分佈是一致的。
2、粉介殼蟲雄性生殖細胞原始的以至於成熟的精子,各個齡期的腦細胞,都具嵩魚精胺酸的組織?,因此生殖細胞和體細胞具有相同的組織?。
3、體細胞以及不成熟的雄性生殖細胞核,不含或含極小量的酸性蛋白質,而成熟的精子則有顯著的酸性蛋白質染色反應。
zh_TW
dc.description.provenanceMade available in DSpace on 2021-07-01T08:14:37Z (GMT). No. of bitstreams: 0
Previous issue date: 1974
en
dc.description.tableofcontents一、前言1
二、材料及方法4
1、粉介殼蟲的培養4
2、固定及包埋5
3、染色6
三、觀察與結果7
1、霍根氏染色(Feulgen stain)7
2、酸性蛋白質染色11
3、組織?染色14
四、討論16
五、摘要25
六、圖片說明26
七、參考文獻30
dc.language.isozh-TW
dc.title雄性粉介殼蟲(Planococcus citri)生殖細胞和體細胞的細胞化學zh_TW
dc.titleThe Cytochemistry of the Germ Cells and the Somatic Cells in the Male Mealy Bugs, (Planococcus citri)en
dc.date.schoolyear62-2
dc.description.degree碩士
dc.relation.page34
dc.rights.note未授權
dc.contributor.author-dept生命科學院zh_TW
dc.contributor.author-dept動物學研究所zh_TW
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