Fig. 1. Representive egg colours of unfertilized ovarian eggs (upper pannel a : yellow eggs), and fertilized( lower pannel b : dark eggs) or parthenogenetic eggs( lower pannel b : dark eggs) in the silkworm, B. mori. The length, width and thickness of the eggs in the present photos will be ranged to 1.3 mm-1.4 mm, 1.0 mm-1.2 mm and 0.5mm-0.6mm, respectively.
Fig. 2. The ratios of parthenogenetic eggs on between unfertilized in vivo ovarian eggs of live silkworm moth and unfertilized in vitro ovarian eggs taken out from live silkworm moth , B. mori, according to exposure time in hot water (46℃) treatment. -∘- , unfertilized in vivo ovarian eggs ; -∙-unfertilized in vitro ovarian eggs. Data indicate the mean ± S.D. with three separate experiments.
Fig. 3. The ratios of parthenogenetic eggs on between unfertilized in vivo ovarian eggs of live silkworm moth and unfertilized in vitro ovarian eggs taken out from live silkworm moth , B. mori according to exposure time in hot air (46℃) treatment. See Fig. 2 for further legends.
Fig. 4. The ratios of parthenogenetic eggs on between unfertilized in vivo ovarian eggs of live silkworm moth and unfertilized in vitro ovarian eggs taken out from live silkworm moth, B. mori, according to exposure time in low temperature (0℃) treatment. See Fig. 2 for further legends.
Fig. 5. The ratios of parthenogenetic eggs on between unfertilized in vivo ovarian eggs of live silkworm moth and unfertilized in vitro ovarian eggs taken out from live silkworm moth , B. mori according to exposure time in low temperature (-20℃) treatment. See Fig. 1 and Fig. 2 for further legends.
Fig. 6. Newly hatched larvae (circle) from the parthenogenetic eggs of F1 hybrid, Baeok Jam(Jam 123 x Jam 124) by hydrochloric acid treatment. See Fig. 1 for further legends.
참고문헌
- Astaurov, B. L. 1940. Artificial parthenogenesis in the silkworm (Bombyx mori L.) (Experimental study). Accademia delle Scienze Dell'urss. pp. 221-240 (In Russian with English summary).
- Astaurov, B. L. 1940. Artificial Parthenogenesis in the silkworm (Bombyx mori). An experimental study. 221-240, U. S. S. R. Acad. Press, Moscow.
- Astaurov, B. L. 1967. Artificial parthenogenesis and experimental polyploidy in silkworm. J. Sericult. Sci. Japan 36, 227-285.
- Astaurov, B. L. 1957. High temperature as a tool for controlling development and sex determination: A review of studies in artificial parthenogenesis, androgenesis and elimination of embryonic diapause in the silkworm, Bombyx mori L. Proc. Zool. Soc. Calcutta. 1, 29-56.
- Balinsky, B. I. 1981. An Introduction to Embryology. 5 ed. pp. 124-126, Holt-Saunders, Japan Ltd.
- Chapman, R. F. 1992. Unusual types of development: in the Insects : structure and Function. 3rd ed. pp. 442-446. Hodder and Stoughton, London.
- Chowdhury, S. N. 1989. Parthenogenesis, gynogenesis and androgenesis in silkworm, Bombyx mori L.: A review. Indian J. Seric. 28, 284-292.
- Clement, L. M. 1982. Parthenogenesis, homozygosity and cloning in mammals. J. Hered. 73, 390-397. https://doi.org/10.1093/oxfordjournals.jhered.a109685
- Clement, L. M. and Jr Seidel, G. E. 1981. Parthenogenesis, identical twins and cloning in mammals; in New Technologies in Animal Breeding. Brackett, B, G., Jr. Seidel, G. F. and Seidel, S. M. (eds.), pp. 181-200, Academic Press, London.
- Cuellar, O. 1977. Animal parthenogenesis. Science 197, 837-843. https://doi.org/10.1126/science.887925
- Darevskii, I. S. and Kurikova, W. N. 1961. Naturlilche parthenogenese in der polymorphen gruppe der kaukasischen fieldidechese (Lacerta saxicola Enversmann). Zool. Syst. 89, 119-176.
- Fang, A., Xu, A. Y., Chen, S. Q. and Huang, J. T. 1989. Studies on the chromosome engineering and its application in Bombyx mori. IV. Study on the parthenogenesis in the silkworm, Bombyx mori L. Acta Sericologica Sinica 5, 202-206.
- Gangopadhyay, D., Singh, R., Kariappa, B. K. and Dandin, S. B. 2005. Parthenogenesis in silkworm, Bombyx mori L. Int. J. Indust. Entomol. 10, 1-10.
- Gook, D. A., Osborn, S. M. and Johnston, W. I. H. 1995. Parthenogenetic activation of human oocytes following cryopreservation using 1, 2-propanediol. Hum. Reprod. 10, 654-656. https://doi.org/10.1093/oxfordjournals.humrep.a136005
- Imahie, H., Sato, E. and Toyoda, Y. 1995. Parthenogenetic activation induced by progesterone in cultured mouse oocytes. J. Reprod. Develop. 4, 7-14. https://doi.org/10.1262/jrd.41.7
- Kim, S. E., Seong, S. I. and Lee, S. M. 1992. Long-term preservation of Bombyx mori stocks by frozen gonad storage. Kor. J. Serc. Sci. 34, 1-7.
- Klimenko, V. V. 2001. Parthenogenesis and cloning in the silkworm, Bombyx mori L. problems and prospects. J. Insect Biotech. Seric. 70, 155-165.
- Kosegawa, E., Misawa, T., Kobayashi, H. and Izumi, S. 2012. Hatchability associated with artificial parthenogenesis in stocked strains of silkworm, Bombyx mori L. J. Biotech. Seric. 81, 37-44.
- Lu, J. Y. 1994. Studies on silkworm paarthenogenesis and its generation using the method of freezing ovary. Acta Sericologica Sinica 20, 243-244.
- Mayes, M. A., Stogsdill, P. L. and Prather, S. 1995. Parthenogenetic activation of pig oocytes by protein kinase inhibition. Biol. Reprod. 53, 270-275. https://doi.org/10.1095/biolreprod53.2.270
- Mittwoch, U. 1978. Parthenogenesis. J. Med. Genet. 15. 165-181. https://doi.org/10.1136/jmg.15.3.165
- Ravindra, S., Ahsan, M. M. and Datta, R. K. 1997. Artificial parthenogenesis in the silkworm, Bombyx mori L.: A review. Indian J. Seric. 36, 87-91.
- Sato, H. 1925. On the artificial parthenogenesis in the silkworm. J. Sci. Agr. Soc. Jpn. 274, 232-238.
- Sato, H. 1931. Untersuchungen uber die Kunstliche Parthenogenese des Seidenspinners Bombyx mori L. Biol. Zbl. 51, 382-394.
- Singh, R., Rao, D. R., Kariappa, B. K. and Jayaswal, K. P. 2001. Androgenesis in mulberry silkworm Bombyx mori L.: a review. Int. J. Indust. Entomol. 3, 109-112.
- Strunnikov, V. A. 1975. Sex control in silkworms. Nature 225, 111-113. https://doi.org/10.1038/225111a0
- Suomalainen, E. 1962. Significance of parthenogenesis in the evolution of insects. Ann. Rev. Entomol. 7, 349-366. https://doi.org/10.1146/annurev.en.07.010162.002025
- Tazima, Y. 1964. The Genetics of the Silkworm. Logos Press London.
- Vershinina, A. O. and Kuznetsova, V. G. 2016. Parthenogenesis in hexapoda : entognatha and non-holometabolous insects. J. Zoolog Syst. Evol. Res. 54, 257-268. https://doi.org/10.1111/jzs.12141
- Wang, Y. Q., Xia, J. G., Yao, L. S. and Xu, M. K. 1998. Study on the optimum conditions of silkworm parthenogenesis induced by hot water treatment. Sericul. Bull. 29, 30-31.
- Xu, A. Y., Li, M. W., Sun, P. J., Zhang, Y. H. and Hou, C. X. 2004. Review on silkworm (Bombyx mori) sex control in China. Int. J. Indust. Entomol. 8, 123-127.
- Zhang, G. 1950. Rearing course of the first generation of artificial parthenogenesis silkworm. Chinese Sci. Bull. 1, 20-21. https://doi.org/10.1360/csb1950-0-1-20
- Zhang, G. 1951. Continuous report of artificial parthenogenesis silkworm. Chinese Sci. Bull. 2, 635-636. https://doi.org/10.1360/csb1951-0-6-635
- Zhang, G. 1950. Rearing course of the first generation of artificial parthenogenesis silkworm. Chinese Sci. Bull. 1, 20-21. https://doi.org/10.1360/csb1950-0-1-20
- Zhu, Y. and Xiang, Z. H. 1989. Experiment of parthenogenesis in silkworm. Newslett. Seri. Sci. 9, 7-9.