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  1. »OÆWª÷½u³s( Anoectochilus formosanus Hayata )
  2. ³æÅn¶}®BÄõ( Anoectochilus inabai Hayata )
  3. °ª¶¯ª÷½u³s( Anoectochilus Koshunensis Hayata )
  4. ¤GÅn¶}®BÄõ( Anoectochilus lanceolatus Lindl ) ( 9 )

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°Ñ¦Ò¤åÄm

  1. ¤è«Û. 1984. ¶}³Ðºë½o¹A·~¤¤¬Ýª÷½u³s¥ø·~¤Æ®â°ö. ¿³¹A 198 : 62-65.

  2. ¦ó¬F©[. ±i²QµØ. ³¯®¶ºa. 1987. ª÷½u³s¤§²Õ´°ö¾i»P¹¥¤Æ®â°ö. »OÆW¹A·~ 23(2) : 77-80.

  3. ªL«T¸q. 1986. ª÷½u³s¤§Ác´Þ»P±À¼s ¹A¤Í 37 : 14-17.

  4. ªL¾Ç¸Ö. 1994. ¬Ã¶QÃįó ª÷½u³sªº®â°öªk. ªá½¬°Ï¹A§Þ³ø¾É

  5. ©P´f·O 1983 »OÆWª÷½u³s²Õ´°ö¾iÁc´Þ --µL©ÊÁc´Þªk¤§±´°Q. ²z¤u¾Ç³ø 20 : 97-111

  6. ©P´f·O Á¸U¥þ ±i¨äµ½ 1982 »OÆWª÷½u³s²Õ´°ö¾iÁc´Þªk . ²z¤u¾Ç³ø 19 : 155-160.

  7. ³¯³·­s 1986 »OÆWª÷½u³s¤§·LÅéÁc´Þ ¬ì¾Ç¹A·~34(3-4):105-107.

  8. ²øºû¤¯ 1990 ª÷½u³s²ô»G¯f»P°ò»G¯f¯f­ì¾Ç¤Î¨¾ªv¤§¬ã¨s °ê¥ß¤¤¿³¤j¾Ç ´Óª«¯f²z¾Ç¬ã¨s©ÒºÓ¤h½×¤å

  9. ¼B·s¸Î ½²·sÁn ®}­ì¥Ð ¼B¬f·Ï 1987 ª÷½u³s¤§Ác´Þ»P®â°ö§Þ³N ¬ì¾Ç¹A·~ 35(5-6)125-129.

  10. ¼B·s¸Î ½²·sÁn ¶Àº~¬z ­J±Ó¤Ò ¸­±`«C 1987 ª÷½u³s¤j¶qÁc´Þ»P®â°ö«á¤§¥Í¨|©Êª¬ ºØ¶¡¤ñ¸û¤ÎÀç¾i¦¨¥÷¬ã¨s ¤¤µØ¹A·~¬ã¨s 36(4) : 357-366.

  11. ¿½²Ý¬W ³¯«Â¦Ú §f¨Î©y ½²·sÁn¡@1995.¡@»OÆWª÷½u³s¤§²Õ´°ö¾i- I.§ï¶iºØ¤lµÞªÞ²v¤§¬ã¨s ¡@¤¤µØ¹A·~¬ã¨s¡@44¡G279-286¡C

  12. À¹°ê¿³ .1987. ¬Ã¶QÃĥδӪ«ª÷½u³s¤§²Õ´°ö¾iÁc´Þ. ¤¤µØ¹A¾Ç·|³ø(·s) 137 : 42-54.

  13. Cournac, L., B. Dimon, P. Carrier, A. Lohou and P. Chagvardieff. 1991. Growth and photosynthetic characteristics of Solanum tuberosum plantlets cultivated in vitro in different conditions of aeration, sucrose supply, and CO2 nrichment. Plant Physiol. 97:112-117.

  14. Deng, R and Danielle J. Donnelly. 1993. In vitro hardening of red raspberry by CO2 enrichment and reduced medium sucrose concentration. Hortscience. 28(10):1048-1051

  15. Fujiwara, K., T. Kozai and I. Watanabe. 1987. Fundmental studies on environments in plant tissue culture vessels. (3) Measurements of carbon dioxide gas concentration in closed vessels containing tissue cultured plantlets and estimates of net photosynthetic rates of the plantlets. J. Agr. Meteorol. 43:21-31.

  16. Fujiwara, K., T. Kozai and I. Watanabe. 1989. Effects of closures and vessels on light intensities in plant tissue culture vessels. J. Agr. Meteorol. 45(3):143-149. (JE)

  17. Kozai, T. 1989. Autotrophic (sugar-free) micropropagation for a significant reduction of production costs. Chronic Hort. 29(2):19-20.

  18. Ikeda, A., S. Nakayama, Y. Kitaya and K. Yabuki. 1988. Effect of photoperid, CO2 concentration, and light intensity on growth and net photosynthetic rates of letture and turnip. Acta Horticulturae 229:273-282.

  19. Kozai, T. and K. Sekimoto. 1988. Effect of the number of air exchanges per hour of the closed vessel and the photosynthetic photon flux on the carbon dioxide concentration inside the vessel and the growth of strawberry plantlets in vitro. Environ. Control Biol. 26:21-29.

  20. Kozai, T., S. Kushihashi, C. Kubota and K. Fujiwara. 1992. Effect of the difference between photoperiod and dark period temperature , and photosynthetic photo flux density on the shoot length and growth of potato plantlets in vitro . J. Japan. Soc. Hort. Sci. 61(1):93-98.(JE)

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  22. Tanaka, K., K. Fujiwara and T. Kozai. 1992. Effect of relative humidity in the culture vessel on the transpiration and net photosynthetic rates of potato plantlets in vitro. Acta Hort. 319: 59-64.