Claims
- 1. A growth medium effective for maintaining conifer embryogenic tissue or for subsequent development, maturation or germination of conifer embryos including inorganic ions in the following concentrations:
- ______________________________________ CONCENTRATION RANGEION (mmoles/l)______________________________________NO.sub.3 8-27NH.sub.4 0.95-3Ca 0.08-0.25Fe 0.05-0.15Na 1.9-5.75Zn 0.045-0.135Cu 4.5 .times. 10.sup.-3 -1.5 .times. 10.sup.-2Mg 0.8-2.5.______________________________________
- 2. A growth medium as claimed in claim 1 including inorganic ions in the concentration ranges:
- ______________________________________ CONCENTRATION RANGEION (mmoles/l)______________________________________NO.sub.3 13-23NH.sub.4 1.5-2.5Ca 0.12-0.21Fe 0.07 0.13Na 2.9-4.9Zn 0.06-0.12Cu 7 .times. 10.sup.-3 -1.2 .times. 10.sup.-2Mg 1.2-2.0.______________________________________
- 3. A growth medium as claimed in claim 1 which is free of the or does not depend on the use of plant growth regulators (hormones, phytohormones) of the auxin and/or cytokinin type.
- 4. A growth medium effective for sustaining the growth of conifer embyogenic tissue or for the development or maturation of conifer embryos including inorganic ions in the concentrations:
- ______________________________________ CONCENTRATIONION (mmoles/l)______________________________________NO.sub.3 about 17.8NH.sub.4 about 1.96Ca about 0.17Fe about 0.10Na about 3.85Zn about 0.09Cu about 9.6 .times. 10.sup.-3Mg about 1.62.______________________________________
- 5. A growth medium as claimed in claim 4 and which is free of or does not depend on the use of plant growth regulators (hormones, phytohormones) of the auxin and/or cytokinin type.
- 6. A growth medium as claimed in claim 5 including inorganic ions in the concentrations:
- ______________________________________ION CONCENTRATION (mmoles/l)______________________________________NO3 17.80NH4 1.96TOTAL 19.76P 1.96K 14.16Ca 0.17Mg 1.62Cl 3.42 .times. 10.sup.-1Fe 0.10S 1.83Na 3.85B 0.13Mn 1.62 .times. 10.sup.-2Zn 0.09Cu 9.61 .times. 10.sup.-3Mo 8.27 .times. 10.sup.-4Co 8.41 .times. 10.sup.-4I 6.02 .times. 10.sup.-3______________________________________
- 7. A medium or claim 1 including 5 g/l-50 g/l (w/v) sucrose.
- 8. A medium of claim 1 including 0.5 g/l-1.5 g/l (w/v) agar.
- 9. An embryo maturation medium of claim 1 further including 4 to 9 grams gellan gum per liter.
- 10. An embryo maturation medium of claim 1 further including 5 to 7 grams per liter gellan gum.
- 11. A medium of claim 1 including glutamine and at least one other amino acid selected from asparagine, arginine, citrulline, ornithine, lysine, alanine and proline.
- 12. A medium of claim 1 including sucrose, gellan gum, glutamine and at least one amino acid chosen from asparagine, arginine, citrulline, ornithine, lysine, alanine and proline.
- 13. A medium of claim 12 including 5 milligrams per liter to 25 milligrams per liter of abscisic acid.
- 14. A method of growing conifer embryogenic tissue including the step of growing the tissue on a growth medium including inorganic ions in the concentration ranges:
- ______________________________________ CONCENTRATION RANGEION (mmoles/l)______________________________________NO.sub.3 8-27NH.sub.4 0.95-3Ca 0.08-0.25Fe 0.05-0.15Na 1.9-5.75Zn 0.045-0.135Cu 4.5 .times. 10.sup.-3 -1.5 .times. 10.sup.-2Mg 0.8-2.5.______________________________________
- 15. A method of growing conifer embryogenic tissue including the step of placing whole megagametophytes containing embryos at the polyembryogenesis stage onto a growth medium including inorganic ions in the concentration ranges:
- ______________________________________ CONCENTRATION RANGEION (mmoles/l)______________________________________NO.sub.3 8.9-17.8NH.sub.4 0.98-1.96Ca 0.085-0.17Fe 0.05-0.10Na 1.925-3.85-Zn 0.045-0.09Cu 4.8 .times. 10.sup.-3 -9.61 .times. 10.sup.-3Mg 0.81-1.62.______________________________________
- 16. A method of capturing conifer embryogenic tissue at the zygotic polyembryogenesis stage including the step of placing whole megagometophytes on a medium including ions at concentrations shown below:
- ______________________________________ CONCENTRATIONION (mmoles/l)______________________________________NO.sub.3 about 8.9NH.sub.4 about 0.98Ca about 0.085Fe about 0.05Na about 1.925Zn about 0.045Cu about 4.8 .times. 10.sup.-3Mg about 0.81.______________________________________
- 17. A method as claimed in claim 14, wherein the embryogenic tissue is derived from Pinus radiata, Pinus taeda, Pinus elliotii or Pseudotsuga menziesii.
- 18. A method as claimed in claim 16 wherein the embryogenic tissue is derived from Pinus radiata, Pinus taeda, Pinus elliotti or Pseudotsuga menzieii.
- 19. A method as claimed in claim 16 wherein the embryogenic tissue is derived from Pinus radiata.
- 20. A method according to claim 14 including promoting/allowing development of cotyledonary tissue at the shoot apex of the embryo on said medium.
- 21. A method for maintaining embryogenic tissue, or for development or maturation of conifer somatic embryos including the step of growing the tissue on a growth medium including ions in the concentrations as shown below:
- ______________________________________ CONCENTRATIONION (mmoles/l)______________________________________NO3 17.80NH4 1.96TOTAL 19.76P 1.96K 14.16Ca 0.17Mg 1.62Cl 3.42 .times. 10.sup.-1Fe 0.10S 1.83Na 3.85B 0.13Mn 1.62 .times. 10.sup.-7Zn 0.09Cu 9.61 .times. 10.sup.-3Mo 8.27 .times. 10.sup.-4Co 8.41 .times. 10.sup.-4I 6.02 .times. 10.sup.-3.______________________________________
- 22. A method as claimed in claim 20 wherein said conifer is Pinus radiata.
- 23. A method as claimed in claim 20 wherein said conifer is Pinus radiata, Pinus taeda, Pinus elliotti or Pseudotsuga menziesii.
- 24. A method according to claim 14 wherein said tissue is cultured in a vessel covered with a water vapour permeable film.
- 25. A method according to claim 21 wherein said tissue is cultured in a vessel covered with a water vapour permeable film.
- 26. A method as claimed in claim 24 wherein the film allows the transmission of water vapour at the rate of between 90-150 gm/sq meter per day.
- 27. A growth medium for capturing conifer embryogenic tissue at the zygotic polyembryogenesis stage including inorganic ions in the following conentrations:
- ______________________________________ CONCENTRATIONION (mmoles/l)______________________________________NO.sub.3 about 8.9NH.sub.4 about 0.98Ca about 0.085Fe about 0.05Na about 1.925Zn about 0.045Cu about 4.8 .times. 10.sup.2Mg about 0.81.______________________________________
- 28. A conifer embryo germination medium according to claim 1 including inorganic ions in the following concentrations:
- ______________________________________ CONCENTRATION RANGEION (mmoles/l)______________________________________NO.sub.3 8,9-17.8NH.sub.4 0.98-1.96Ca 0.085-0.17Fe 0.05 0.10Na 1.925-3.85Zn 0.045-0.09Cu 4.8 .times. 10.sup.-3 -9.61 .times. 10.sup.-3Mg 0.81-1.62.______________________________________
- 29. A medium as claimed in claim 28, which is the medium of Table A 10.
- 30. A growth medium of claim 1 for growing conifer embryogenic tissue selected from the media of Tables A5, A6, A7, A8 and A9.
- 31. A method for growing conifer plants including:
- (a) dissecting out megagametaphytes from seeds of cones at the appropriate stage of development of the zygotic embryos;
- (b) placing said megagametophytes on a medium as claimed in claim 27;
- (c) growing embryogenic tissue for up to a month on said medium;
- (d) transferring the embryogenic tissue to a second growth medium including inorganic ions in the concentrations:
- ______________________________________ION CONCENTRATION (mmoles/1)______________________________________NO.sup.3 17.80NH.sup.4 1.96TOTAL 19.76P 1.96K 14.16Ca 0.17Mg 1.62Cl 3.42 .times. 10.sup.-1Fe 0.10S 1.83Na 3.85B 0.13Mn 1.62 .times. 10.sup.-2Zn 0.09Cu 9.61 .times. 10.sup.-3Mo 8.27 .times. 10.sup.-4Co 8.41 .times. 10.sup.-4I 6.01 .times. 10.sup.-3______________________________________
- (e) transferring the embryogenic tissue to a third medium including inorganic ions in the concentrations of the second medium and further including about 550 mg/l glutamine and one more of asparagine, arginine, citrulline, ornithine, lysine, alanine and proline, said third medium being gelled with gellan gum;
- (f) transferring the embryogenic tissue to a fourth medium which is an embryo maturation medium including inorganic ons in the concentrations of the second medium and further including 50-10 gm/l glutamine, one or more of asparagine, arginine, citrulline, ornithine, lysine, alanine, and proline, 5-25 mg/l abscisic acid and 4-9 gm/l gellan gum;
- (g) harvesting mature cotyledonary stage embryos;
- (h) germinating said cotyledonary stage embryos; and
- (i) transferring to soil.
- 32. A process for producing a conifer plant including the steps of growing conifer embryogenic tissue by the method of claim 14, obtaining mature cotyledonary stage embryos, and germinating said cotyledonary stage embryos.
- 33. A method of claim 31, in which said conifer is Pinus radiata or Pinus taeda.
- 34. A method of claim 32, in which said conifer is Pinus radiata or Pinus taeda.
Priority Claims (1)
Number |
Date |
Country |
Kind |
241077 |
Dec 1991 |
NZX |
|
Parent Case Info
This application is a continuation-in-part of my earlier application Ser. No. 07/993,688 filed Dec. 21, 1992, now abandoned, which is hereby incorporated by reference.
US Referenced Citations (1)
Number |
Name |
Date |
Kind |
5035007 |
Gupta et al. |
Jul 1991 |
|
Non-Patent Literature Citations (2)
Entry |
Gamborg "Cell Culture and Somatic Cell Genetics of Plants" vol. 1 Academic Press, Chapter 3, pp. 18-35. |
Troncoso et al. "Growth and mineral composition of grape vine rootstock cultured in vitro with different levels of ammoniun nitrate." Plant Nutrition--physiology and application, pp. 653-654. |
Continuation in Parts (1)
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Number |
Date |
Country |
Parent |
993688 |
Dec 1992 |
|