Claims
- 1. A cloned DNA fragment encoding a protein backbone of a plant arabinogalactan protein (AGP), characterized by a high content of hydroxyproline, alanine, serine and threonine such that the sum of the hydroxyproline, alanine, serine and threonine constitutes at least about 35% of the amino acyl residues, wherein said cloned DNA fragment hybridizes at high stringency to a nucleotide sequence selected from the group consisting of SEQ ID NO:11, SEQ ID NO:21, SEQ ID NO:24, SEQ ID NO:25, SEQ ID NO:62, SEQ ID NO:63, SEQ ID NO:69 and SEQ ID NO:72.
- 2. The cloned DNA fragment of claim 1 wherein said arabinogalactan protein is from an Angiosperm.
- 3. The cloned DNA fragment of claim 2 wherein said Angiosperm is a monocot.
- 4. The cloned DNA fragment of claim 2 wherein said Angiosperm is a dicot.
- 5. The cloned DNA fragment of claim 1 wherein said arabinogalactan protein is from Solanaceae.
- 6. The cloned DNA fragment of claim 5 wherein said arabinogalactan protein is from Nicotiana.
- 7. The cloned DNA fragment of claim 6 wherein said arabinogalactan protein is from Nicotiana alata.
- 8. The cloned DNA fragment of claim 6 wherein said arabinogalactan protein is from Nicotiana plumbaginafolia.
- 9. The cloned DNA fragment of claim 6 wherein said arabinogalactan protein is from style.
- 10. The cloned DNA fragment of claim 7 wherein said arabinogalactan protein is from style.
- 11. The cloned DNA fragment of claim 6 wherein said cloned DNA fragment hybridizes at high stringency to a nucleotide sequence encoding SEQ ID NO:11.
- 12. The cloned DNA fragment of claim 6 wherein said cloned DNA fragment hybridizes at high stringency to a nucleotide sequence comprising a sequence selected from a group of sequences consisting of SEQ ID NO:21, and SEQ ID NO:24.
- 13. The cloned DNA fragment of claim 6 wherein said cloned DNA fragment comprises the nucleotide sequence SEQ ID NO:24.
- 14. The cloned DNA fragment of claim 6 wherein said cloned DNA fragment is cDNA clone NaAGP1.
- 15. The cloned DNA fragment of claim 6 wherein said cloned DNA fragment comprises the nucleotide sequence SEQ ID NO:25.
- 16. The cloned DNA fragment of claim 6 wherein said cloned DNA fragment is cDNA clone NpAGP1.
- 17. The cloned DNA fragment of claim 6 wherein said cloned DNA fragment is a genomic AGP gene.
- 18. The cloned DNA fragment of claim 17 wherein said genomic AGP gene is from Nicotiana alata.
- 19. The cloned DNA fragment of claim 17 wherein said genomic AGP gene is from Nicotiana plumbaginafolia.
- 20. The cloned DNA fragment of claim 9 wherein said cloned DNA fragment comprises nucleotide sequence SEQ ID NO:63 or SEQ ID NO:72.
- 21. The cloned DNA fragment of claim 9 wherein said cloned DNA fragment is cDNA clone Na35.sub.-- 1 or AGPNal 1.
- 22. The cloned DNA fragment of claim 9 wherein said cloned DNA fragment is a genomic AGP gene.
- 23. The cloned DNA fragment of claim 10 wherein said DNA fragment is a genomic AGP gene.
- 24. The cloned DNA fragment of claim 9 wherein said DNA fragment is a genomic AGP gene.
- 25. A DNA recombinant vector comprising a cloned DNA fragment of claim 1.
- 26. A DNA recombinant vector comprising a cloned DNA fragment of claim 5.
- 27. A DNA recombinant vector comprising a cloned DNA fragment of claim 6.
- 28. A DNA recombinant vector comprising a cloned DNA fragment of claim 14.
- 29. A DNA recombinant vector comprising a cloned DNA fragment of claim 16.
- 30. A DNA recombinant vector comprising a cloned DNA fragment of claim 17.
- 31. A DNA recombinant vector comprising a cloned DNA fragment of claim 21.
- 32. A DNA recombinant vector comprising a cloned DNA fragment of claim 22.
- 33. A host cell transformed with a cloned DNA fragment of claim 1 so that a glycosylated or nonglycosylated arabinogalactan protein is expressed.
- 34. A host cell transformed with a cloned DNA fragment of claim 5 so that a glycosylated or nonglycosylated arabinogalactan protein is expressed.
- 35. A host cell transformed with a DNA fragment of claim 6 so that a glycosylated or nonglycosylated arabinogalactan protein is expressed.
- 36. A host cell transformed with a DNA fragment of claim 14 so that a glycosylated or nonglycosylated arabinogalactan protein is expressed.
- 37. A host cell transformed with a DNA fragment of claim 16 so that a glycosylated or nonglycosylated arabinogalactan protein is expressed.
- 38. A host cell transformed with a DNA fragment of claim 17 so that a glycosylated or nonglycosylated arabinogalactan protein is expressed.
- 39. A host cell transformed with a DNA fragment of claim 21 so that a glycosylated or nonglycosylated arabinogalactan protein is expressed.
- 40. A host cell transformed with a DNA fragment of claim 22 so that a glycosylated or nonglycosylated arabinogalactan protein is expressed.
- 41. The host cell of claim 33 wherein said host cell is a bacterium.
- 42. The host cell of claim 41 wherein said host cell is Escherichia coli.
- 43. The host cell of claim 33 wherein said host cell is a plant cell.
- 44. The host cell of claim 43 wherein said host cell is a monocot cell.
- 45. The host cell of claim 43 wherein said host cell is a dicot cell.
- 46. The host cell of claim 33 wherein said host cell is a mammalian cell.
- 47. The host cell of claim 46 wherein said host cell is a COS cell.
- 48. A genetically-engineered DNA molecule comprising a plant arabinogalactan portein gene, hybridizing at high stringency to a nucleotide sequence selected from the group consisting of SEQ ID NO:11, SEQ ID NO:21, SEQ ID NO:24, SEQ ID NO:25, SEQ ID NO:62, SEQ ID NO:63, SEQ ID NO:69 and SEQ ID NO:72, under control of a heterologous promoter so that a glycosylated or nonglycosylated arabinogalactan protein, characterized by a high content of hydroxyproline, alanine, serine and threonine such that the sum of the hydroxyproline, alanine, serine and threonine constitutes at least about 35% of the amino acyl residues, is expressed.
- 49. The genetically-engineered DNA molecule of claim 48 wherein said heterologous promoter is a constitutive promoter.
- 50. The genetically-engineered DNA molecule of claim 49 wherein said constitutive promoter is a CaMV promoter.
- 51. The genetically-engineered DNA molecule of claim 48 wherein said heterologous promoter is an inducible promoter.
- 52. The genetically-engineered DNA molecule of claim 51 wherein said inducible promoter is an alcohol dehydrogenase (ADB) promoter.
- 53. The genetically-engineered DNA molecule of claim 48 wherein said arabinogalactan protein is overexpressed.
- 54. The genetically-engineered DNA molecule of claim 48 wherein said arabinogalactan protein is underexpressed.
- 55. The genetically-engineered DNA molecule of claim 48 wherein said arabinogalactan protein gene hybridizes at high stringency to a cDNA selected from the group of cDNA clones consisting of NaAGP1, NpAGP1, Na35.sub.-- 1, AGPNal 1.
- 56. The genetically-engineered DNA molecule of claim 48 wherein said arabinogalactan protein gene comprises a cDNA sequence selected from a group consisting of NaAGP1, NpAGP1, Na35.sub.-- 1 and AGPNal 1 cDNA sequences.
RELATEDNESS OF THE INVENTION
The subject application is a continuation-in-part of U.S. application Ser. No. 08/161,944, filed on Dec. 3, 1993, now abandoned, which is incorporated herein in the entirety by reference.
Foreign Referenced Citations (1)
Number |
Date |
Country |
WO9002804 |
Mar 1990 |
WOX |
Continuation in Parts (1)
|
Number |
Date |
Country |
Parent |
161944 |
Dec 1993 |
|