Production of gamma linolenic acid by a Δ6-desaturase
Linoleic acid is converted into γ-linolenic acid by the enzyme Δ6-desaturase. The present invention is directed to isolated nucleic acids comprising the Δ6-desaturase gene. More particularly, the isolated nucleic acid comprises the promoter, coding region and termination regions of the Δ6-desaturase gene. The present invention provides recombinant constructions comprising the Δ6-desaturase coding region in functional combination with heterologous regulatory sequences. The nucleic acids and recombinant constructions of the instant invention are useful in the production of GLA in transgenic organisms.
1. An isolated nucleic acid molecule coding for a plant delta-6 desaturase, whereby said nucleic acid molecule hybridizes under stringency conditions to the complement of a polynucleotide molecule encoding a plant delta-6 desaturase which comprises
SEQ ID NO: 6,
SEQ ID NO: 12, and
SEQ ID NO: 20,
and wherein said stringency conditions comprise hybridization to filter-bound DNA in 6×SSC, 1×Denharts solution, 0.05% sodium pyrophosphate, 100 μg/ml denaturated salmon sperm DNA at 60° C., and washing in 4×, 2×, and 1×SET at 60° C.
2. A genetic construct comprising the isolated nucleic acid according to claim 1 .
3. A vector comprising the genetic construct according to claim 2 .
4. A cell comprising the vector according to claim 3 .
5. A transformed plant wherein said plant is transformed with comprising the nucleic acid according to claim 1 .
6. A method of producing a plant with increased GLA comprising transforming a plant cell with a nucleic acid according to claim 1 and regenerating said plant from said plant cell.
7. A transformed plant comprising the genetic construct according to claim 2 .
8. A method of producing a plant with increased GLA comprising transforming a plant cell with the genetic construct according to claim 2 and regenerating said plant from said plant cell.