Production of gamma linolenic acid by a delta6-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 encoding a delta-6 desaturase.
2 . An isolated nucleic acid according to claim 1 , wherein said isolated nucleic acid encodes a plant delta-6 desaturase comprising three histidine-rich boxes, and wherein at least one of the first, second or third histidine-rich boxes is represented by the amino acid sequences as set forth in SEQ ID NO: 6, SEQ ID NO: 12 and SEQ ID NO: 20, respectively.
3 . An isolated nucleic acid according to claim 1 , wherein said isolated nucleic acid is a bacterial delta-6 desaturase.
4 . An isolated nucleic acid according to claim 1 , wherein said isolated nucleic acid is a fungal delta-6 desaturase.
5 . A genetic construct comprising an isolated nucleic acid according to claim 1 .
6 . A vector comprising the genetic construct according to claim 5 .
7 . A cell comprising the vector according to claim 6 .
8 . A transformed plant comprising the nucleic acid according to claim 1 or the genetic construct according to claim 5 .
9 . A method of producing a plant with increased GLA comprising transforming a plant cell with a nucleic acid according to claim 1 or the genetic construct according to claim 5 and regenerating it.
10 . An isolated nucleic acid molecule according to claim 1 , wherein said isolated nucleic acid encodes a plant delta-6 desaturase, wherein said nucleic acid molecule hybridizes under stringency conditions to the complement of a polynucleotide molecule comprising the nucleotide sequence of SEQ ID NO: 4, 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.
11 . An isolated nucleic acid according to claim 1 , wherein said isolated nucleic acid encodes a plant delta-6 desaturase, wherein said nucleic acid comprises three histidine-rich boxes, and wherein said nucleic acid hybridizes under stringent conditions to the complement of polynucleotide molecules encoding the amino acid sequences as set forth in SEQ ID NO: 6, SEQ ID NO: 12 and SEQ ID NO: 20, respectively.