Expressing multiple genes from a single transcript in algae and plants
Multiple exogenous genes are expressed from a single transcript in algae and plants using engineered plant polycistronic loci.
1 . A plant transformed with a polycistronic plant locus comprising genes encoding polycistronically co-expressed exogenous proteins, the genes sharing a single promoter, wherein the locus is transcribed in the plant as a corresponding mRNA comprising open reading frames (ORFs) for each of the exogenous proteins and a single poly(A) tail, wherein the ORFs comprise an upstream ORF and a downstream ORF encoding first and second proteins, respectfully, wherein translation of each of the upstream and downstream ORFs is regulated by corresponding upstream and downstream translation initiation sites, that are Kozak-like sequences, tuned to effect a predetermined ratio, that is 3:1 or 0.5:1, of the first and second proteins.
2 . The plant of claim 1 , wherein the upstream translation initiation site is a strong non-endogenous Kozak-like sequence, increasing the relative expression of the upstream ORF.
3 . The plant of claim 1 , wherein the upstream translation initiation site is a weak non-endogenous Kozak-like sequence, decreasing the relative expression of the upstream ORF.
4 . The plant of claim 1 , wherein one of the proteins is a selectable marker.
5 . The plant of claim 1 , wherein one of the proteins is a selectable marker that is a protein that confers resistance to a drug or herbicide, or complements auxotrophy.
6 . The plant of claim 1 , wherein the polycistronically-expressed exogenous proteins are enzymes catalyzing corresponding reactions in the plant.
7 . A method of recombinant protein production, comprising growing a plant of claim 1 , under conditions wherein the plant expresses the proteins.