Haploid induction compositions and methods for use therefor
Provided here are methods of using a mutated patatin-like phospholipase IIα (“pPLAIIα,” renamed here MATRILINEAL) to induce haploid induction in plants, cloning a pPLAIIα to induce haploid induction in plants, and genetically engineering a plant to contain a mutated pPLAIIα. Also provided are methods of applying topical and spray chemicals, lipids, and RNAi molecules to plants during pollination in order to induce haploid production. Further provided are methods of chemically treating plants during pollination to induce haploids while also reducing embryo abortion and increasing seed set.
1. A method for inducing haploid embryos in a cross between two plants, the method comprising:
(a) expressing a mutated patatin-like phospholipase AII comprising a human-induced knockout mutation in a plant; or
(b) administering to a plant a small interfering RNA molecule comprising at least 23 nucleotides of a gene encoding a patatin-like phospholipase AII; or
(c) transforming a plant with a mutated patatin-like phospholipase AII comprising a knockout mutation; or
(d) mutating a patatin-like phospholipase AII sequence of a plant to comprise a knockout mutation using gene editing;
wherein the patatin-like phospholipase AII is encoded by a nucleic acid comprising a sequence selected from the group consisting of SEQ ID NO: 70, a sequence 95% identical to SEQ ID NO: 70, SEQ ID NO: 68, and a sequence 95% identical to SEQ ID NO: 68; and
wherein the plant is used as a parent plant in the cross between two plants, such that the cross produces at least one haploid embryo.
2. The method of claim 1 , wherein the patatin-like phospholipase is encoded by SEQ ID NO: 68.
3. The method of claim 1 , wherein the mutated patatin-like phospholipase AII is encoded by SEQ ID NO: 70.
4. The method of claim 1 , wherein the gene editing of step (d) is accomplished by site-directed mutagenesis.
5. The method of claim 4 , wherein the site-directed mutagenesis is accomplished by a technique selected from the group consisting of CRISPR/Cas9, TALENs, zinc fingers, and meganucleases.
6. The method of claim 1 , wherein the cross between two plants is between two monocot plants, or between to dicot plants, or between one monocot plant and one dicot plant.
7. The method of claim 6 , wherein the two monocot plants are maize plants, rice plants, wheat plants, or barley plants.
8. The method of claim 1 , wherein the plant used as a parent plant in the cross is a maize plant or a rice plant.
9. The method of claim 8 , wherein the maize plant or the rice plant provides pollen used in the cross.
10. The method of claim 1 , wherein the small interfering RNA molecule comprises at least 23 consecutive nucleotides of SEQ ID NO: 68.