Synthetic desalination genetic circuit in plants
The present disclosure provides compositions and methods for generating plants that can grow in saline conditions, or remove a salt or other impurity from water, for example plants that can remove sodium chloride from salt or sea water, and plants that can produce purified water from salt or sea water.
1. A transgenic plant genetically engineered to produce purified water, comprising:
a) a MYB41 polypeptide comprising at least 95% amino acid sequence identity to the amino acid sequence encoded by the nucleotide sequence as set forth in SEQ ID NO: 13, wherein expression of said MYB41 polypeptide results in the biosynthesis of a genetically encoded physical barrier component suberin in said transgenic plant, and a MYB36 polypeptide sequence comprising at least 95% amino acid sequence identity to the amino acid sequence encoded by the nucleotide sequence as set forth in SEQ ID NO: 10, wherein expression of said MYB36 polypeptide results in the biosynthesis of a genetically encoded physical barrier component Casparian Strip in said transgenic plant, and wherein said suberin and said Casparian Strip are produced in the root epidermis of said transgenic plant;
b) genetically encoded water filtering and transport components comprising an aquaporin polypeptide comprising at least 95% amino acid sequence identity to the amino acid sequence encoded by the nucleotide sequence as set forth in SEQ ID NO: 1, and wherein the aquaporin polypeptide is expressed in the root epidermis from a heterologous promoter operably linked to said nucleotide sequence of part b);
and
c) genetically encoded water retention and pumping components comprising a mannitol biosynthesis polypeptide comprising at least 95% amino acid sequence identity to the amino acid sequence encoded by the nucleotide sequence as set forth in SEQ ID NO: 19, and a mannitol transport polypeptide comprising at least 95% amino acid sequence identity to the amino acid sequence encoded by the nucleotide sequence as set forth in SEQ ID NO: 16, and wherein said mannitol biosynthesis polypeptide and said mannitol transporter polypeptide are expressed in the xylem parenchyma from a heterologous promoter operably linked to each of said nucleotide sequences of part c), wherein said transgenic plant, produces purified water when grown in water containing an impurity.
2. The transgenic plant of claim 1 , wherein:
a) the transgenic plant is a monocot plant;
b) the transgenic plant is a rice, wheat, barley, oats, rye, sorghum or maize plant;
c) the transgenic plant is a rice plant;
d) the transgenic plant is a dicot plant; or
e) the transgenic plant is a soybean, alfalfa, sunflower, cotton, canola, sugar beet, sweet potato, tomato, strawberry, tobacco, banana, grape, cucurbits, pepper, beach plum, wax myrtle, mesquite, salt cedar, crossvine, withe vine, acacia, or laurel fig plant.
3. The transgenic plant of claim 1 , wherein said transgenic plant produces purified water when grown in salt or sea water.
4. A transgenic plant part from the transgenic plant of claim 1 , and wherein the transgenic plant part comprises said transgenic polypeptides and said components of parts a), b) and c).
5. The transgenic plant part of claim 4 , wherein the transgenic plant part is a cell, meristem, root, leaf, node, pistil, anther, flower, seed, embryo, stalk or petiole.
6. A method of producing purified water from salt or sea water, comprising growing the transgenic plant of claim 1 in salt of sea water and collecting the purified water produced by the transgenic plant.