Submission + - The sweetpotato's DNA turned out stranger than anyone expected (sciencedaily.com)
alternative_right writes: The research revealed surprising complexity. The sweetpotato genome is a mosaic assembled from multiple wild ancestors, some of which have yet to be identified. About one-third comes from Ipomoea aequatoriensis, a wild species found in Ecuador that appears to be a direct descendant of a sweetpotato progenitor. Another significant portion resembles a wild Central American species called Ipomoea batatas 4x, though the actual donor may still remain undiscovered in the wild.
"Unlike what we see in wheat, where ancestral contributions can be found in distinct genome sections," says Shan Wu, the study's first author, "in sweetpotato, the ancestral sequences are intertwined on the same chromosomes, creating a unique genomic architecture."
This intertwined genetic heritage means that sweetpotato can be tentatively classified as a "segmental allopolyploid" — essentially a hybrid that arose from different species but behaves genetically as if it came from a single one. This genomic merging and recombination gives sweetpotato its remarkable adaptability and disease resistance, traits crucial for subsistence farmers worldwide.
"Unlike what we see in wheat, where ancestral contributions can be found in distinct genome sections," says Shan Wu, the study's first author, "in sweetpotato, the ancestral sequences are intertwined on the same chromosomes, creating a unique genomic architecture."
This intertwined genetic heritage means that sweetpotato can be tentatively classified as a "segmental allopolyploid" — essentially a hybrid that arose from different species but behaves genetically as if it came from a single one. This genomic merging and recombination gives sweetpotato its remarkable adaptability and disease resistance, traits crucial for subsistence farmers worldwide.