A nonS-locus F-box gene breaks self-incompatibility in diploid potatoes
Potato is the third most important staple food crop. To address challenges associated with global food security, a hybrid potato breeding system, aimed at converting potato from a tuber-propagated tetraploid crop into a seed-propagated diploid crop through crossing inbred lines, is under development...
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Veröffentlicht in: | Nature communications 2021-07, Vol.12 (1), p.4142-4142, Article 4142 |
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Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | Potato is the third most important staple food crop. To address challenges associated with global food security, a hybrid potato breeding system, aimed at converting potato from a tuber-propagated tetraploid crop into a seed-propagated diploid crop through crossing inbred lines, is under development. However, given that most diploid potatoes are self-incompatible, this represents a major obstacle which needs to be addressed in order to develop inbred lines. Here, we report on a self-compatible diploid potato, RH89-039-16 (RH), which can efficiently induce a mating transition from self-incompatibility to self-compatibility, when crossed to self-incompatible lines. We identify the
S
-
l
ocus
i
nhibitor
(
Sli
) gene in RH, capable of interacting with multiple allelic variants of the pistil-specific S-ribonucleases (S-RNases). Further,
Sli
gene functions like a general S-RNase inhibitor, to impart SC to RH and other self-incompatible potatoes. Discovery of
Sli
now offers a path forward for the diploid hybrid breeding program.
Diploid potatoes are typically self-incompatible, complicating efforts to breed diploid cultivars. Here the authors report map-based cloning of the
S-locus inhibitor (Sli)
gene in potato which encodes a non S-locus F-box protein that is expressed in pollen and can functions like a general S-RNase inhibitor to overcome self-incompatibility. |
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ISSN: | 2041-1723 2041-1723 |
DOI: | 10.1038/s41467-021-24266-7 |