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Disabling one potato gene delays both flowers and tubers

Zhai Z, Liu Y, Li H, Sun W, Lang X

Crispr

The potatoes on your dinner plate form underground tubers on a strict internal clock, and this study shows breeders can't simply flip one gene to get faster harvests, the plant's timing system is far more tangled than expected.

Potato plants use an internal clock tied to day length to decide when to flower and when to start forming the tubers we eat. Researchers used gene editing to switch off a clock gene called StFKF1, expecting the plant to flower and tuber later or earlier based on how similar genes work in other plants. Instead they got a surprise: tuber formation was delayed too, in a way that didn't match predictions, hinting that this gene's role in potato is more complicated than in well-studied plants like Arabidopsis.

Key Findings

1

CRISPR/Cas9 knockout of StFKF1 produced homozygous mutant potato lines with a distinct diurnal expression pattern under light/dark cycles

2

Under long-day conditions, StFKF1 knockout plants showed significantly delayed flowering and, unexpectedly, delayed tuber formation rather than earlier tuberization

3

Mutant plants had reduced single-plant yield with unchanged tuber number per plant, alongside altered expression of florigen gene StSP3D, tuberigen gene StSP6A, and upregulated StGI

chevron_right Technical Summary

Scientists disabled a light-sensing gene in potato plants and expected earlier flowering and tuber formation, but got the opposite: both were delayed, revealing the gene's role is more complex than predicted.

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Abstract Preview

Original paper

Loss-of-function of StFKF1 delays flowering and tuberization under long-day conditions in potato.

As key components of the diurnal oscillation pathway, FKF1 family genes are well known to promote flowering under inductive photoperiods in model plants, yet their biological function in potato flo...

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Abstract copyright held by the original publisher.

hub This connects to 10 other discoveries — Potato crispr, crop-improvement, plant-signaling +1 more 5 related articles

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