# Wheat with greatly reduced accumulation of free asparagine in the grain, produced by CRISPR/Cas9 editing of asparagine synthetase gene TaASN2

**Authors:** Sarah Raffan, Caroline Sparks, Alison Huttly, Lucy Hyde, Damiano Martignago, Andrew Mead, Steven J. Hanley, Paul A. Wilkinson, Gary Barker, Keith J. Edwards, Tanya Y. Curtis, Sarah Usher, Ondrej Kosik, Nigel G. Halford

PMC · DOI: 10.1111/pbi.13573 · Plant Biotechnology Journal · 2021-03-28

## TL;DR

Scientists used CRISPR to reduce free asparagine in wheat grains, which could lower acrylamide formation during high-temperature food processing.

## Contribution

CRISPR/Cas9 was used to edit the TaASN2 gene in wheat, significantly reducing free asparagine in the grain.

## Key findings

- Editing TaASN2 alleles reduced free asparagine in wheat grains by up to 90%.
- Plants with edits in all six TaASN2 alleles showed the greatest reduction in free asparagine.
- Germination of low-asparagine seeds improved with exogenous asparagine application.

## Abstract

Free asparagine is the precursor for acrylamide, which forms during the baking, toasting and high‐temperature processing of foods made from wheat. In this study, CRISPR/Cas9 was used to knock out the asparagine synthetase gene, TaASN2, of wheat (Triticum aestivum) cv. Cadenza. A 4‐gRNA polycistronic gene was introduced into wheat embryos by particle bombardment and plants were regenerated. T1 plants derived from 11 of 14 T0 plants were shown to carry edits. Most edits were deletions (up to 173 base pairs), but there were also some single base pair insertions and substitutions. Editing continued beyond the T1 generation. Free asparagine concentrations in the grain of plants carrying edits in all six TaASN2 alleles (both alleles in each genome) were substantially reduced compared with wildtype, with one plant showing a more than 90 % reduction in the T2 seeds. A plant containing edits only in the A genome alleles showed a smaller reduction in free asparagine concentration in the grain, but the concentration was still lower than in wildtype. Free asparagine concentration in the edited plants was also reduced as a proportion of the free amino acid pool. Free asparagine concentration in the T3 seeds remained substantially lower in the edited lines than wildtype, although it was higher than in the T2 seeds, possibly due to stress. In contrast, the concentrations of free glutamine, glutamate and aspartate were all higher in the edited lines than wildtype. Low asparagine seeds showed poor germination but this could be overcome by exogenous application of asparagine.

## Linked entities

- **Chemicals:** asparagine (PubChem CID 236), acrylamide (PubChem CID 6579), glutamine (PubChem CID 738), glutamate (PubChem CID 611), aspartate (PubChem CID 5960)
- **Species:** Triticum aestivum (taxon 4565)

## Full-text entities

- **Genes:** tRNA [NCBI Gene 803190], phytoene desaturase [NCBI Gene 548168]
- **Diseases:** ND (MESH:C537849), 1F (MESH:C536489), Cancer (MESH:D009369), sulphur deficiency (MESH:D007153), coeliac disease (MESH:D004194)
- **Chemicals:** water (MESH:D014867), ATP (MESH:D000255), nitrogen (MESH:D009584), abscisic acid (MESH:D000040), sulphur (MESH:D013455), THF (MESH:C018674), CH2 (-), glutamine (MESH:D005973), isopropanol (MESH:D019840), chloroform (MESH:D002725), methanol (MESH:D000432), Acrylamide (MESH:D020106), glutamate (MESH:D018698), salt (MESH:D012492), aspartate (MESH:D001224), ice (MESH:D007053), ethanol (MESH:D000431), glufosinate ammonium (MESH:C003121), agarose (MESH:D012685), acid (MESH:D000143), A (MESH:D001151), Amino Acid (MESH:D000596), o-phthalaldehyde (MESH:D009764), asparagine (MESH:D001216), sodium acetate (MESH:D019346)
- **Species:** Agrobacterium tumefaciens (species) [taxon 358], Hordeum vulgare (barley, species) [taxon 4513], Oryza sativa (Asian cultivated rice, species) [taxon 4530], Triticum aestivum (bread wheat, species) [taxon 4565], Secale cereale (rye, species) [taxon 4550], Triticum turgidum subsp. durum (durum wheat, subspecies) [taxon 4567]
- **Mutations:** guanine to adenine, CGG to GCA, guanine to thymine, glutamine to aspartate, G1321D
- **Cell lines:** DH5alpha and 10-beta — Drosophila hydei (Fruit fly), Spontaneously immortalized cell line (CVCL_Z531)

## Full text

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## Figures

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## References

45 references — full list in the complete paper: https://tomesphere.com/paper/PMC8384593/full.md

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Source: https://tomesphere.com/paper/PMC8384593