Bioenergy: Precision gene editing in miscanthus

Researchers have successfully demonstrated precision gene editing in miscanthus, a promising perennial crop for sustainable bioenergy production. Biologists edited the genomes of three miscanthus species using CRISPR/Cas9 — a far more targeted and efficient way to develop new varieties than prior methods. The results will accelerate efforts to tap the huge potential of this highly productive but genetically complex grass as a source for biofuels, renewable bioproducts, and carbon sequestration — and reduce our reliance on petroleum-based energy.Researchers have successfully demonstrated precision gene editing in miscanthus, a promising perennial crop for sustainable bioenergy production. Biologists edited the genomes of three miscanthus species using CRISPR/Cas9 — a far more targeted and efficient way to develop new varieties than prior methods. The results will accelerate efforts to tap the huge potential of this highly productive but genetically complex grass as a source for biofuels, renewable bioproducts, and carbon sequestration — and reduce our reliance on petroleum-based energy.

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