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Scientists want to fast-track wild plants into new crops

Zafar MM, Firdous H, Siddiqua A, Naveed A, Razzaq A

Crispr

That scrappy wild grass or weedy relative growing at the edge of a field could one day become a drought-tolerant crop, because researchers are now mapping out exact genetic steps to speed up domestication instead of waiting for thousands of years of natural selection.

For thousands of years, humans turned wild plants into food crops slowly, by picking and replanting the best-looking ones generation after generation. This paper describes how scientists now want to speed that process up dramatically using gene-editing tools like CRISPR, AI predictions and giant plant genetic databases, essentially giving overlooked wild plants a shortcut to becoming reliable, resilient crops. The authors lay out a roadmap for doing this responsibly, tackling both the genetic puzzles involved and the bigger questions about protecting plant diversity along the way.

Key Findings

1

Proposes a three-stage framework for programmable domestication: Adaptive Rescue, Agronomic Refinement, and Novel Chassis Engineering

2

Combines multiplex CRISPR gene editing, pan-genomic variation discovery, and AI-driven genomic prediction to engineer traits like plant architecture, yield, and stress tolerance

3

Identifies major remaining obstacles including cryptic genetic variation, epistasis, gene regulatory network complexity, and regulatory/biodiversity concerns

chevron_right Technical Summary

Scientists are proposing a new way to turn wild, uncultivated plants into full-fledged crops in years instead of centuries, using gene editing, AI and big genetic databases to fast-track the same process humans used to first domesticate wheat and rice.

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Abstract Preview

Original paper

Programmable Domestication: CRISPR, Pan-Genomics and System Level Engineering for Next-Generation Crops.

Global agriculture is increasingly challenged by climate instability, genetic erosion, emerging pathogens and rising food demands, exposing the limitations of conventional breeding and traditional ...

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Abstract copyright held by the original publisher.

hub This connects to 9 other discoveries — crispr, crop-improvement, climate-adaptation +1 more 5 related articles

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agriculture Crop Improvement
Topic
agriculture

Crop-improvement refers to the systematic enhancement of plant varieties through selective breeding, genetic modification, and biotechnological approaches to develop cultivars with superior agronomic, nutritional, or environmental traits. This field is essential for addressing global food security,

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