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crop-genomic-engineering

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Crop-genomic engineering encompasses the use of gene editing tools like CRISPR-Cas9, along with genomic selection and transgenic approaches, to precisely modify the DNA of agricultural plants. This field matters because it enables researchers to introduce or enhance traits such as disease resistance, drought tolerance, and improved yield far more efficiently than traditional breeding methods. By directly targeting genes underlying key agronomic traits, these techniques accelerate the development of resilient, high-performing crop varieties essential for sustainable food production.

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PubMed → · research article

Wheat plants were engineered to pull some nitrogen from the air

It points toward a future where staple crops like wheat need less synthetic fertilizer — meaning ...

PubMed → · research article

Gene editing makes sterile rice hybrids fertile by disabling a poll...

Disabling a single gene could allow breeders to cross wild rice relatives with cultivated rice, p...

PubMed → · research article

Gene-edited rice captures 18% more carbon without sacrificing yield

More efficient rice plants could mean higher food production on the same farmland — helping feed ...

PubMed → · research article

Gene-edited rice survives weed killer without adding foreign DNA

It could lead to herbicide-tolerant rice and other crops that regulators classify as non-GMO, pot...

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PubMed → · research article

Gene editing now improves crops in multiple ways simultaneously

Vegetables, grains, and fruits you eat could soon be bred to withstand droughts, produce more foo...

PubMed → · research article

Challenges in Bringing Pangenome Research Into Breeding: A Case Stu...

Rice feeds more than half the world's population, and these new genetic tools could help breeders...

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