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Translation

gene-splicing

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Gene-splicing (noun)

Definition: Gene-splicing is a scientific technique used to combine DNA from different organisms. Scientists cut DNA molecules into pieces and then join them together to create new combinations of genes. This process is often used in genetic engineering to produce organisms with desired traits.

Usage Instructions:
  • Basic Usage: You can use "gene-splicing" when talking about biology, genetics, or biotechnology.
  • Example Sentence: "Gene-splicing has allowed scientists to create crops that are resistant to pests."
Advanced Usage:
  • In advanced discussions, you might refer to specific techniques like CRISPR (a newer method of gene editing) that are related to gene-splicing.
  • Example Sentence: "The advancements in gene-splicing techniques have revolutionized the field of medicine, allowing for potential cures for genetic disorders."
Word Variants:
  • Gene-splice (verb): To perform gene-splicing.
    • Example Sentence: "Researchers gene-splice DNA to develop new vaccines."
  • Gene-splicing technology (noun): Refers to the tools and methods used in the process.
    • Example Sentence: "The gene-splicing technology used in the lab is state-of-the-art."
Different Meaning:

While "gene-splicing" specifically refers to genetics, sometimes the term can be used metaphorically in discussions about combining different ideas or concepts. - Example Sentence: "The project was a gene-splicing of various artistic styles."

Synonyms:
  • Genetic engineering
  • Recombinant DNA technology
Idioms and Phrasal Verbs:

There are no specific idioms or phrasal verbs that directly relate to gene-splicing, but you might hear phrases like "mix and match" when talking about combining different elements, which is conceptually similar.

Summary:

Gene-splicing is an important technology in genetics that allows scientists to manipulate DNA from different organisms. It has many applications in medicine, agriculture, and research.

Noun
  1. the technology of preparing recombinant DNA in vitro by cutting up DNA molecules and splicing together fragments from more than one organism

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