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Related Concept Videos

CRISPR01:59

CRISPR

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Genome editing technologies allow scientists to modify an organism’s DNA via the addition, removal, or rearrangement of genetic material at specific genomic locations. These types of techniques could potentially be used to cure genetic disorders such as hemophilia and sickle cell anemia. One popular and widely used DNA-editing research tool that could lead to safe and effective cures for genetic disorders is the CRISPR-Cas9 system. CRISPR-Cas9 stands for Clustered Regularly Interspaced...
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CRISPR and crRNAs02:53

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Bacteria and archaea are susceptible to viral infections just like eukaryotes; therefore, they have developed a unique adaptive immune system to protect themselves. Clustered regularly interspaced short palindromic repeats and CRISPR-associated proteins (CRISPR-Cas) are present in more than 45% of known bacteria and 90% of known archaea.
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Crop cultivation has a long history in human civilization, with records showing the cultivation of cereal plants beginning at around 8000 BC. This early plant breeding was developed primarily to provide a steady supply of food.
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Plant hormones—or phytohormones—are chemical molecules that modulate one or more physiological processes of a plant. In animals, hormones are often produced in specific glands and circulated via the circulatory system. However, plants lack hormone-producing glands.
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Tonicity in Plants00:53

Tonicity in Plants

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Tonicity describes the capacity of a cell to lose or gain water. It depends on the quantity of solute that does not penetrate the membrane. Tonicity delimits the magnitude and direction of osmosis and results in three possible scenarios that alter the volume of a cell: hypertonicity, hypotonicity, and isotonicity. Due to differences in structure and physiology, tonicity of plant cells is different from that of animal cells in some scenarios.
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Plant Cell Wall02:43

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The plant cell wall gives plant cells shape, support, and protection. As a cell matures, its cell wall specializes according to the cell type. For example, the parenchyma cells of leaves possess only a thin, primary cell wall.
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Related Experiment Video

Updated: Feb 14, 2026

A Telemetric, Gravimetric Platform for Real-Time Physiological Phenotyping of Plant–Environment Interactions
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Phenotypic novelty by CRISPR in plants.

Chen Liu1, Panagiotis N Moschou1

  • 1Department of Plant Biology, Uppsala BioCenter, Swedish University of Agricultural Sciences and Linnean Center for Plant Biology, Uppsala, Sweden.

Developmental Biology
|February 7, 2018
PubMed
Summary

CRISPR gene editing is revolutionizing plant biology, enabling researchers to understand gene functions and enhance crop traits. This technology offers unprecedented genome manipulation capabilities for steering plant development and addressing agricultural challenges.

Keywords:
Allelic variationCRISPR-Cas9EpigenomePlant biotechnologyPlant developmentProteostasis

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Area of Science:

  • Plant Biology
  • Genetics
  • Agricultural Science

Background:

  • CRISPR gene editing is a standard tool in plant biology.
  • It is used for gene function analysis and improving crop traits.
  • CRISPR allows for novel genome manipulations.

Purpose of the Study:

  • To discuss CRISPR-mediated approaches for plant development.
  • To suggest strategies for utilizing CRISPR in plant science.
  • To highlight potential challenges associated with CRISPR technology.

Main Methods:

  • Review of current CRISPR applications in plants.
  • Discussion of theoretical CRISPR-based developmental strategies.
  • Identification of technical and ethical considerations.

Main Results:

  • CRISPR facilitates precise gene function studies.
  • CRISPR enables targeted improvement of agronomical traits.
  • Potential for advanced control over plant development.

Conclusions:

  • CRISPR technology provides powerful tools for plant science.
  • Careful consideration of challenges is necessary for successful implementation.
  • Future research should focus on optimizing CRISPR for developmental steering.