Physiologia plantarum

Creating a Gene-Editing Tool for Indica Rice and Finding a Gene That Controls Root Growth

Updated

Abstract

Transformation of a CRISPR-Cas9 library targeting 12,000 rice genes achieved 90% editing efficiency in the indica cultivar MTU-1010.

  • High sgRNA coverage and more than 80% accuracy were confirmed through Sanger sequencing and NGS analysis.
  • Functional analysis of a homozygous mutant revealed that OsOPR5 is involved in regulating root architecture.
  • opr5 mutants showed significant reductions in lateral root number, seminal and crown root number, and root length.
  • Endogenous jasmonic acid levels remained largely unchanged in the opr5 mutants, indicating possible redundancy among rice OPR family members.
  • OsOPR5 may play a role in adaptation to adverse environmental conditions through its effects on root system architecture.

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