Improvement of a Genetic Transformation System and Preliminary Study on the Function of LpABCB21 and LpPILS7 Based on Somatic Embryogenesis in Lilium pumilum DC. Fisch

Int J Mol Sci. 2020 Sep 16;21(18):6784. doi: 10.3390/ijms21186784.

Abstract

Auxin transport mediates the asymmetric distribution of auxin that determines the fate of cell development. Agrobacterium-mediated genetic transformation is an important technical means to study gene function. Our previous study showed that the expression levels of LpABCB21 and LpPILS7 are significantly up-regulated in the somatic embryogenesis (SE) of Lilium pumilum DC. Fisch. (L. pumilum), but the functions of both genes remain unclear. Here, the genetic transformation technology previously developed by our team based on the L. pumilum system was improved, and the genetic transformation efficiency increased by 5.7-13.0%. Use of overexpression and CRISPR/Cas9 technology produced three overexpression and seven mutant lines of LpABCB21, and seven overexpression and six mutant lines of LpPILS7. Analysis of the differences in somatic embryo induction of transgenic lines confirmed that LpABCB21 regulates the early formation of the somatic embryo; however, excessive expression level of LpABCB21 inhibits somatic embryo induction efficiency. LpPILS7 mainly regulates somatic embryo induction efficiency. This study provides a more efficient method of genetic transformation of L. pumilum. LpABCB21 and LpPILS7 are confirmed to have important regulatory roles in L. pumilum SE thus laying the foundation for subsequent studies of the molecular mechanism of Lilium SE.

Keywords: CRISPR/Cas9; Lilium pumilum DC. Fisch.; auxin transport; genetic transformation; somatic embryogenesis.

MeSH terms

  • ATP-Binding Cassette Transporters / genetics
  • ATP-Binding Cassette Transporters / physiology*
  • Agrobacterium tumefaciens / genetics
  • Base Sequence
  • CRISPR-Cas Systems
  • Culture Media / pharmacology
  • DNA, Plant / genetics
  • Gene Expression Regulation, Plant
  • Genetic Vectors / genetics
  • Hydrogen-Ion Concentration
  • Hydrophobic and Hydrophilic Interactions
  • Indoleacetic Acids / metabolism
  • Lilium / embryology
  • Lilium / genetics*
  • Mutation
  • Plant Proteins / genetics
  • Plant Proteins / physiology*
  • Plant Somatic Embryogenesis Techniques / methods*
  • Plants, Genetically Modified
  • RNA, Guide, CRISPR-Cas Systems / genetics
  • Sequence Alignment
  • Sequence Homology, Nucleic Acid
  • Transformation, Genetic*

Substances

  • ATP-Binding Cassette Transporters
  • Culture Media
  • DNA, Plant
  • Indoleacetic Acids
  • Plant Proteins
  • RNA, Guide, CRISPR-Cas Systems