System-Wide Characterization of MoArf GTPase Family Proteins and Adaptor Protein MoGga1 Involved in the Development

Shengpei Zhang1,2, Lina Yang1,2, Lianwei Li1,2

  • 1Department of Plant Pathology, College of Plant Protection, Nanjing Agricultural University, Nanjing, China.

Mbio
|October 17, 2019
PubMed

Insights

This study comprehensively characterizes ADP ribosylation factor (Arf) proteins in the rice blast fungus Magnaporthe oryzae, revealing their crucial roles in fungal growth, vesicle transport, and pathogenicity. Key Arf proteins and their adaptor MoGga1 are vital for virulence, offering potential fungicide targets.

Area of Science:

  • Molecular Biology
  • Plant Pathology
  • Mycology

Background:

  • ADP ribosylation factor (Arf) small GTPases are essential for vesicle trafficking and organelle maintenance in eukaryotes.
  • While Arf6 in Magnaporthe oryzae regulates growth and conidiation, other Arf family members in this fungus remain uncharacterized.
  • Magnaporthe oryzae causes rice blast, a devastating disease leading to significant global crop losses.

Purpose of the Study:

  • To identify and functionally characterize the remaining Arf family proteins and their adaptor protein in Magnaporthe oryzae.
  • To elucidate the shared and specific functions of these proteins in fungal growth, development, and pathogenicity.
  • To investigate the molecular mechanisms underlying Arf protein function, including interactions and localization.

Main Methods:

  • Identification and characterization of six additional Arf proteins (MoArf1, MoArl1, MoArl3, MoArl8, MoCin4, MoSar1) and their adaptor MoGga1.
  • Functional analysis of these proteins in regulating fungal growth, conidiation, vesicle trafficking, and pathogenicity.
  • Investigation of protein interactions and subcellular localization, including Golgi-cytoplasm cycling.

Main Results:

  • The majority of identified Arf proteins positively regulate fungal growth.
  • MoArl1, MoCin4, and MoGga1 are critical for pathogenicity, regulating host penetration and invasive hyphal growth.
  • MoArl1 and MoCin4 are involved in vesicle trafficking, with MoCin4 regulating the biotrophic interfacial complex (BIC); Golgi-cytoplasm cycling of MoArl1 is essential for its function.
  • Interactions between MoArf1, MoArl1, and MoGga1 are crucial for Golgi localization and pathogenicity.

Conclusions:

  • This study provides the first comprehensive characterization of the Arf GTPase family and their adaptor MoGga1 in a plant-pathogenic fungus.
  • Arf proteins in M. oryzae exhibit both shared and specific functions governing growth, transport, and virulence through conserved mechanisms.
  • The identified Arf proteins and MoGga1 represent potential targets for developing novel fungicides to combat rice blast disease.

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