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December 11, 2025Phytopathology Research3 citationsOpen Access

The Gα subunit gene SsGpa1 regulates virulence and mycovirus horizontal transmission in Sclerotinia sclerotiorum

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XPXidan PangHHHuang HuangYYYiran Yang

Key Points

  • This research investigates the role of the Gα subunit gene SsGpa1 in regulating virulence and mycovirus transmission in Sclerotinia sclerotiorum.
  • Generated targeted gene deletion mutants of SsGpa1 in Sclerotinia sclerotiorum
  • Evaluated the impact of SsGpa1 deletion on hyphal growth, virulence, and stress sensitivity
  • Conducted comparative transcriptomic analysis between ΔSsGpa1 and its parental strain during dual-culture of VIC strains
  • SsGpa1 deletion mutants exhibited reduced hyphal growth and attenuated virulence on rapeseed
  • Deletion mutants showed increased sensitivity to abiotic stress and defects in sclerotia formation
  • Comparative analysis identified apoptosis- and autophagy-related genes and ROS generation as downstream effectors of the SsGpa1 signaling pathway

Abstract

Abstract Fungal vegetative incompatibility (VIC) usually inhibits the horizontal transmission of mycoviruses. Our previous work demonstrated that Sclerotinia sclerotiorum mycoreovirus 4 (SsMYRV4), a hypovirulence-associated mycovirus, suppresses VIC to facilitate horizontal transmission of heterologous mycoviruses in Sclerotinia sclerotiorum , while downregulating heterotrimeric G protein genes. However, the biological function of these genes in mycovirus horizontal transmission and mycovirus-mediated hypovirulence remains poorly understood. To address this knowledge gap, we generated targeted gene deletion mutants of the Gα subunit gene ( SsGpa1 ) in S. sclerotiorum . SsGpa1 deletion mutants displayed reduced hyphal growth, increased abiotic stress sensitivity, defective sclerotia formation, and attenuated virulence on rapeseed. Moreover, SsGpa1 deletion partially impairs the death barrage formation during the vegetative incompatibility response, promoting mycovirus horizontal transmission between incompatible S. sclerotiorum strains. Comparative transcriptomic analysis between ΔSsGpa1 and its parental strain Ep-1PNA367 during dual-culture of VIC strains revealed that apoptosis- and autophagy-related genes and ROS generation and scavenging genes act as potential downstream effectors of the SsGpa1 signaling pathway. Together, the regulatory role of SsGpa1 in VIC response unveils novel molecular targets for biocontrol strategies by manipulating mycovirus transmission in phytopathogenic fungi.

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Cite This Study

Pang et al. (2025) studied this question.

synapsesocial.com/papers/6940192a2d562116f28f6b55https://doi.org/10.1186/s42483-025-00383-9
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