PulseExploreJournal ClubDebatesTrendingResearchersJournals
Instagram
HomeExploreJournal ClubTrending
Synapse
⌘+K
Synapse
February 12, 2026Physiologia Plantarum0 citations

Neofusicoccum laricinum Disrupts Larch Defenses Through Coordinated Cell Wall Degradation and Antioxidant Suppression

View Full Paper
YYYongfeng YangSTShifen TangNKNing Kong

Key Points

  • The research aims to characterize the virulence mechanisms and host interactions of Neofusicoccum laricinum affecting larch trees.
  • Isolated 25 N. laricinum strains from six regions in Northeast China.
  • Conducted morphological and molecular analysis for identification.
  • Assessed growth conditions for optimal development at 18°C and pH 9–11.
  • Performed pathogenicity assays on different strains to evaluate virulence.
  • Analyzed biochemical changes in host oxidative defenses and gene expression.
  • The hypervirulent TM02 strain showed significant production of cell wall-degrading enzymes.
  • Host oxidative defense disruption was observed, with SOD peak activity at 3 dpi.
  • Significant downregulation of defense genes, particularly cellulose synthase and peroxidase, highlighting pathogen impact.
  • Identified a two-phase infection strategy: initial mechanical damage followed by antioxidant suppression.

Abstract

ABSTRACT Larch ( Larix spp.), a key species in China's reforestation efforts, faces increasing threats from shoot blight caused by Neofusicoccum laricinum . This study characterized the biological traits, virulence mechanisms, and host interactions of this pathogen to inform disease management. Twenty‐five N. laricinum strains were isolated from six regions in Northeast China and identified through morphological and molecular analysis. Comprehensive growth assessments revealed optimal development at 18°C and pH 9–11, with significant strain‐specific variation in virulence (lesions 18.4–38.8 mm). Pathogenicity assays revealed that the hypervirulent TM02 strain exhibited early and robust production of cell wall‐degrading enzymes, such as pectin methylgalacturonase (PMG, 208.9 U/mg) and polygalacturonase (PG, 54.9 U/mg), correlated with its aggressive infection phenotype. Biochemical analyses revealed that the pathogen actively disrupted host oxidative defenses, with superoxide dismutase (SOD) activity peaking at 3 dpi (456.7 U/g/min) before decreasing to 0.8× control levels by 7 dpi, whereas peroxidase (POD) activity exhibited a transient 4.6‐fold increase followed by rapid suppression. Transcriptome analysis revealed generally downregulation of defense genes, mainly cellulose synthase (21/25 genes) and peroxidase (38/45 genes), with 10.5‐fold inhibition of Ces‐g8671 and 11.4‐fold reduction in Pod‐g18614 expression, indicating that pathogens can simultaneously damage larch cell wall synthesis and the ROS scavenging defense system. These findings establish N. laricinum 's sophisticated two‐phase infection strategy: initial physical breach of cell walls facilitated by CWDEs, followed by systematic suppression of host antioxidant defenses. This study identifies specific molecular targets for developing intervention strategies and provides critical insights into host–pathogen dynamics in larch plantations under climate change scenarios.

Ask AI
Helpful
Bookmark
Share
View Full Paper

Cite This Study

Yang et al. (2026) studied this question.

synapsesocial.com/papers/698d6f0d5be6419ac0d550d8https://doi.org/10.1111/ppl.70786
Ask AI
Helpful
Bookmark
Share
View Full Paper