Related Experiment Video
Updated: Aug 5, 2026

In Vivo Leaf Inoculation: An Alternative Method to Assess the Disease Resistance of Hybrid Clones in Poplar Breeding of Stem Canker Disease
Published on: September 20, 2024
Pathogen identification, biological characteristics and control agent screening of China Xinjiang white clover
Yu Yuan Li1, Xu Ke Zhang1, Lei Shan1
1Department of Plant Pathology, College of Agronomy, Xinjiang Agricultural University, Key Laboratory of Prevention and Control of Invasive Alien Species in Agriculture & Forestry of the North-western Desert Oasis, Ministry of Agriculture and Rural Affairs, Key Laboratory of the Pest Monitoring and Safety Control of Crops and Forests, Urumqi, China.
Abstract:
White clover is a high-quality forage and turfgrass. In 2023, a severe anthracnose was observed on white clover in Urumqi and Altay, Xinjiang, China. The pathogen was identified as Colletotrichum destructivum based on morphology and phylogeny. Biological characteristic assays revealed that the optimum temperature for mycelial growth was 25 °C, with an optimal pH range of 7.0 - 10.0. The most favorable media for growth were PDA, PSA and CA. Soluble starch and inulin served as the optimal carbon sources, while peptone was the most effective nitrogen source. Mycelial growth occurred under three tested light conditions (24 hours of light, 24 hours of darkness, and 12 hours of light/darkness), and the lethal temperature for mycelia was 54 °C for 10 minutes. The optimal conditions for sporulation were 20 °C, pH 6.0, under continuous darkness (24 h), with PDA as the medium, lactose as the carbon source, and peptone as the nitrogen source. In vitro toxicity tests of ten fungicides against C. destructivum demonstrated that 20% Imazalil was the most effective with EC50 = 0.1347 mg/L and followed by 430 g/L Tebuconazole with EC50 = 0.2239 mg/L. This study identifies the pathogen and biological features of white clover anthracnose in Xinjiang and identifies highly effective fungicides for its management, providing a theoretical basis for field control strategies.

