Comparative Physiological and Transcriptome Analysis Provide Insights into the Response of Cenococcum geophilum, an Ectomycorrhizal Fungus to Cadmium …

Y Shi, T Yan, C Yuan, C Li, C Rensing, Y Chen, R Xie… - Journal of Fungi, 2022 - mdpi.com
Cadmium (Cd) displays strong toxicity, high mobility, and cannot be degraded, which poses
a serious threat to the environment. Cenococcum geophilum (C. geophilum) is one of the …

Analysis of the distribution pattern of the ectomycorrhizal fungus Cenococcum geophilum under climate change using the optimized MaxEnt model

Y Zheng, C Yuan, N Matsushita, C Lian… - Ecology and …, 2023 - Wiley Online Library
Cenococcum geophilum (C. geophilum) is a widely distributed ectomycorrhizal fungus that
plays a crucial role in forest ecosystems worldwide. However, the specific ecological factors …

Novel insights into symbiont population structure: Globe‐trotting avian feather mites contradict the specialist–generalist variation hypothesis

AE Matthews, TJ Boves, AD Sweet, EM Ames… - Molecular …, 2023 - Wiley Online Library
Researchers often examine symbiont host specificity as a species‐level pattern, but it can
also be key to understanding processes occurring at the population level, which are not as …

[PDF][PDF] Loss of the accessory chromosome converts a pathogenic tree-root fungus into a mutualistic endophyte

H Wei, Z Zhong, Z Li, Y Zhang, EH Stukenbrock… - Plant …, 2024 - cell.com
Some fungal accessory chromosomes (ACs) may contribute to virulence in plants. However,
the mechanisms by which ACs determine specific traits associated with lifestyle transitions …

[PDF][PDF] 凋落物清除对贵州马尾松外生菌根真菌群落的影响

魏珊, 徐明, 张姣, 文春玉, 张健 - 菌物学报, 2023 - manu40.magtech.com.cn
凋落物作为森林土壤有机质的重要来源, 对森林生态系统土壤微生物群落具有重要影响.
本研究以清除凋落物层马尾松林(L) 和未清除凋落物层马尾松林(NL) 作为调查对象 …

Accumulation of aluminium and arsenic in Cenococcum geophilum sclerotia from forest soil affected by mining smoke

K Nyamsanjaa, A Genseki, T Hatano… - Chemistry and …, 2024 - Taylor & Francis
Aluminium toxicity may increase under low soil pH, and an increase in arsenic concentration
in the soil may inhibit inorganic P uptake and influence fungal growth. This study …

[引用][C] Tracking signatures of selection in natural populations of ectomycorrhizal fungi–progress, challenges, and prospects

B Dauphin, M Peter - New Phytologist, 2024 - Wiley Online Library
Environmental changes have a manifold effect on biodiversity. Although soil harbours most
terrestrial biodiversity (Anthony et al., 2023), including c. 90% of the fungal kingdom, little is …