Physiological and transcriptional responses of the ectomycorrhizal fungus Cenococcum geophilum to salt stress

被引:0
|
作者
Jiali Li
Chaofeng Li
Momi Tsuruta
Norihisa Matsushita
Susumu Goto
Zhenguo Shen
Daisuke Tsugama
Shijie Zhang
Chunlan Lian
机构
[1] The University of Tokyo,Asian Research Center for Bioresource and Environmental Sciences, Graduate School of Agricultural and Life Sciences
[2] The University of Tokyo,Graduate School of Agricultural and Life Sciences
[3] The University of Tokyo,The University of Tokyo Forests, Graduate School of Agricultural and Life Sciences
[4] Nanjing Agricultural University,College of Life Sciences
[5] Jiangsu Province and Chinese Academy of Sciences,Institute of Botany
[6] Forestry and Forest Products Research Institute,Department of Forest Molecular Genetics and Biotechnology
来源
Mycorrhiza | 2022年 / 32卷
关键词
Ectomycorrhiza; Salinity tolerance; Osmotic stress; Fungal transcriptomics;
D O I
暂无
中图分类号
学科分类号
摘要
Ectomycorrhizal (ECM) fungi improve the host plant’s tolerance to abiotic and biotic stresses. Cenococcum geophilum (Cg) is among the most common ECM fungi worldwide and often grows in saline environments. However, the physiological and molecular mechanisms of salt tolerance in this fungus are largely unknown. In the present study, 12 isolates collected from different ecogeographic regions were used to investigate the mechanism of salt tolerance of Cg. The isolates were classified into four groups (salt-sensitive, moderately salt-tolerant, salt-tolerant, and halophilic) based on their in vitro mycelial growth under 0, 50, 125, 250, and 500 mM NaCl concentrations. Hence, the Na, Ca, P, and K concentrations of mycelia and the pH of the culture solution were determined. Compared with salt-tolerant isolates, treatment with 250 mM NaCl significantly increased the sodium concentration and decreased the potassium concentration of salt-sensitive isolates. RNA-sequencing and qRT-PCR analysis were conducted to identify differentially expressed genes (DEGs) involved in transmembrane transport and oxidoreductase activity pathways. The hydrogen peroxide concentration and activities of peroxidase and superoxide dismutase in mycelia were determined, and the accumulation and scavenging of reactive oxygen species in the salt-sensitive isolates were more active than those in the salt-tolerant isolates. The results supply functional validations to RNA-seq and qRT-PCR analysis. This study provides novel insights into the salt-stress response of Cg isolates and provides a foundation for elucidation of the salt-tolerance mechanism of ECM fungi.
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页码:327 / 340
页数:13
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