Research keywords (6):
菌類学
, 樹木医学
, 森林植物学
, Mycology
, Tree Health
, Forest Botany
Research theme for competitive and other funds (24):
2022 - 2026 スギ・ヒノキに共生する菌根菌の多様性と林床植物との菌根菌ネットワークの解明
2022 - 2026 スギ・ヒノキに共生する菌根菌の多様性と林床植物との菌根菌ネットワークの解明
2022 - 2025 Exploiting the genes regulating ectomycorrhizal formation by using natural variation in Cenococcum geophilum
2018 - 2021 Elucidation of wood decay process of trees based on microbial community function
2018 - 2021 Mechanism of nitrogen supply to conifer seedlings from the symbiotic system of feathermoss, cyanobacteria, and mycorrhizal fungi in the regeneration on fallen logs
2017 - 2020 Molecular analysis of salt tolerance in an ectomycorrhizal fungus, Cenococcum geophilum
2013 - 2018 Dispersal and reproductive modes of fungal endophytes of trees and intra- and interspecific interactions of the fungi
2011 - 2015 Integrated understanding of hydraulic traits of trees and wilting mechanism in tree diseases
2012 - 2014 Establishment of a method for synthesizing artificial Shiro of Tricholoma matsutake using split-root system
2011 - 2014 森林の地面の下の多様性:外生菌根菌間の相互作用
2010 - 2012 Molecular ecological study of dissemination and reproduction of tree pathogenic fungi
2009 - 2011 Study of dynamic changes in the subterranean mycelial network and translocational domain during ectomycorrhizal symbiosis
2006 - 2007 Clarification of the mechanism of xylem embolism in pine wilt disease through non-destructive observations
2005 - 2007 Molecular ecological studies on ectomycorrhizal symbiotic system in pine forests
2002 - 2006 Mechanisms of symbiosis in rhizosphere
2001 - 2006 Studies on ectomycorrhizal symbiosis in forest ecosystem
2003 - 2004 マツタケ人工シロ形成手法の確立に関する研究
2001 - 2003 Ecological studies on Tricoloma matsutake in Japanese red pine forest
2001 - 2002 アカマツ-マツタケ共生系の形成・発達過程における共生者間の相互作用の解明
2000 - 2001 FACTORS OF DISEASE DEVELOPMENT CONTROL IN PINE WILT DISEASE
1999 - 2001 Comprehensive analysis on species and genetic diversity in warm temperate forests
1999 - 2000 樹木-菌根菌共生系における菌根菌間の相互作用の解明に関する研究
Studies on biological species of Armillaria
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Papers (78):
Djotan AKG, Matsushita N, Fukuda K. Within-site variations in soil physicochemical properties explained the spatiality and cohabitation of arbuscular mycorrhizal fungi in the roots of Cryptomeria japonica. Microbial Ecology. 2024. 87. 1
Win PM, Matsushita N, Fukuda K. Effects of sample storage temperature and duration on the detection of foliar endophytes of tea plants (Camellia sinensis L.) in summer and winter. FEMS Microbiology Letters. 2024
Djotan AKG, Matsushita N, Fukuda K. Year-round dynamics of arbuscular mycorrhizal fungi communities in the roots and surrounding soils of Cryptomeria japonica. Mycorrhiza. 2024. 34. 1-2. 119-130
Iwakiri A, Hirooka Y, Matsushita N, Fukuda K. Chionobium takahashii , gen. et sp. nov., associated with snow blight of conifers in Japan. Mycologia. 2024. 116. 2. 299-308
Zhang X, Zhang J, He J, Li M, Matsushita N, Geng Q, Lian C, Zhang S. Physiological and transcriptome responses of Pinus massoniana seedlings inoculated by various ecotypes of the ectomycorrhizal fungus Cenococcum geophilum during the early stage of drought stress. Journal of Fungi. 2024. 10. 1
KONG Dening, Tsuruta Momi, Li Chaofeng, Matsushita Norihisa, Lian Chunlan. Identifying genes regulating ectomycorrhizal formation from the natural variation of Cenococcum geophilum. The Japanese Forest Society Congress. 2023. 134. 631