Caccia M., Marro N., Novák V., López Ráez J. A., Castillo P. & Janoušková M. 2024: Divergent colonization traits, convergent benefits: different species of arbuscular mycorrhizal fungi alleviate Meloidogyne incognita damage in tomato. Mycorrhiza 34, 145 - 158. https://doi.org/10.1007/s00572-024-01139-7 |
Janoušková M. 2024: Spojenci pod zemí. Přírodovědci.cz 13, 22 - 23. https://www.prirodovedci.cz/magazin |
Matinizadeh M., Nouri E., Bayranvand M., Kolaříková Z. & Janoušková M. 2024: Arbuscular mycorrhiza and rhizosphere soil enzymatic activities as modulated by grazing intensity and plant species identity in a semi-arid grassland. Rhizosphere 30, 1 - 10. doi:10.1016/j.rhisph.2024.100893 |
Buil P. A., Jansa J., Blažková A., Holubík O., Duffková R., Rozmoš M., Püschel D., Kotianová M. & Janoušková M. 2023: Infectivity and symbiotic efficiency of native arbuscular mycorrhizal fungi from high‑input arable soils. Plant and Soil 482, 627 - 645. doi:10.1007/s11104-022-05715-8 |
Janoušková M. 2023: Nelehký život mykorhizních hub v orných půdách. Botanika 11, 19 - 21. |
Janoušková M., Remke M., Johnson N. C., Blažková A., Rydlová J., Kolaříková Z. & Bowker M. A. 2023: Transferred communities of arbuscular mycorrhizal fungal persist in novel climates and soils. Soil Biology & Biochemistry 187, 1 - 13. doi:10.1016/j.soilbio.2023.109190 |
Boussageon R., Marro N., Janoušková M., Brulé D., Wipf D. & Courty P. E. 2022: The fine‐tuning of mycorrhizal pathway in sorghum depends on both nitrogen−phosphorus availability and the identity of the fungal partner. Plant Cell and Environment 45, 3354 - 3366. doi:0.1111/pce.14426 |
Fernández N., Knoblochová T., Kohout P., Janoušková M., Cajthaml T., Frouz J. & Rydlová J. 2022: Asymmetric Interaction Between Two Mycorrhizal Fungal Guilds and Consequences for the Establishment of Their Host Plants. Frontiers in Plant Science 13, 1 - 13. doi:10.3389/fpls.2022.873204 |
Forczek S. T., Bukovská P., Püschel D., Janoušková M., Blažková A. & Jansa J. 2022: Drought rearranges preferential carbon allocation to arbuscular mycorrhizal community members co-inhabiting roots of Medicago truncatula. Environmental and Experimental Botany 199, 1 - 11. doi:doi.org/10.1016/j.envexpbot.2022.104897 |
Marro N., Grilli G., Soteras F., Caccia M., Longo S., Cofré N., Borda V., Burni M., Janoušková M. & Urcelay C. 2022: The effects of arbuscular mycorrhizal fungal species and taxonomic groups on stressed and unstressed plants: a global meta-analysis. New Phytologist 235, 320 - 332. doi:10.1111/nph.18102 |
Marro N., Lidoy J., Chico M. A., Rial C., García J., Varela R. M., Macías F. A., Pozo M. J., Janoušková M. & López-Ráez J. A. 2022: Strigolactones: New players in the nitrogen–phosphorus signalling interplay. Plant Cell and Environment 45, 512 - 527. doi:10.1111/pce.14212 |
Blažková A., Jansa J., Püschel D., Vosátka M. & Janoušková M. 2021: Is mycorrhiza functioning influenced by the quantitative composition of the mycorrhizal fungal community? Soil Biology & Biochemistry 157, 1 - 10. doi:10.1016/j.soilbio.2021.108249 |
Janoušková M. & Caklová P. 2020: Molecular quantification of arbuscular mycorrhizal fungal root colonization. In: Ferrol N. & Lanfranco L (eds.) Arbuscular Mycorrhizal Fungi. Methods and Protocols. Springer Science + Business Media, New York., 73 - 91. https://doi.org/10.1007/978-1-0716-0603-2 |
Nouri E., Matinizadeh M., Moshki A., Zolfaghari A., Rajaei S. & Janoušková M. 2020: Arbuscular mycorrhizal fungi benefit drought-stressed Salsola laricina. Plant Ecology 221, 683 - 694. doi:10.1007/s11258-020-01042-z |
Duffková R., Fučík P., Jurkovská L. & Janoušková M. 2019: Experimental evaluation of the potential of arbuscular mycorrhiza to modify nutrient leaching in three arable soils located on one slope. Applied Soil Ecology 143, 116 - 125. https://doi.org/10.1016/j.apsoil.2019.06.001 |
Ma J., Janoušková M., Ye L., Bai L. Q., Dong R. R., Yan Y., Yu X. C., Zou Z. R., Li Y. S. & He C. X. 2019: Role of arbuscular mycorrhiza in alleviating the effect of cold on the photosynthesis of cucumber seedlings. Photosynthetica 57, 86 - 95. doi:10.32615/ps.2019.001 |
Rocha I., Ma Y., Carvalho M. F., Magalhães C., Janoušková M., Vosátka M., Freitas H. & Oliveira R. S. 2019: Seed coating with inocula of arbuscular mycorrhizal fungi and plant growth promoting rhizobacteria for nutritional enhancement of maize under different fertilisation regimes. Archives of Agronomy and Soil Science 65, 31 - 43. doi:10.1080/03650340.2018.1479061 |
Voříšková A., Jansa J., Püschel D., Vosátka M., Šmilauer P. & Janoušková M. 2019: Abiotic contexts consistently influence mycorrhiza functioning independently of the composition of synthetic arbuscular mycorrhizal fungal communities. Mycorrhiza 29, 127 - 139. doi:10.1007/s00572-018-00878-8 |
Janoušková M., Kohout P., Moradi J., Doubková P., Frouz J., Vosolsobě S. & Rydlová J. 2018: Microarthropods influence the composition of rhizospheric fungal communities by stimulating specific taxa. Soil Biology & Biochemistry 122, 120 - 130. https://doi.org/10.1016/j.soilbio.2018.04.016 |
Ma J., Janoušková M., Yan Y., Yu X., Zou Z., Li Y. & He C. 2018: The photoprotective role of arbuscular mycorrhizal fungi (AMF) in cucumber seedlings under cold stress. In: Du Y., Doi M. & Son J. E. (eds) Acta Horticulturae, book series, International Societas Horticultural Science, Leuven 1208, 305 - 318. |