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1.
Winther Jennifer L. Arbuscular mycorrhizal symbionts in Botrychium (Ophioglossaceae) // Amer. J. Bot., 2007. Vol. 94, N 7.-С.1248-1255

2.
Cadmium distribution and effects on ultrastructure and chlorophyll status in photobionts and mycobionts of Xanthoria parietina // Microsc. Res. and Techn., 2005. Vol. 66, N 5.-С.229-238

3.
Description and identification of Alnus acuminata ectomycorrhizae from Argentinean alder stands // Mycologia, 2010. Vol. 102, N 6.-С.1263-1273

4.
Description and identification of Alnus acuminata ectomycorrhizae from Argentinean alder stands // Mycologia, 2010. Vol. 102, N 6.-С.1263-1273

5.
Differences between sensitivity of mycobiont and photobiont of Cladonia sp. lichens to different types of nitrogen exposure // Water, Air, and Soil Pollut., 2015. Vol. 226, N 8.-С.243/1-243/10

6.
Diversity of arbuscular mycorrhizal fungi associated with desert ephemerals in plant communities of Junggar Basin, northwest China // Appl. Soil Ecol., 2007. Vol. 35, N 1.-С.10-20

7.
Rao C.S. Ectomycorrhizal efficiency of various mycobionts with Pinus kesiya seedlings in forest and degraded soils // Proc. Indian Nat. Sci. Acad. B, 1996. Vol. 62, N 6.-С.427-434

8.
Hamada Effect of osmotic culture conditions on isolated lichen mycobionts // Bryologist, 1993. Vol. 96, N 4.-С.569-572

9.
Lichen responses to nitrogen and phosphorus additions can be explained by the different symbiont responses // New Phytol., 2011. Vol. 191, N 3.-С.795-805

10.
Southworth Linking mycorrhizas to sporocarps: A new species, Geopora cercocarpi, on Cercocarpus ledifolius (Rosaceae) // Mycologia, 2011. Vol. 103, N 6.-С.1194-1200

11.
Phenolic compounds from the cultured mycobionts of Graphis proserpens // Phytochemistry, 2011. Vol. 72, N 11-12.-С.1431-1435

12.
Scheidegger Structural and functional processes during water vapour uptake and desiccation in selected lichens with green algal photobionts // Planta, 1995. Vol. 197, N 2.-С.399-409

13.
Stewart Scott L. Symbiotic seed germination and evidence for in vitro mycobiont specificity in Spiranthes brevilabris (Orchidaceae) and its implications for species-level conservation // In Vitro Cell. and Dev. Biol. Plant, 2007. Vol. 43, N 3.-С.178-186

14.
Stewart Scott L. Symbiotic seed germination and evidence for in vitro mycobiont specificity in Spiranthes brevilabris (Orchidaceae) and its implications for species-level conservation // In Vitro Cell. and Dev. Biol. Plant, 2007. Vol. 43, N 3.-С.178-186

15.
Temporal changes in the ectomycorrhizal community in two soil horizons of a temperate oak forest // Appl. and Environ. Microbiol., 2008. Vol. 74, N 18.-С.5792-5801

16.
Colpaert Jan V. The ingestad concept in ectomycorrhizal research: Possibilities and limitations // Physiol. plant., 1999. Vol. 105, N 2.-С.233-238

17.
Colpaert Jan V. The ingestad concept in ectomycorrhizal research: Possibilities and limitations // Physiol. plant., 1999. Vol. 105, N 2.-С.233-238

18.
Ahmadjian The lichen photobiont - what can it tell us about lichen systematics? // Bryologist, 1993. Vol. 96, N 3.-С.310-313

19.
Lucia Type III polyketide synthases in lichen mycobionts // Fungal Biol., 2010. Vol. 114, N 4.-С.379-385

20.
Tucker Shirley C. Ultratructural features of phycobionts and mycobionts in thirteen crustose lichen species from Louisiana // Amer. J. Bot., 1989. Vol. 76, N 6 Suppl..-С.16

 1-20    21-29 
 




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