Lichen 1. Solo fungal and algal partners
Tài liệu tham khảo
Hurst, 2019
Honegger, 2012, The symbiotic phenotype of lichen-forming ascomycetes and their endo- and epibionts, 9, 287
Armstrong, 2019, The lichen symbiosis: lichen “extremophiles” and survival on Mars, J. Astrobiol. Space Sci. Rev., 1, 378
Elbert, 2012, Contribution of cryptogamic covers to the global cycles of carbon and nitrogen, Nat. Geosci., 5, 459, 10.1038/ngeo1486
Asplund, 2017, How lichens impact on terrestrial community and ecosystem properties, Biol. Rev. Camb. Philos. Soc., 92, 1720, 10.1111/brv.12305
Moreira-Grez, 2019, The bacterial microbiome associated with arid biocrusts and the biogeochemical influence of biocrusts upon the underlying soil, Front. Microbiol., 10, 2143, 10.3389/fmicb.2019.02143
Osyczka, 2006, The lichen genus Cladonia (Cladoniaceae, lichenized Ascomycota) from Spitsbergen, 27, 207
Wietrzyk-Pełka, 2018, From barren substrate to mature tundra – lichen colonization in the forelands of Svalbard glaciers, Acta Soc. Bot. Pol., 87, 3599, 10.5586/asbp.3599
Honegger, 2018, Fossil lichens from the Lower Devonian and their bacterial and fungal epi- and endobionts, Biosystematics and Ecol. Ser., 34, 547
Lutzoni, 2018, Contemporaneous radiations of fungi and plants linked to symbiosis, Nat. Commun., 9, 5451, 10.1038/s41467-018-07849-9
Nelsen, 2020, No support for the emergence of lichens prior to the evolution of vascular plants, Geobiology, 18, 3, 10.1111/gbi.12369
Friedl, 2008, Photobionts, 9
Flemming, 2016, Biofilms: an emergent form of bacterial life, Nat. Rev. Microbiol., 14, 563, 10.1038/nrmicro.2016.94
Cernava, 2017, Deciphering functional diversification within the lichen microbiota by meta-omics, Microbiome, 5, 82, 10.1186/s40168-017-0303-5
Almendras, 2018, Nitrogen-fixing bacteria associated with Peltigera cyanolichens and Cladonia chlorolichens, Molecules, 23, 3077, 10.3390/molecules23123077
Grube, 2015, Exploring functional contexts of symbiotic sustain within lichen-associated bacteria by comparative omics, ISME J, 9, 412, 10.1038/ismej.2014.138
Spribille, 2016, Basidiomycete yeasts in the cortex of ascomycete macrolichens, Science, 353, 488, 10.1126/science.aaf8287
Cernajova, 2019, The first survey of Cystobasidiomycete yeasts in the lichen genus Cladonia; with the description of Lichenozyma pisutiana gen. nov., sp. nov, Fungal Biol., 123, 625, 10.1016/j.funbio.2019.05.006
Tuovinen, 2019, Two basidiomycete fungi in the cortex of wolf lichens, Curr. Biol., 29, 476, 10.1016/j.cub.2018.12.022
Oberwinkler, 2017, Yeasts in Pucciniomycotina, Mycol. Prog., 16, 831, 10.1007/s11557-017-1327-8
Lendemer, 2019, A taxonomically broad metagenomic survey of 339 species spanning 57 families suggests cystobasidiomycete yeasts are not ubiquitous across all lichens, Am. J. Bot., 106, 1, 10.1002/ajb2.1339
Mark, 2020, Contrasting co-occurrence patterns of photobiont and cystobasidiomycete yeast associated with common epiphytic lichen species, New Phytol., 227, 1362, 10.1111/nph.16475
Arakawa-Kobayashi, 2004, A study of lipid secretion from the lichen symbionts, ascomycetous fungus Myelochroa leucotyliza and green alga Trebouxia sp, J. Struct. Biol., 146, 401, 10.1016/j.jsb.2004.01.016
Goodenough, 2021, 58
Roth, 2021, Lichen 3. Outer layers, Algal Res., 56, 10.1016/j.algal.2021.102332
Goodenough, 2021, Lichen 4. The Algal Layer, Algal Res., 58, 10.1016/j.algal.2021.102355
Goodenough, 2021, Lichen 5. Medullary and bacterial biofil layers, Algal Res., 58, 10.1016/j.algal.2021.102333
Goodenough, 2020, Introduction to the lichen ultrastructure series, Algal Res., 51, 102026, 10.1016/j.algal.2020.102026
Škaloud, 2015, Assembling the challenging puzzle of algal biodiversity: species delimitation within the genus Asterochloris (Trebouxiophyceae, Chlorophyta), J. Phycol., 51, 507, 10.1111/jpy.12295
Armaleo, 2019, The lichen symbiosis re-viewed through the genomes of Cladonia grayi and its algal partner Asterochloris glomerata, BMC Genomics, 20, 605, 10.1186/s12864-019-5629-x
Culberson, 1992, Induction of a complete secondary-product pathway in a cultured lichen fungus, Exp. Mycol., 16, 52, 10.1016/0147-5975(92)90041-O
Hill, 1992, Lobe growth in lichen thalli, Symbiosis, 12, 43
Sancho, 2007, Slowest to fastest: extreme range in lichen growth rates supports their use as an indicator of climate change in Antarctica, Flora, 202, 667, 10.1016/j.flora.2007.05.005
Joneson, 2009, Compatibility and thigmotropism in the lichen symbiosis: a reappraisal, Symbiosis, 47, 109, 10.1007/BF03182294
Heuser, 1981, Preparing biological samples for stereomicroscopy by the quick-freeze, deep-etch, rotary-replication technique, Methods Cell Biol., 22, 97, 10.1016/S0091-679X(08)61872-5
Heuser, 2011, The origins and evolution of freeze-etch electron microscopy, J. Electron Microsc., 60, S3
Lee, 2015, Eisosome ultrastructure and evolution in fungi, microalgae, and lichens, Eukaryot. Cell, 14, 1017, 10.1128/EC.00106-15
Honegger, 1991, Cell wall structure and composition of cultured mycobionts from the lichens Cladonia macrophylla, Cladonia caespiticia, and Physcia stellaris (Lecanorales, Ascomycetes), Mycol. Res., 95, 905, 10.1016/S0953-7562(09)80085-3
Read, 2011, Exocytosis and growth do not occur only at hyphal tips, Mol. Microbiol., 81, 4, 10.1111/j.1365-2958.2011.07702.x
Harris, 2008, Branching of fungal hyphae: regulation, mechanisms and comparison with other branching systems, Mycologia, 100, 823, 10.3852/08-177
Ahmadjian, 1985, Artifical re-establishment of lichens IV. Comparison between natural and synthetic thalli of Usnea strigosa, Lichenologist, 17, 149, 10.1017/S0024282985000202
Armaleo, 1991, Experimental microbiology of lichens: mycelia fragmentation, a novel growth chamber, and the origins of thallus differentiation, Symbiosis, 11, 163
Trembley, 2002, Morphological and molecular analysis of early stages in the resynthesis of the lichen Baeomyces rufus, Mycol. Res., 106, 768, 10.1017/S0953756202006081
Meeßen, 2013, Recognition mechanisms during the pre-contact state of lichens: I. Mycobiont-photobiont interactions of the mycobiont of Fulgensia bracteata, Symbiosis, 59, 121, 10.1007/s13199-013-0232-4
Guzow-Krzemińska, 2013, In vitro culturing and resynthesis of the mycobiont Protoparmeliopsis muralis with algal bionts, Lichenologist, 45, 65, 10.1017/S002428291200059X
Athukorala, 2014, Identification and comparison of the 3 early stages of resynthesis for the lichen Cladonia rangiferina, Can. J. Microbiol., 60, 41, 10.1139/cjm-2013-0313
Sanders, 2014, Complete life cycle of the lichen fungus Calopadia puiggarii (Pilocarpaceae, Ascomycetes) documented in situ: propagule dispersal, establishment of symbiosis, thallus development, and formation of sexual and asexual reproductive structures, Am. J. Bot., 101, 1836, 10.3732/ajb.1400272
Rafat, 2015, Isolation and co-culturing of symbionts in the genus Usnea, Symbiosis, 66, 123, 10.1007/s13199-015-0343-1
Muggia, 2011, Photobiont association and genetic diversity of the optionally lichenized fungus Schizoxylon albescens, FEMS Microbiol. Ecol., 75, 255, 10.1111/j.1574-6941.2010.01002.x
Goodenough, 2014, The path to triacylglyceride obesity in the sta6 strain of Chlamydomonas reinhardtii, Eukaryot. Cell, 13, 591, 10.1128/EC.00013-14
Goodenough, 2019, Acidocalcisomes: ultrastructure, biogenesis, and distribution in microbial eukaryotes, Protist, 170, 287, 10.1016/j.protis.2019.05.001
Peska, 2008, Changes in chloroplast structure in lichenized algae, Symbiosis, 46, 153
Moya, 2018, Myrmecia israeliensis as the primary symbiotic microalga in squamulose lichens growing in European and Canary Island terricolous communities, Fottea, 18, 72, 10.5507/fot.2017.022
Mackinder, 2016, A repeat protein links Rubisco to form the eukaryotic carbon-concentrating organelle, Proc. Natl. Acad. Sci. U. S. A., 113, 5958, 10.1073/pnas.1522866113
Griffiths, 1980, The pyrenoid and its role in algal metabolism, Sci. Prog., 66, 537
Ahmadjian, 1982, Algal/fungal symbiosis
Joneson, 2011, Fungal and algal gene expression in early developmental stages of lichen-symbiosis, Mycologia, 103, 291, 10.3852/10-064
Honegger, 1981, Sporopollenin in the cell walls of Coccomyxa and Myrmecia phycobionts of various lichens: an ultrastructural and chemical investigation, Can. J. Bot., 59, 2713, 10.1139/b81-322
Brunner, 1985, Chemical and ultrastructural studies on the distribution of sporopolleninlike biopolymers in six genera of lichen phycobionts, Can. J. Bot., 63, 2221, 10.1139/b85-315
Metzger, 2007, Polyacetals based on polymethylsqualene diols, precursors of algaenan in Botryococcus braunii race B, Org. Geochem., 38, 566, 10.1016/j.orggeochem.2006.12.003
Scholz, 2014, Ultrastructure and composition of the Nannochloropsis gaditana cell wall, Eukaryot. Cell, 13, 1450, 10.1128/EC.00183-14
Weiss, 2012, Colony organization in the green alga Botryococcus braunii (race B) is specified by a complex extracellular matrix, Eukaryot. Cell, 11, 1424, 10.1128/EC.00184-12
Bayry, 2012, Hydrophobins — unique fungal proteins, PLoS Pathog., 8, 10.1371/journal.ppat.1002700
Honegger, 1984, Cytological aspects of the mycobiont-phycobiont relationship in lichens, Lichenologist, 16, 111, 10.1017/S0024282984000293
Piercey-Normore, 2011, Fungal farmers or algal escorts: lichen adaptation from the algal perspective, Mol. Ecol., 20, 3708, 10.1111/j.1365-294X.2011.05191.x
del Campo, 2013, The genetic structure of the cosmopolitan three-partner lichen Ramalina farinacea evidences the concerted diversification of symbionts, FEMS Microbiol. Ecol., 83, 310, 10.1111/j.1574-6941.2012.01474.x
Leavitt, 2015, Fungal specificity and selectivity for algae play a major role in determining lichen partnerships across diverse ecogeographic regions in the lichen-forming family Parmeliaceae (Ascomycota), Mol. Ecol., 24, 3779, 10.1111/mec.13271
Muggia, 2013, The symbiotic playground of lichen thalli--a highly flexible photobiont association in rock-inhabiting lichens, FEMS Microbiol. Ecol., 85, 313, 10.1111/1574-6941.12120
Vancurova, 2018, The complexity of symbiotic interactions influences the ecological amplitude of the host: a case study in Stereocaulon (lichenized Ascomycota), Mol. Ecol., 27, 3016, 10.1111/mec.14764
Miao, 2012, Expression of lec-1, a mycobiont gene encoding a galectin-like protein in the lichen Peltigera membranacea, Symbiosis, 57, 23, 10.1007/s13199-012-0175-1
Wang, 2014, Genome characteristics reveal the impact of lichenization on lichen-forming fungus Endocarpon pusillum Hedwig (Verrucariales, Ascomycota), BMC Genomics, 15, 34, 10.1186/1471-2164-15-34
Armaleo, 2011, Insights from the first putative biosynthetic gene cluster for a lichen depside and depsidone, Mycologia, 103, 741, 10.3852/10-335
Armaleo, 1995, Factors affecting depside and depsidone biosynthesis in a cultured lichen fungus, Cryptogam. Bot., 5, 14