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LIBRIS Formathandbok  (Information om MARC21)
FältnamnIndikatorerMetadata
00008699naa a2201105 4500
001oai:DiVA.org:su-212130
003SwePub
008221201s2022 | |||||||||||000 ||eng|
009oai:DiVA.org:umu-194524
009oai:DiVA.org:uu-512775
009oai:slubar.slu.se:120093
024a https://urn.kb.se/resolve?urn=urn:nbn:se:su:diva-2121302 URI
024a https://doi.org/10.1073/pnas.21188521192 DOI
024a https://urn.kb.se/resolve?urn=urn:nbn:se:umu:diva-1945242 URI
024a https://urn.kb.se/resolve?urn=urn:nbn:se:uu:diva-5127752 URI
024a https://res.slu.se/id/publ/1200932 URI
040 a (SwePub)sud (SwePub)umud (SwePub)uud (SwePub)slu
041 a engb eng
042 9 SwePub
072 7a ref2 swepub-contenttype
072 7a art2 swepub-publicationtype
100a Law, Simon Ru Swedish University of Agricultural Sciences,Sveriges lantbruksuniversitet,Institutionen för skoglig genetik och växtfysiologi,Department of Forest Genetics and Plant Physiology4 aut0 (Swepub:umu)sila0026
2451 0a Metatranscriptomics captures dynamic shifts in mycorrhizal coordination in boreal forests
264 c 2022-06-21
264 1b Proceedings of the National Academy of Sciences,c 2022
338 a print2 rdacarrier
520 a Carbon storage and cycling in boreal forests—the largest terrestrial carbon store—is moderated by complex interactions between trees and soil microorganisms. However, existing methods limit our ability to predict how changes in environmental conditions will alter these associations and the essential ecosystem services they provide. To address this, we developed a metatranscriptomic approach to analyze the impact of nutrient enrichment on Norway spruce fine roots and the community structure, function, and tree–microbe coordination of over 350 root-associated fungal species. In response to altered nutrient status, host trees redefined their relationship with the fungal community by reducing sugar efflux carriers and enhancing defense processes. This resulted in a profound restructuring of the fungal community and a collapse in functional coordination between the tree and the dominant Basidiomycete species, and an increase in functional coordination with versatile Ascomycete species. As such, there was a functional shift in community dominance from Basidiomycetes species, with important roles in enzymatically cycling recalcitrant carbon, to Ascomycete species that have melanized cell walls that are highly resistant to degradation. These changes were accompanied by prominent shifts in transcriptional coordination between over 60 predicted fungal effectors, with more than 5,000 Norway spruce transcripts, providing mechanistic insight into the complex molecular dialogue coordinating host trees and their fungal partners. The host–microbe dynamics captured by this study functionally inform how these complex and sensitive biological relationships may mediate the carbon storage potential of boreal soils under changing nutrient conditions. 
650 7a NATURVETENSKAPx Biologix Biokemi och molekylärbiologi0 (SwePub)106022 hsv//swe
650 7a NATURAL SCIENCESx Biological Sciencesx Biochemistry and Molecular Biology0 (SwePub)106022 hsv//eng
650 7a NATURVETENSKAPx Biologix Annan biologi0 (SwePub)106992 hsv//swe
650 7a NATURAL SCIENCESx Biological Sciencesx Other Biological Topics0 (SwePub)106992 hsv//eng
650 7a LANTBRUKSVETENSKAPERx Lantbruksvetenskap, skogsbruk och fiskex Skogsvetenskap0 (SwePub)401042 hsv//swe
650 7a AGRICULTURAL SCIENCESx Agriculture, Forestry and Fisheriesx Forest Science0 (SwePub)401042 hsv//eng
653 a carbon storage
653 a ectomycorrhiza
653 a fungal effectors
653 a host–microbe
653 a metatranscriptome
653 a transcriptome
653 a carbon
653 a Article
653 a Ascomycetes
653 a Basidiomycetes
653 a carbon cycling
653 a community structure
653 a controlled study
653 a environmental impact
653 a eutrophication
653 a fungal cell wall
653 a fungal community
653 a metatranscriptomics
653 a molecular dynamics
653 a mycorrhiza
653 a nonhuman
653 a Norway
653 a plant gene
653 a plant root
653 a prediction
653 a spruce
653 a taiga
653 a chemistry
653 a ecosystem
653 a forest
653 a metabolism
653 a microbiology
653 a physiology
653 a soil
653 a tree
653 a Basidiomycota
653 a Forests
653 a Mycorrhizae
653 a Picea
653 a Soil Microbiology
653 a Trees
700a Serrano, Alonso R.u Swedish University of Agricultural Sciences,Sveriges lantbruksuniversitet,Institutionen för skoglig genetik och växtfysiologi,Department of Forest Genetics and Plant Physiology4 aut
700a Daguerre, Yohannu Swedish University of Agricultural Sciences,Sveriges lantbruksuniversitet,Institutionen för skoglig genetik och växtfysiologi,Department of Forest Genetics and Plant Physiology4 aut
700a Sundh, John,d 1981-u Stockholms universitet,Institutionen för biokemi och biofysik,Science for Life Laboratory (SciLifeLab),Department of Biochemistry and Biophysics, National Bioinformatics Infrastructure Sweden, Science for Life Laboratory, Stockholm University,Stockholm Univ, Dept Biochem & Biophys, Natl Bioinformat Infrastruct Sweden, Sci Life Lab, SE-17121 Solna, Sweden.4 aut0 (Swepub:su)jola3909
700a Schneider, Andreas N.u Umeå universitet,Institutionen för fysiologisk botanik,Umeå Plant Science Centre (UPSC),Umeå Univ, Dept Plant Physiol, Umeå Plant Sci Ctr, S-90187 Umeå, Sweden.4 aut0 (Swepub:umu)ansc0061
700a Stangl, Zsofia R.u Swedish University of Agricultural Sciences,Sveriges lantbruksuniversitet,Umeå universitet,Institutionen för fysiologisk botanik,Umeå Plant Science Centre (UPSC),Umeå Plant Science Centre, Department of Forest Genetics and Plant Physiology, Swedish University of Agricultural Sciences,Swedish Univ Agr Sci, Umeå Plant Sci Ctr, Dept Forest Genet & Plant Physiol, S-90183 Umeå, Sweden.;Swedish Univ Agr Sci, Dept Forest Ecol & Management, S-90183 Umeå, Sweden.,Institutionen för skoglig genetik och växtfysiologi,Institutionen för skogens ekologi och skötsel,Department of Forest Genetics and Plant Physiology,Department of Forest Ecology and Management4 aut0 (Swepub:umu)zsst0001
700a Castro, Davidu Swedish University of Agricultural Sciences,Sveriges lantbruksuniversitet,Institutionen för skoglig genetik och växtfysiologi,Department of Forest Genetics and Plant Physiology4 aut
700a Grabherr, Manfredu Uppsala universitet,Science for Life Laboratory, SciLifeLab,Molekylär evolution,National Bioinformatics Infrastructure4 aut0 (Swepub:uu)mangr224
700a Näsholm, Torgnyu Swedish University of Agricultural Sciences,Sveriges lantbruksuniversitet,Institutionen för skogens ekologi och skötsel,Department of Forest Ecology and Management4 aut0 (Swepub:slu)48242
700a Street, Nathaniel,d 1979-u Umeå universitet,Institutionen för fysiologisk botanik,Umeå Plant Science Centre (UPSC),Umeå Univ, Dept Plant Physiol, Umeå Plant Sci Ctr, S-90187 Umeå, Sweden.4 aut0 (Swepub:umu)rona0006
700a Hurry, Vaughanu Swedish University of Agricultural Sciences,Sveriges lantbruksuniversitet,Institutionen för skoglig genetik och växtfysiologi,Department of Forest Genetics and Plant Physiology4 aut0 (Swepub:slu)102936
710a Sveriges lantbruksuniversitetb Institutionen för skoglig genetik och växtfysiologi4 org
710a Sveriges lantbruksuniversitet
773t Proceedings of the National Academy of Sciences of the United States of Americad : Proceedings of the National Academy of Sciencesg 119:26q 119:26x 0027-8424x 1091-6490
856u https://doi.org/10.1073/pnas.2118852119y Fulltext
856u https://uu.diva-portal.org/smash/get/diva2:1802520/FULLTEXT01.pdfx primaryx Raw objecty fulltext:print
856u https://pub.epsilon.slu.se/id/eprint/30149/contentsx primaryx Raw objectx freey FULLTEXT
8564 8u https://urn.kb.se/resolve?urn=urn:nbn:se:su:diva-212130
8564 8u https://doi.org/10.1073/pnas.2118852119
8564 8u https://urn.kb.se/resolve?urn=urn:nbn:se:umu:diva-194524
8564 8u https://urn.kb.se/resolve?urn=urn:nbn:se:uu:diva-512775
8564 8u https://res.slu.se/id/publ/120093

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