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Tissue-specific study across the stem reveals the chemistry and transcriptome dynamics of birch bark.
Alonso-Serra, Juan; Safronov, Omid; Lim, Kean-Jin; Fraser-Miller, Sara J; Blokhina, Olga B; Campilho, Ana; Chong, Sun-Li; Fagerstedt, Kurt; Haavikko, Raisa; Helariutta, Ykä; Immanen, Juha; Kangasjärvi, Jaakko; Kauppila, Tiina J; Lehtonen, Mari; Ragni, Laura; Rajaraman, Sitaram; Räsänen, Riikka-Marjaana; Safdari, Pezhman; Tenkanen, Maija; Yli-Kauhaluoma, Jari T; Teeri, Teemu H; Strachan, Clare J; Nieminen, Kaisa; Salojärvi, Jarkko.
Afiliación
  • Alonso-Serra J; Organismal and Evolutionary Biology Research Programme, Faculty of Biological and Environmental Sciences, University of Helsinki, 00014, Helsinki, Finland.
  • Safronov O; Viikki Plant Science Centre, University of Helsinki, Helsinki, 00014, Helsinki, Finland.
  • Lim KJ; Institute of Biotechnology, University of Helsinki, Helsinki, 00014, Helsinki, Finland.
  • Fraser-Miller SJ; Organismal and Evolutionary Biology Research Programme, Faculty of Biological and Environmental Sciences, University of Helsinki, 00014, Helsinki, Finland.
  • Blokhina OB; Viikki Plant Science Centre, University of Helsinki, Helsinki, 00014, Helsinki, Finland.
  • Campilho A; Viikki Plant Science Centre, University of Helsinki, Helsinki, 00014, Helsinki, Finland.
  • Chong SL; Department of Agricultural Sciences, University of Helsinki, Helsinki, 00014, Helsinki, Finland.
  • Fagerstedt K; State Key Laboratory of Subtropical Silviculture, Zhejiang A&F University, Lin'an, 311300, Hangzhou, China.
  • Haavikko R; Drug Research Program, Division of Pharmaceutical Chemistry and Technology, Faculty of Pharmacy, University of Helsinki, 00014, Helsinki, Finland.
  • Helariutta Y; The Dodd-Walls Centre for Photonic and Quantum Technologies, Department of Chemistry, University of Otago, 9054, Dunedin, New Zealand.
  • Immanen J; Organismal and Evolutionary Biology Research Programme, Faculty of Biological and Environmental Sciences, University of Helsinki, 00014, Helsinki, Finland.
  • Kangasjärvi J; Viikki Plant Science Centre, University of Helsinki, Helsinki, 00014, Helsinki, Finland.
  • Kauppila TJ; Research Center in Biodiversity and Genetic Resources, Department of Biology, Faculty of Sciences, University of Porto, 4485-661, Porto, Portugal.
  • Lehtonen M; State Key Laboratory of Subtropical Silviculture, Zhejiang A&F University, Lin'an, 311300, Hangzhou, China.
  • Ragni L; Department of Food and Nutrition, University of Helsinki, 00014, Helsinki, Finland.
  • Rajaraman S; Organismal and Evolutionary Biology Research Programme, Faculty of Biological and Environmental Sciences, University of Helsinki, 00014, Helsinki, Finland.
  • Räsänen RM; Viikki Plant Science Centre, University of Helsinki, Helsinki, 00014, Helsinki, Finland.
  • Safdari P; Drug Research Program, Division of Pharmaceutical Chemistry and Technology, Faculty of Pharmacy, University of Helsinki, 00014, Helsinki, Finland.
  • Tenkanen M; Organismal and Evolutionary Biology Research Programme, Faculty of Biological and Environmental Sciences, University of Helsinki, 00014, Helsinki, Finland.
  • Yli-Kauhaluoma JT; Viikki Plant Science Centre, University of Helsinki, Helsinki, 00014, Helsinki, Finland.
  • Teeri TH; Institute of Biotechnology, University of Helsinki, Helsinki, 00014, Helsinki, Finland.
  • Strachan CJ; Sainsbury Laboratory, University of Cambridge, Cambridge, CB2 1LR, UK.
  • Nieminen K; Organismal and Evolutionary Biology Research Programme, Faculty of Biological and Environmental Sciences, University of Helsinki, 00014, Helsinki, Finland.
  • Salojärvi J; Viikki Plant Science Centre, University of Helsinki, Helsinki, 00014, Helsinki, Finland.
New Phytol ; 222(4): 1816-1831, 2019 06.
Article en En | MEDLINE | ID: mdl-30724367
Tree bark is a highly specialized array of tissues that plays important roles in plant protection and development. Bark tissues develop from two lateral meristems; the phellogen (cork cambium) produces the outermost stem-environment barrier called the periderm, while the vascular cambium contributes with phloem tissues. Although bark is diverse in terms of tissues, functions and species, it remains understudied at higher resolution. We dissected the stem of silver birch (Betula pendula) into eight major tissue types, and characterized these by a combined transcriptomics and metabolomics approach. We further analyzed the varying bark types within the Betulaceae family. The two meristems had a distinct contribution to the stem transcriptomic landscape. Furthermore, inter- and intraspecies analyses illustrated the unique molecular profile of the phellem. We identified multiple tissue-specific metabolic pathways, such as the mevalonate/betulin biosynthesis pathway, that displayed differential evolution within the Betulaceae. A detailed analysis of suberin and betulin biosynthesis pathways identified a set of underlying regulators and highlighted the important role of local, small-scale gene duplication events in the evolution of metabolic pathways. This work reveals the transcriptome and metabolic diversity among bark tissues and provides insights to its development and evolution, as well as its biotechnological applications.
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Texto completo: 1 Bases de datos: MEDLINE Asunto principal: Tallos de la Planta / Betula / Corteza de la Planta / Transcriptoma Idioma: En Revista: New Phytol Asunto de la revista: BOTANICA Año: 2019 Tipo del documento: Article País de afiliación: Finlandia

Texto completo: 1 Bases de datos: MEDLINE Asunto principal: Tallos de la Planta / Betula / Corteza de la Planta / Transcriptoma Idioma: En Revista: New Phytol Asunto de la revista: BOTANICA Año: 2019 Tipo del documento: Article País de afiliación: Finlandia