Tissue-specific transcriptome profiling of the Arabidopsis inflorescence stem reveals local cellular signatures

Author:

Shi Dongbo12ORCID,Jouannet Virginie1ORCID,Agustí Javier34ORCID,Kaul Verena1ORCID,Levitsky Victor56ORCID,Sanchez Pablo3ORCID,Mironova Victoria V567ORCID,Greb Thomas1ORCID

Affiliation:

1. Department of Developmental Physiology, Centre for Organismal Studies (COS), Heidelberg University, Im Neuenheimer Feld 230, 69120 Heidelberg, Germany

2. Japan Science and Technology Agency (JST), Saitama, Kawaguchi, Japan

3. Gregor Mendel Institute (GMI), Austrian Academy of Sciences, Vienna Biocenter (VBC), Dr. Bohr-Gasse 3, 1030 Vienna, Austria

4. Instituto de Biología Molecular y Celular de Plantas (IBMCP), Universitat Politècnica de València (UPV)-Consejo Superior de Investigaciones Científicas (CSIC), C/Enginyer Fausto Elio S/N. 46011 Valencia, Spain

5. Faculty of Natural Sciences, Novosibirsk State University, Novosibirsk, 630090, Russia

6. Department of Systems Biology, Institute of Cytology and Genetics, Siberian Branch, Russian Academy of Sciences, Novosibirsk, 630090, Russia

7. Department of Plant Systems Physiology, Institute for Water and Wetland Research, Radboud University, Heyendaalseweg 135, 6525 AJ Nijmegen, The Netherlands

Abstract

Abstract Genome-wide gene expression maps with a high spatial resolution have substantially accelerated plant molecular science. However, the number of characterized tissues and growth stages is still small due to the limited accessibility of most tissues for protoplast isolation. Here, we provide gene expression profiles of the mature inflorescence stem of Arabidopsis thaliana covering a comprehensive set of distinct tissues. By combining fluorescence-activated nucleus sorting and laser-capture microdissection with next-generation RNA sequencing, we characterized the transcriptomes of xylem vessels, fibers, the proximal and distal cambium, phloem, phloem cap, pith, starch sheath, and epidermis cells. Our analyses classified more than 15,000 genes as being differentially expressed among different stem tissues and revealed known and novel tissue-specific cellular signatures. By determining overrepresented transcription factor binding regions in the promoters of differentially expressed genes, we identified candidate tissue-specific transcriptional regulators. Our datasets predict the expression profiles of an exceptional number of genes and allow hypotheses to be generated about the spatial organization of physiological processes. Moreover, we demonstrate that information about gene expression in a broad range of mature plant tissues can be established at high spatial resolution by nuclear mRNA profiling. Tissue-specific gene expression values can be accessed online at https://arabidopsis-stem.cos.uni-heidelberg.de/.

Funder

European Research Council

ERC Consolidator grant

PLANTSTEMS

Deutsche Forschungsgemeinschaft

DFG, through a Heisenberg Professorship

Alexander von Humboldt-Stiftung

Japan Society for the Promotion of Science

JSPS Overseas Research Fellowships

European Molecular Biology Organization

Russian Foundation for Basic Research and the DFG

Russian Budget project

Publisher

Oxford University Press (OUP)

Subject

Cell Biology,Plant Science

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