Cell type-specific transcriptome analysis in the early Arabidopsis thaliana embryo
Author(s) -
Daniel Slane,
Jixiang Kong,
Kenneth Wayne Berendzen,
Joachim Kilian,
Agnes Henschen,
Martina Kolb,
Markus Schmid,
Klaus Harter,
Ulríke Mayer,
Ive De Smet,
Martin Bayer,
Gerd Jürgens
Publication year - 2014
Publication title -
development
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 3.754
H-Index - 325
eISSN - 1477-9129
pISSN - 0950-1991
DOI - 10.1242/dev.116459
Subject(s) - biology , suspensor , transcriptome , arabidopsis thaliana , arabidopsis , multicellular organism , gene , population , microbiology and biotechnology , embryo , cell sorting , genetics , gene expression , zygote , cell , embryogenesis , demography , sociology , mutant
In multicellular organisms, cellular differences in gene activity are a prerequisite for differentiation and establishment of cell types. In order to study transcriptome profiles, specific cell types have to be isolated from a given tissue or even the whole organism. However, whole-transcriptome analysis of early embryos in flowering plants has been hampered by their size and inaccessibility. Here, we describe the purification of nuclear RNA from early stage Arabidopsis thaliana embryos using fluorescence-activated nuclear sorting (FANS) to generate expression profiles of early stages of the whole embryo, the proembryo and the suspensor. We validated our datasets of differentially expressed candidate genes by promoter-reporter gene fusions and in situ hybridization. Our study revealed that different classes of genes with respect to biological processes and molecular functions are preferentially expressed either in the proembryo or in the suspensor. This method can be used especially for tissues with a limited cell population and inaccessible tissue types. Furthermore, we provide a valuable resource for research on Arabidopsis early embryogenesis.
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