|
Resolution: standard / high Figure 2.
Global analysis of gene expression in the root. (a) Major clusters of co-expressed genes called localized expression domains (LEDs) from
the analysis by Birnbaum et al. [5]. V, vascular tissue; E/C, endodermis and cortex. 1,2 and 3 refer to the dissection
zones in Figure 1c. (b-d) Our own analysis of the data from [5]. (b) A similarity tree calculated from the data in [5] using Euclidian distance with complete linkage. For all five tissues, all genes were
taken as coordinates, resulting in five points in a multidimensional space. The Euclidian
geometric distance between these points was calculated. To obtain the clustering,
the points closest in space (vasculature and cortex/endodermis) were defined as the
first cluster. All other points are subsequently added to this cluster based on the
point furthest away inside the cluster. (c) Two cluster diagrams showing the similarity
between tissue types using the Canberra similarity measure with complete linkage (see
[16]). For all five tissues, all genes were compared using a similarity measure between
experiments. Cell types were compared using log ratio of expression values (m = log2 (tissue a/tissue b)) versus log mean intensity of expression (a = log2 (tissue a * tissue b)/2) plots using the R statistical language [17,18]. After transforming the data, linearity was corrected using the Loess function, and
further analysis was done on residuals. The two tissues resembling each other most
(lateral root cap and epidermis) and least (vasculature and lateral root cap) in the
dendrograms are analyzed. The threshold for differential expression is three times
the standard deviation of the experiment with the least variance (lateral root cap
versus epidermis) on both scatter plots (dotted lines). Differentially regulated genes
are shown as filled circles outside the dotted lines. (d) Numbers of genes differentially
regulated under these restrictions shown as a Venn diagram.
Scheres et al. Genome Biology 2004 5:227 doi:10.1186/gb-2004-5-6-227 |