Automated Author ProfileHofvander, Per
Hofvander, Per
Current S-Index
Sum of Dataset Indices for all datasets
Average Dataset Index per Dataset
Average Dataset Index per dataset
Total Datasets
Total datasets for this author
Average FAIR Score
Average FAIR Score per dataset
Total Citations
Total citations to the author's datasets
Total Mentions
Total mentions of the author's datasets
S-Index Interpretation
The S-Index (Sharing Index) is a comprehensive metric that represents the cumulative impact of all your datasets. It is calculated as the sum of Dataset Index scores across all your claimed datasets.
What it means:
- A higher S-index indicates greater overall impact of your datasets relative to typical datasets in their fields of research
- The S-Index grows as you add more datasets or as existing datasets gain more citations and mentions
- It provides a single number to track your research data impact over time
Current S-Index: 4.0 (sum of 6 datasets Dataset Index scores)
More information here.
S-Index Over Time
Cumulative Citations Over Time
Cumulative Mentions Over Time
Datasets
Additional file 1: Table S1 (excel file). Zygosity tests of leaves from wheat lines transformed with oat WRI1 (AsWRI1). Plants developed from segregating seeds. Bombardment codes (B = Bombardment Number; R = Replicate Number and P = Plant Number).
Authors
- Grimberg, Åsa ;
- Wilkinson, Mark ;
- Snell, Per ;
- Vos, Rebecca P. De ;
- González-Thuillier, Irene ;
- Tawfike, Ahmed ;
- Ward, Jane L. ;
- Carlsson, Anders S. ;
- Shewry, Peter ;
- Hofvander, Per
Additional file 1: Table S1 (excel file). Zygosity tests of leaves from wheat lines transformed with oat WRI1 (AsWRI1). Plants developed from segregating seeds. Bombardment codes (B = Bombardment Number; R = Replicate Number and P = Plant Number).
Authors
- Grimberg, Åsa ;
- Wilkinson, Mark ;
- Snell, Per ;
- Vos, Rebecca P. De ;
- González-Thuillier, Irene ;
- Tawfike, Ahmed ;
- Ward, Jane L. ;
- Carlsson, Anders S. ;
- Shewry, Peter ;
- Hofvander, Per
Additional file 2: Table S2 (excel file). List of differentially expressed genes in AsWRI1-wheat (multiple insert line) endosperm (including starchy endosperm, aleurone cells, seed coat and pericarp) as compared to in control presented in Fig. 9 at time points 10, 18 and 26 days post anthesis (dpa). The results are shown from three biological replicates. Values are fold change (FC) of transcripts per kilobase million (TPM) compared to control. The closest identified homolog in Arabidopsis is given as well as the Arabidopsis gene symbol and proposed enzymatic role. All Arabidopsis data were retrieved from TAIR (https://www.arabidopsis.org/index.jsp).
Authors
- Grimberg, Åsa ;
- Wilkinson, Mark ;
- Snell, Per ;
- Vos, Rebecca P. De ;
- González-Thuillier, Irene ;
- Tawfike, Ahmed ;
- Ward, Jane L. ;
- Carlsson, Anders S. ;
- Shewry, Peter ;
- Hofvander, Per
Additional file 2: Table S2 (excel file). List of differentially expressed genes in AsWRI1-wheat (multiple insert line) endosperm (including starchy endosperm, aleurone cells, seed coat and pericarp) as compared to in control presented in Fig. 9 at time points 10, 18 and 26 days post anthesis (dpa). The results are shown from three biological replicates. Values are fold change (FC) of transcripts per kilobase million (TPM) compared to control. The closest identified homolog in Arabidopsis is given as well as the Arabidopsis gene symbol and proposed enzymatic role. All Arabidopsis data were retrieved from TAIR (https://www.arabidopsis.org/index.jsp).
Authors
- Grimberg, Åsa ;
- Wilkinson, Mark ;
- Snell, Per ;
- Vos, Rebecca P. De ;
- González-Thuillier, Irene ;
- Tawfike, Ahmed ;
- Ward, Jane L. ;
- Carlsson, Anders S. ;
- Shewry, Peter ;
- Hofvander, Per
Log 2 ratios and RPKM values of differentially expressed genes. Table of genes shown to be differential regulated (according to chosen criteria, see Material and Methods) in leaves expressing WRI1 from Arabidopsis embryo (AtWRI1), potato embryo (StWRI1em), oat endosperm (AsWRI1es), poplar stem (PtWRI1cm), and nutsedge tuber parenchyma (Ce) in pairwise comparisons to transformed control. Genes are grouped into functional categories (CAR; carbohydrates, CYT; cytochromes, DEF; defence, FAS; fatty acid synthesis, GLY; glycolysis, LIP; lipids, MRE; mitochondrial respiration, OTH; other genes, PHO; photosynthesis, PPP; pentose phosphate pathway, STA; starch, STR; stress, TRA; transport, TRF; transcription factors, UNK; unknown. At numbers represent closest Arabidopsis gene homologs of N. benthamiana transcripts from the TAIR database. (XLSX 329Â kb)
Authors
- Ă Sa Grimberg ;
- Carlsson, Anders ;
- Marttila, Salla ;
- Rishikesh Bhalerao ;
- Hofvander, Per
Log 2 ratios and RPKM values of differentially expressed genes. Table of genes shown to be differential regulated (according to chosen criteria, see Material and Methods) in leaves expressing WRI1 from Arabidopsis embryo (AtWRI1), potato embryo (StWRI1em), oat endosperm (AsWRI1es), poplar stem (PtWRI1cm), and nutsedge tuber parenchyma (Ce) in pairwise comparisons to transformed control. Genes are grouped into functional categories (CAR; carbohydrates, CYT; cytochromes, DEF; defence, FAS; fatty acid synthesis, GLY; glycolysis, LIP; lipids, MRE; mitochondrial respiration, OTH; other genes, PHO; photosynthesis, PPP; pentose phosphate pathway, STA; starch, STR; stress, TRA; transport, TRF; transcription factors, UNK; unknown. At numbers represent closest Arabidopsis gene homologs of N. benthamiana transcripts from the TAIR database. (XLSX 329Â kb)
Authors
- Ă Sa Grimberg ;
- Carlsson, Anders ;
- Marttila, Salla ;
- Rishikesh Bhalerao ;
- Hofvander, Per