Automated Author Profile

Littleford-Colquhoun, Bethan L.

Current S-Index

6.6

Sum of Dataset Indices for all datasets

Average Dataset Index per Dataset

0.8

Average Dataset Index per dataset

Total Datasets

8

Total datasets for this author

Average FAIR Score

84.6%

Average FAIR Score per dataset

Total Citations

8

Total citations to the author's datasets

Total Mentions

0

Total mentions of the author's datasets

S-Index Interpretation

S-Index Over Time

Cumulative Citations Over Time

Cumulative Mentions Over Time

Datasets

Sequence counts per food-taxon per sample for the rarefied dataset. from Body size modulates the extent of seasonal diet switching by large mammalian herbivores in Yellowstone National Park

The table of sequence counts per food-taxon per sample for the rarefied dataset. A total of 685 unique sequences were retained following rarefication across 370 fecal samples. For each sequence we provide the taxonomic family name, genus name, species name, functional plant group, nucleotide sequence, plant ID, and total number of rarefied reads identified across all fecal samples (columns A:G). For each fecal sample (columns H:NM) we identify the large-herbivore species the fecal sample was collected from, the season it was collected, and the fecal sample ID.

Authors

  • Littleford-Colquhoun, Bethan L. ;
  • Geremia, Chris ;
  • McGarvey, Lauren M. ;
  • Merkle, Jerod A ;
  • Hoff, Hannah K ;
  • Anderson, Heidi ;
  • Segal, Carlisle R ;
  • Kartzinel, Rebecca Y ;
  • Maywar, Ian J ;
  • Nantais, Natalie ;
  • Moore, Camela ;
  • Kartzinel, Tyler
1 Citation0 Mentions85% FAIR0.9 Dataset Index
10.6084/m9.figshare.268798702024

Sequence counts per food-taxon per sample for the rarefied dataset. from Body size modulates the extent of seasonal diet switching by large mammalian herbivores in Yellowstone National Park

The table of sequence counts per food-taxon per sample for the rarefied dataset. A total of 685 unique sequences were retained following rarefication across 370 fecal samples. For each sequence we provide the taxonomic family name, genus name, species name, functional plant group, nucleotide sequence, plant ID, and total number of rarefied reads identified across all fecal samples (columns A:G). For each fecal sample (columns H:NM) we identify the large-herbivore species the fecal sample was collected from, the season it was collected, and the fecal sample ID.

Authors

  • Littleford-Colquhoun, Bethan L. ;
  • Geremia, Chris ;
  • McGarvey, Lauren M. ;
  • Merkle, Jerod A ;
  • Hoff, Hannah K ;
  • Anderson, Heidi ;
  • Segal, Carlisle R ;
  • Kartzinel, Rebecca Y ;
  • Maywar, Ian J ;
  • Nantais, Natalie ;
  • Moore, Camela ;
  • Kartzinel, Tyler
1 Citation0 Mentions85% FAIR0.8 Dataset Index
10.6084/m9.figshare.26879870.v12024

Local plant reference library from Body size modulates the extent of seasonal diet switching by large mammalian herbivores in Yellowstone National Park

The local plant reference library used to assign fecal sample sequence IDs. The local Yellowstone plant reference library included 191 unique trnL-P6 sequences. For each unique trnL-P6 sequence we provide the plant sequence ID, the family name, genus name, species name, the sequence IDs that were merged, the taxonomic rank that each sequence was identified to, the taxid, and the nucleotide sequence.

Authors

  • Littleford-Colquhoun, Bethan L. ;
  • Geremia, Chris ;
  • McGarvey, Lauren M. ;
  • Merkle, Jerod A ;
  • Hoff, Hannah K ;
  • Anderson, Heidi ;
  • Segal, Carlisle R ;
  • Kartzinel, Rebecca Y ;
  • Maywar, Ian J ;
  • Nantais, Natalie ;
  • Moore, Camela ;
  • Kartzinel, Tyler
1 Citation0 Mentions85% FAIR0.8 Dataset Index
10.6084/m9.figshare.268798732024

Local plant reference library from Body size modulates the extent of seasonal diet switching by large mammalian herbivores in Yellowstone National Park

The local plant reference library used to assign fecal sample sequence IDs. The local Yellowstone plant reference library included 191 unique trnL-P6 sequences. For each unique trnL-P6 sequence we provide the plant sequence ID, the family name, genus name, species name, the sequence IDs that were merged, the taxonomic rank that each sequence was identified to, the taxid, and the nucleotide sequence.

Authors

  • Littleford-Colquhoun, Bethan L. ;
  • Geremia, Chris ;
  • McGarvey, Lauren M. ;
  • Merkle, Jerod A ;
  • Hoff, Hannah K ;
  • Anderson, Heidi ;
  • Segal, Carlisle R ;
  • Kartzinel, Rebecca Y ;
  • Maywar, Ian J ;
  • Nantais, Natalie ;
  • Moore, Camela ;
  • Kartzinel, Tyler
1 Citation0 Mentions85% FAIR0.8 Dataset Index
10.6084/m9.figshare.26879873.v12024

Supplementary Material from Body size modulates the extent of seasonal diet switching by large mammalian herbivores in Yellowstone National Park

Dataset S4.xlsx

Authors

  • Littleford-Colquhoun, Bethan L. ;
  • Geremia, Chris ;
  • McGarvey, Lauren M. ;
  • Merkle, Jerod A ;
  • Hoff, Hannah K ;
  • Anderson, Heidi ;
  • Segal, Carlisle R ;
  • Kartzinel, Rebecca Y ;
  • Maywar, Ian J ;
  • Nantais, Natalie ;
  • Moore, Camela ;
  • Kartzinel, Tyler
1 Citation0 Mentions85% FAIR0.8 Dataset Index
10.6084/m9.figshare.268798792024

Supplementary Material from Body size modulates the extent of seasonal diet switching by large mammalian herbivores in Yellowstone National Park

Dataset S4.xlsx

Authors

  • Littleford-Colquhoun, Bethan L. ;
  • Geremia, Chris ;
  • McGarvey, Lauren M. ;
  • Merkle, Jerod A ;
  • Hoff, Hannah K ;
  • Anderson, Heidi ;
  • Segal, Carlisle R ;
  • Kartzinel, Rebecca Y ;
  • Maywar, Ian J ;
  • Nantais, Natalie ;
  • Moore, Camela ;
  • Kartzinel, Tyler
1 Citation0 Mentions85% FAIR0.8 Dataset Index
10.6084/m9.figshare.26879879.v12024

The table of sequence counts per food-taxon per sample for the full dataset. from Body size modulates the extent of seasonal diet switching by large mammalian herbivores in Yellowstone National Park

The table of sequence counts per food-taxon per sample for the full dataset. A total of 972 unique sequences were identified across 370 fecal samples. For each sequence we provide the taxonomic family name, genus name, species name, nucleotide sequence, plant ID, and total number of reads identified across all fecal samples (columns A:F). For each fecal sample (columns G:NL) we identify the large-herbivore species the fecal sample was collected from, the season it was collected, and the fecal sample ID.

Authors

  • Littleford-Colquhoun, Bethan L. ;
  • Geremia, Chris ;
  • McGarvey, Lauren M. ;
  • Merkle, Jerod A ;
  • Hoff, Hannah K ;
  • Anderson, Heidi ;
  • Segal, Carlisle R ;
  • Kartzinel, Rebecca Y ;
  • Maywar, Ian J ;
  • Nantais, Natalie ;
  • Moore, Camela ;
  • Kartzinel, Tyler
1 Citation0 Mentions85% FAIR0.9 Dataset Index
10.6084/m9.figshare.268798822024

The table of sequence counts per food-taxon per sample for the full dataset. from Body size modulates the extent of seasonal diet switching by large mammalian herbivores in Yellowstone National Park

The table of sequence counts per food-taxon per sample for the full dataset. A total of 972 unique sequences were identified across 370 fecal samples. For each sequence we provide the taxonomic family name, genus name, species name, nucleotide sequence, plant ID, and total number of reads identified across all fecal samples (columns A:F). For each fecal sample (columns G:NL) we identify the large-herbivore species the fecal sample was collected from, the season it was collected, and the fecal sample ID.

Authors

  • Littleford-Colquhoun, Bethan L. ;
  • Geremia, Chris ;
  • McGarvey, Lauren M. ;
  • Merkle, Jerod A ;
  • Hoff, Hannah K ;
  • Anderson, Heidi ;
  • Segal, Carlisle R ;
  • Kartzinel, Rebecca Y ;
  • Maywar, Ian J ;
  • Nantais, Natalie ;
  • Moore, Camela ;
  • Kartzinel, Tyler
1 Citation0 Mentions85% FAIR0.8 Dataset Index
10.6084/m9.figshare.26879882.v12024