Nicola McCallum
Reproducibility track record
1
assessed papers
94/100
mean reproducibility
1
reproduced (C1–C2)
0
flagged
0
total citations
flag rate:
0%
(0/1)
The share of this author’s assessed papers carrying a ⚑ flag. A concentration is a prompt for expert review — never, on its own, a determination about the person.
Authorship role
first author: 0
last author: 0
Topics
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Funders
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Frequent co-authors
John W. Brown 1Ronja Wonneberger 1Miriam Schreiber 1Gary J. Muehlbauer 1Micha Bayer 1John Fuller 1Craig G. Simpson 1Nils Stein 1Allison Haaning 1Linda Milne 1
Institutions
James Hutton Institute 1University of Dundee 1Leibniz-Institut für Pflanzengenetik und Kulturpflanzenforschung (IPK) 1University of Minnesota 1University of Göttingen 1The University of Adelaide 1
Geography (author institutions)
GB 1DE 1US 1AU 1
Co-author network
Collaborators, sized by shared output and coloured by their own reproducibility (green = high, red = low). Click a node to open their card. A pattern is a prompt for review, never a determination.
How this author’s assessed papers reproduced — the outcome of reproduction attempts, not a judgement of the person. Coverage is partial and grows over time.
Assessed papers (1)
Complete publication record (20)
Request a reproduction →1 assessed by us (1 reproduced) · 19 not yet assessed — every PubMed paper on record, linked below.
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A barley pan-transcriptome reveals layers of genotype-dependent transcriptional complexity ↗Nature Genetics · 2025 · PMID 39901014not yet assessed
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Loss of <scp>E3</scp> ligase <scp> <i>HvST1</i> </scp> function substantially increases distal crossover frequency ↗New Phytologist · 2025 · PMID 41320983not yet assessed
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A barley pan-transcriptome reveals layers of genotype-dependent transcriptional complexity ↗Research Square · 2024not yet assessed
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Loss of E3 ligase HvST1 function substantially increases recombination ↗bioRxiv (Cold Spring Harbor Laboratory) · 2023not yet assessed
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<scp>BaRTv2</scp> : a highly resolved barley reference transcriptome for accurate transcript‐specific <scp>RNA</scp> ‐seq quantificationThe Plant Journal · 2022 · PMID 35704392L1 94/100
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Barley Anther and Meiocyte Transcriptome Dynamics in Meiotic Prophase I ↗Frontiers in Plant Science · 2021 · PMID 33510760not yet assessed
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BaRTv2: A highly resolved barley reference transcriptome for accurate transcript-specific RNA-seq quantification ↗bioRxiv (Cold Spring Harbor Laboratory) · 2021not yet assessed
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Time-resolved transcriptome of barley anthers and meiocytes reveals robust and largely stable gene expression changes at meiosis entry ↗bioRxiv (Cold Spring Harbor Laboratory) · 2020not yet assessed
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Quantification of RNA degradation of blood-specific markers to indicate the age of bloodstains ↗Forensic science international. Genetics supplement series · 2017not yet assessed
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A multi-tissue age prediction model based on DNA methylation analysis ↗Forensic science international. Genetics supplement series · 2017not yet assessed
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RNA/DNA co-analysis from human skin and contact traces – results of a sixth collaborative EDNAP exercise ↗Forensic Science International Genetics · 2015 · PMID 25600397not yet assessed
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not yet assessed
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RNA/DNA co-analysis from human menstrual blood and vaginal secretion stains: Results of a fourth and fifth collaborative EDNAP exercise ↗Forensic Science International Genetics · 2013 · PMID 24315610not yet assessed
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A method for determining the age of a bloodstain ↗Forensic Science International · 2013 · PMID 24309500not yet assessed
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RNA/DNA co-analysis from human saliva and semen stains – Results of a third collaborative EDNAP exercise ↗Forensic Science International Genetics · 2012 · PMID 23165093not yet assessed
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A comparison of methods for forensic DNA extraction: Chelex-100® and the QIAGEN DNA Investigator Kit (manual and automated) ↗Forensic Science International Genetics · 2011 · PMID 21703957not yet assessed
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Harvesting the potential of induced biological diversity ↗Trends in Plant Science · 2006 · PMID 16406304not yet assessed
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Evidence that the recessive bymovirus resistance locus <i>rym</i> 4 in barley corresponds to the eukaryotic translation initiation factor 4E gene ↗Molecular Plant Pathology · 2005 · PMID 20565670not yet assessed
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Natural and induced barley e1F4E gene mutants provide resistance to bymoviruses: a conserved antiviral resistance mechanism in plantsRothamsted Repository (Rothamsted Repository) · 2005not yet assessed
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A structured mutant population for forward and reverse genetics in Barley ( <i>Hordeum vulgare</i> L.) ↗The Plant Journal · 2004 · PMID 15361148not yet assessed
Full bibliography from OpenAlex; reproducibility verdicts matched by PMID.
Author attribution follows OpenAlex disambiguation, which is imperfect — a researcher's papers can be split across profiles or mixed with a namesake.
Merged across profiles sharing this ORCID where present. See every “McCallum N” paper on PubMed ↗