DNA-based identification of plants and the genomic nature of plant species differences.
Name
s42003-026-09858-7_reference.pdf
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1.97 MB
Format
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Resource type
Journal article
Creator (person)
Huang, Wu
Li, De-Zhu
Antonelli, Alexandre
Bacon, Christine D.
Gao, Lian-Ming
Kidner, Catherine
Pennington, R. Toby
Soltis, Douglas E.
Soltis, Pamela
Cavender-Bares, Jeannine
Christe, Camille
Dexter, Kyle G.
Ding, Yanqian
Durán-Castillo, Mario
Fernández-Mazuecos, Mario
Gardner, Elliot M.
Gostel, Morgan R.
Hernandez, Margarita
Hipp, Andrew L.
Jantzen, Johanna R.
Landis, Jacob B.
Liu, Xiu-Qun
Naranjo, Andre A.
Nicholls, James
Qin, Han-Tao
Rose, Jeffrey P.
Salamin, Nicolas
Schley, Rowan
Schlüter, Philipp M.
Stephens, Jessica D.
Streisfeld, Matthew A.
Wagner, Natascha D.
Wang, Xiao-Quan
Xiang, Qiu-Yun Jenny
Twyford, Alex D.
Hollingsworth, Peter M.
Date published
March 26, 2026
Abstract
Telling species apart using DNA sequence data plays a key role in understanding, monitoring, and managing biodiversity. However, plant species discrimination is often difficult due to the complex nature of plant species boundaries. To inform future strategies for DNA-based identification of plants using the nuclear genome and to gain fundamental insights into the genomic nature of differences between plant species, we conducted a large-scale analysis mining data from 151 studies. Of the 1713 multiple-sampled species evaluated, 1202 resolved as monophyletic (70.2%). We then assessed the density of species-specific SNPs (SSSNPs) in the DNA sequence data - of the 462 species from 27 genera assessed in detail, there was a median density of 193 SSSNPs per Mb and 412 species (89.2%) had at least one SSSNP. Randomly sub-sampling the SNP data showed an asymptote in species discrimination with around 3000 randomly selected SNPs. Finally, we undertook a resampling of 6 target-capture datasets and showed that 1-9 pre-selected loci provided equivalent levels of species discrimination compared to hundreds of nuclear loci. These findings provide an important quantitative assessment of the genomic nature of differences between plant species and provide foundations for the development of enhanced approaches for high-resolution DNA-based plant species discrimination.
Project(s)
Priority 2: Trait Diversity and Function
Funder
| Funder name | Awards |
Wellcome Trust, United Kingdom | Darwin Tree of Life Discretionary Award (218328) |
Darwin Trust of Edinburgh, United Kingdom | PhD studentship |
Horizon Europe | Biodiversity, Circular Economy and Environment (REA.B.3) |
Staatssekretariat für Bildung, Forschung und Innovation | contract number 22.00173 |
UK Research and Innovation, United Kingdom | |
Rural and Environment Science and Analytical Services Division, United Kingdom | |
Journal title
Communications Biology
Publisher
Springer Science and Business Media LLC
Place of publication
Berlin/Heidelberg, Germany
eISSN
2399-3642
Date accepted
March 3, 2026
Official URL
Rights statement
In Copyright
Keywords
Additional information
IF = 5.1 (2024)