Genome degradation in plant tissue culture.
basic_science · Level V
Where this comes from
- Record sourced from PubMed, PMID 42018421.
- Also identified by DOI 10.1073/pnas.2530182123 and PMC identifier 13123843.
- Licence recorded as CC BY.
- The licence permits redistribution, so the abstract is shown in full and the full text is available from the publisher.
Abstract
Many plants, unlike most animals, can reproduce as clones [D. Kester, <i>HortScience</i> <b>18</b>, 831-837 (1983), 10.21273/hortsci.18.6.831]. Cloning plants is vital to agriculture and biotechnology [H. Barton, T. Denham, <i>Quatern. Int.</i> <b>489</b>, 17-25 (2018), O. L. Gamborg, <i>In Vitro Cell. Dev. Biol. Plant</i> <b>38</b>, 84-92 (2002), K.-H. Neumann, A. Kumar, J. Imani, <i>Plant Cell and Tissue Culture-A Tool in Biotechnology: Basics and Application</i> (ed. 2, 2020)], but the extent to which somatic mutation arises during asexual propagation remains an outstanding question. Leveraging a natural experiment of walnut clones spanning five decades and multiple cloning methods, we found a complex history of somatic mutation revealing developmental cell dynamics. A haplotype-phased reference genome exposed extreme genomic instability, a distinct mutation spectrum, and a >3,500% increase in mutation rate within clonal somatic embryos. Pairing these mutations with the haplotype-phased assembly revealed the canonical flowering plant meristematic layers from bulk tissue sequencing and uncovered frequent fixation events throughout development. These findings raise concerns about genomic integrity in tissue culture, test assumptions about mutagenesis in clonal propagation, and establish a benchmark for emerging paradigms in somatic mutation research.
Medical subject headings
- Genome, Plant
- Genomic Instability
- Tissue Culture Techniques