| Issue |
BIO Web Conf.
Volume 246, 2026
Sriwijaya International Conference on Smart and Integrated Agriculture System (1st SRI-ICAS 2026)
|
|
|---|---|---|
| Article Number | 00006 | |
| Number of page(s) | 7 | |
| DOI | https://doi.org/10.1051/bioconf/202624600006 | |
| Published online | 22 July 2026 | |
Preliminary assessment: Colchicine-induced mutants of wild Rubus rosifolius var. rosifolius for dryland adaptation
1 Department of Agronomy, Faculty of Agriculture, Universitas Sebelas Maret, Indonesia
2 Department of Biology Education, Faculty of Teacher Training and Education, Universitas Tidar, Indonesia
3 Department of Agrotechnology, Faculty of Agriculture, Universitas Tidar, Indonesia
* Corresponding author: This email address is being protected from spambots. You need JavaScript enabled to view it.
Abstract
Rubus rosifolius produces fruit with various beneficial bioactive compounds, but the fruit tastes sour and not tasty, thus making it unattractive and not cultivated. This study evaluated the effects of colchicine-induced on survival rate, polyploidy induction, and dryland adaptability of Rubus rosifolius. The results demonstrated that colchicine concentration significantly influenced both survival rate and mutation success. Increasing concentration reduced survival, with the highest mortality (60%) observed at 7.5 mM, but enhanced mutation frequency. Polyploid mutants, including two tetraploid (2n = 4x = 28) that stem cuttings originating from the mountains Sumbing and Sindoro, as well as one aneuploid (2n = 2x − 1 = 13), were successfully obtained. Under controlled drought stress conditions, polyploid mutants consistently outperformed the control in growth parameters, showing higher plant height, fresh weight, leaf number, and root length, indicating improved vigor and adaptability. In terms of yield, tetraploid mutants especially from Sindoro, produced significantly higher fruit weight, larger fruit size, and increased °Brix content compared to 2n plants, while aneuploid plants exhibited inferior performance. Overall, the results indicate that colchicine-induced polyploidy effectively improves both growth performance and fruit quality, highlighting its potential as a rapid strategy for developing superior and adaptive genotypes.
© The Authors, published by EDP Sciences, 2026
This is an Open Access article distributed under the terms of the Creative Commons Attribution License 4.0, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
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