Combined heat and drought responses in stress-tolerant potato (Solanum tuberosum) genotypes deviate from individual-stress predictions: implications for climate-resilient breeding

[thumbnail of Open Access]
Preview
Text (Open Access)
- Published Version
· Available under License Creative Commons Attribution.
[thumbnail of Revised Manuscript - unMarked v4.docx]
Text
- Accepted Version
· Restricted to Repository staff only

Please see our End User Agreement.

It is advisable to refer to the publisher's version if you intend to cite from this work. See Guidance on citing.

Add to AnyAdd to TwitterAdd to FacebookAdd to LinkedinAdd to PinterestAdd to Email

Ogola, R. J. O., Bardsley, N. and Bell, L. ORCID: https://orcid.org/0000-0003-2895-2030 (2026) Combined heat and drought responses in stress-tolerant potato (Solanum tuberosum) genotypes deviate from individual-stress predictions: implications for climate-resilient breeding. Scientia Horticulturae, 364. 114935. ISSN 1879-1018 doi: 10.1016/j.scienta.2026.114935

Abstract/Summary

Combined drought and heat stress episodes are becoming increasingly common in tropical potato growing regions, yet most breeding programmes continue to evaluate stress tolerance under individual stress scenarios. Two commercially promoted “climate-resilient” potato genotypes (Manitou and Markies) were evaluated under control, individual and combined heat + drought stresses using temperature and soil moisture regimes informed by current and projected potato-growing conditions in Kenya. Experiments were conducted across growth room, glasshouse-polytunnel and field-polytunnel. Several physiological, yield and quality traits exhibited statistically supported departures from additive expectations under combined stress, indicating that response to co-occurring stress could not always be predicted from individual stress effects alone within tested systems. Combined heat + drought stress consistently imposed the greatest reductions in stomatal conductance (gs), maximum efficiency of photosystem II (Fv/Fm), non-photochemical quenching (NPQt), tuber yield, starch, and dry matter content, with total and marketable yield declining by 73–91%. Despite comparatively stronger drought performance, Markies, showed significant declines in starch and dry matter contents under heat and combined stress, whereas Manitou maintained stable starch content, suggesting contrasting genotype-specific stress associated development and assimilate allocation responses under combined stress. Notably, the two varieties marketed as heat or drought tolerant lost their advantages when stresses co-occur. These findings demonstrate limitations of single stress phenotyping frameworks and suggest that evaluating genotypes under isolated drought or heat conditions may overlook importance of combined stress vulnerabilities. The study supports the integration of combined stress screening approaches for developing genotypes better suited to multifactorial climate stress environment.

Altmetric Badge

Dimensions Badge

Item Type Article
URI https://centaur.reading.ac.uk/id/eprint/130297
Identification Number/DOI 10.1016/j.scienta.2026.114935
Refereed Yes
Divisions Life Sciences > School of Agriculture, Policy and Development > Department of Crop Science
Publisher Elsevier
Download/View statistics View download statistics for this item

Downloads

Downloads per month over past year

University Staff: Request a correction | Centaur Editors: Update this record