Journal article

Phenotypic variation of root-system architecture under high P and low P conditions in potato (Solanum tuberosum L.)


Authors listKirchgesser, Julian; Hazarika, Mousumi; Bachmann-Pfabe, Silvia; Dehmer, Klaus J. J.; Kavka, Mareike; Uptmoor, Ralf

Publication year2023

JournalBMC Plant Biology

Volume number23

Issue number1

ISSN1471-2229

Open access statusGold

DOI Linkhttps://doi.org/10.1186/s12870-023-04070-9

PublisherBioMed Central


Abstract
BackgroundPhosphorus (P) is an essential macronutrient required for plant metabolism and growth. Its acquisition by plants depends on the availability of dissolved P in the rhizosphere and on the characteristics of P uptake mechanisms such as root-system architecture (RSA). Compared to other crops, potato (Solanum tuberosum L.) has a relatively poor P acquisition efficiency. This is mainly due to its shallow and sparsely branched root system, resulting in a rather limited exploitable soil volume. Information about potato genotypes with RSA traits suitable to improve adaptation to nutrient scarcity is quite rare. Aim of this study is to assess phenotypic variation of RSA in a potato diversity set and its reactions to P deficiency.ResultsOnly one out of 22 RSA-traits showed a significant increase under low-P conditions. This indicates an overall negative effect of P scarcity on potato root growth. Differences among genotypes, however, were statistically significant for 21 traits, revealing a high variability in potato RSA. Using a principal component analysis (PCA), we were able to classify genotypes into three groups with regard to their root-system size. Genotypes with both small and large root systems reacted to low-P conditions by in- or decreasing their relative root-system size to medium, whereas genotypes with an intermediate root system size showed little to no changes.ConclusionsWe observed a huge variation in both the potato root system itself and its adaptation to P deficiency. This may enable the selection of potato genotypes with an improved root-zone exploitation. Eventually, these could be utilized to develop new cultivars adapted to low-P environments with better resource-use efficiencies.



Citation Styles

Harvard Citation styleKirchgesser, J., Hazarika, M., Bachmann-Pfabe, S., Dehmer, K., Kavka, M. and Uptmoor, R. (2023) Phenotypic variation of root-system architecture under high P and low P conditions in potato (Solanum tuberosum L.), BMC Plant Biology, 23(1), Article 68. https://doi.org/10.1186/s12870-023-04070-9

APA Citation styleKirchgesser, J., Hazarika, M., Bachmann-Pfabe, S., Dehmer, K., Kavka, M., & Uptmoor, R. (2023). Phenotypic variation of root-system architecture under high P and low P conditions in potato (Solanum tuberosum L.). BMC Plant Biology. 23(1), Article 68. https://doi.org/10.1186/s12870-023-04070-9



Keywords


Genetic resourcesPHOSPHATE AVAILABILITYPHOSPHORUS UPTAKERhizotronsRoot system


SDG Areas


Last updated on 2025-10-06 at 11:49