Root system architecture and stem traits of bread wheat seedlings under contrasting water regimes
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Differential response of bread wheat seedlings to contrasting water regimes can be used to determine traits related to drought tolerance. The F1 offspring from eight crosses and 11 selected parental genotypes were simultaneously grown in hydroponic cultivation-polyethylene glycol (PEG) induced drought stress vs. control conditions. Criteria for selection of maternal and paternal genotypes were desirable traits in terms of increased tolerance to drought: longer stem length, longer primary root, large number of seminal roots, large root dry mass and stem dry mass, beginning of root branching at the greatest possible distance from beginning of the root,contrasting angle of seminal roots. The traits were measured on 14 day old seedlings: primary root length (PRL),distance to the first branch on the primary root (DFBR), number of seminal roots (NSR), total seminal root length (TSRL), angle of seminal roots (ASR), stem length (SL), root dry mass (RDM), stem dry mass (SDM), and the ratio of r...oot dry mass to stem dry mass (RDM/SDM). Drought stress led to a decrease in the mean values of all root and stem traits by 11% on average, except for RDM/SDM which was increased. The most sensitive trait to drought stress was DFBR (25% reduction), causing root systems to branch at a shallower depth. In conditions of induced drought stress, the strongest statistically significant correlation was found among RDM and RDM/SDM (r = 0.794), SL and ASR (r = 0.708), RDM and TSRL (r = 0.673). The stress tolerance index had the strongest positive correlation with the SDM, PRL, TSRL, SL, and the stress susceptibility index with the NSR. The highest heterosis mean value was observed for PRL (24.6%) and for SL (15.6%) under drought stress. The different directions of average heterosis in induced drought stress vs. control conditions were observed for DFBR, RDM, and SDM, indicating differential traits to account for when planning breeding bread wheat for drought tolerance.Selected traits as criteria for selection and favorable combinations can be incorporated into pre-breeding and breeding schemes, directly or indirectly, aiming to achieve drought tolerance.
Кључне речи:
bread wheat / drought stress / heterosis / hydroponics / root system architectureИзвор:
Journal of Animal and Plant Sciences, 2024, 34, 2, 454-464Издавач:
- Lahore : Pakistan Agricultural Scientists Forum (PAS FORUM)
Финансирање / пројекти:
- Министарство науке, технолошког развоја и иновација Републике Србије, институционално финансирање - 200040 (Институт за кукуруз 'Земун поље', Београд-Земун) (RS-MESTD-inst-2020-200040)
- Министарство науке, технолошког развоја и иновација Републике Србије, институционално финансирање - 200116 (Универзитет у Београду, Пољопривредни факултет) (RS-MESTD-inst-2020-200116)
Институција/група
MRIZPTY - JOUR AU - Branković, Gordana AU - Blažić, Milica AU - Dodig, Dejan AU - Kandić, Vesna AU - Živanović, Tomislav PY - 2024 UR - http://rik.mrizp.rs/handle/123456789/1405 AB - Differential response of bread wheat seedlings to contrasting water regimes can be used to determine traits related to drought tolerance. The F1 offspring from eight crosses and 11 selected parental genotypes were simultaneously grown in hydroponic cultivation-polyethylene glycol (PEG) induced drought stress vs. control conditions. Criteria for selection of maternal and paternal genotypes were desirable traits in terms of increased tolerance to drought: longer stem length, longer primary root, large number of seminal roots, large root dry mass and stem dry mass, beginning of root branching at the greatest possible distance from beginning of the root,contrasting angle of seminal roots. The traits were measured on 14 day old seedlings: primary root length (PRL),distance to the first branch on the primary root (DFBR), number of seminal roots (NSR), total seminal root length (TSRL), angle of seminal roots (ASR), stem length (SL), root dry mass (RDM), stem dry mass (SDM), and the ratio of root dry mass to stem dry mass (RDM/SDM). Drought stress led to a decrease in the mean values of all root and stem traits by 11% on average, except for RDM/SDM which was increased. The most sensitive trait to drought stress was DFBR (25% reduction), causing root systems to branch at a shallower depth. In conditions of induced drought stress, the strongest statistically significant correlation was found among RDM and RDM/SDM (r = 0.794), SL and ASR (r = 0.708), RDM and TSRL (r = 0.673). The stress tolerance index had the strongest positive correlation with the SDM, PRL, TSRL, SL, and the stress susceptibility index with the NSR. The highest heterosis mean value was observed for PRL (24.6%) and for SL (15.6%) under drought stress. The different directions of average heterosis in induced drought stress vs. control conditions were observed for DFBR, RDM, and SDM, indicating differential traits to account for when planning breeding bread wheat for drought tolerance.Selected traits as criteria for selection and favorable combinations can be incorporated into pre-breeding and breeding schemes, directly or indirectly, aiming to achieve drought tolerance. PB - Lahore : Pakistan Agricultural Scientists Forum (PAS FORUM) T2 - Journal of Animal and Plant Sciences T1 - Root system architecture and stem traits of bread wheat seedlings under contrasting water regimes VL - 34 IS - 2 SP - 454 EP - 464 DO - 10.36899/JAPS.2024.2.0731 ER -
@article{ author = "Branković, Gordana and Blažić, Milica and Dodig, Dejan and Kandić, Vesna and Živanović, Tomislav", year = "2024", abstract = "Differential response of bread wheat seedlings to contrasting water regimes can be used to determine traits related to drought tolerance. The F1 offspring from eight crosses and 11 selected parental genotypes were simultaneously grown in hydroponic cultivation-polyethylene glycol (PEG) induced drought stress vs. control conditions. Criteria for selection of maternal and paternal genotypes were desirable traits in terms of increased tolerance to drought: longer stem length, longer primary root, large number of seminal roots, large root dry mass and stem dry mass, beginning of root branching at the greatest possible distance from beginning of the root,contrasting angle of seminal roots. The traits were measured on 14 day old seedlings: primary root length (PRL),distance to the first branch on the primary root (DFBR), number of seminal roots (NSR), total seminal root length (TSRL), angle of seminal roots (ASR), stem length (SL), root dry mass (RDM), stem dry mass (SDM), and the ratio of root dry mass to stem dry mass (RDM/SDM). Drought stress led to a decrease in the mean values of all root and stem traits by 11% on average, except for RDM/SDM which was increased. The most sensitive trait to drought stress was DFBR (25% reduction), causing root systems to branch at a shallower depth. In conditions of induced drought stress, the strongest statistically significant correlation was found among RDM and RDM/SDM (r = 0.794), SL and ASR (r = 0.708), RDM and TSRL (r = 0.673). The stress tolerance index had the strongest positive correlation with the SDM, PRL, TSRL, SL, and the stress susceptibility index with the NSR. The highest heterosis mean value was observed for PRL (24.6%) and for SL (15.6%) under drought stress. The different directions of average heterosis in induced drought stress vs. control conditions were observed for DFBR, RDM, and SDM, indicating differential traits to account for when planning breeding bread wheat for drought tolerance.Selected traits as criteria for selection and favorable combinations can be incorporated into pre-breeding and breeding schemes, directly or indirectly, aiming to achieve drought tolerance.", publisher = "Lahore : Pakistan Agricultural Scientists Forum (PAS FORUM)", journal = "Journal of Animal and Plant Sciences", title = "Root system architecture and stem traits of bread wheat seedlings under contrasting water regimes", volume = "34", number = "2", pages = "454-464", doi = "10.36899/JAPS.2024.2.0731" }
Branković, G., Blažić, M., Dodig, D., Kandić, V.,& Živanović, T.. (2024). Root system architecture and stem traits of bread wheat seedlings under contrasting water regimes. in Journal of Animal and Plant Sciences Lahore : Pakistan Agricultural Scientists Forum (PAS FORUM)., 34(2), 454-464. https://doi.org/10.36899/JAPS.2024.2.0731
Branković G, Blažić M, Dodig D, Kandić V, Živanović T. Root system architecture and stem traits of bread wheat seedlings under contrasting water regimes. in Journal of Animal and Plant Sciences. 2024;34(2):454-464. doi:10.36899/JAPS.2024.2.0731 .
Branković, Gordana, Blažić, Milica, Dodig, Dejan, Kandić, Vesna, Živanović, Tomislav, "Root system architecture and stem traits of bread wheat seedlings under contrasting water regimes" in Journal of Animal and Plant Sciences, 34, no. 2 (2024):454-464, https://doi.org/10.36899/JAPS.2024.2.0731 . .