4.7 Article

Characterization of Root System Architecture Traits in Diverse Soybean Genotypes Using a Semi-Hydroponic System

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PLANTS-BASEL
卷 10, 期 12, 页码 -

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MDPI
DOI: 10.3390/plants10122781

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soybean; root phenomics; root system architecture; root distribution

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Phenotypic variation and correlations among root traits in soybean varieties play a crucial role in plant growth and adaptation strategies. By using a semi-hydroponic system, this study explored the variability in root morphological traits of 171 soybean genotypes, identifying significant positive correlations between root length/mass and shoot mass. The reliability of the semi-hydroponic system in phenotyping root trait variability at the early growth stage in soybean germplasms was validated through consistent rankings of genotypes in important root traits.
Phenotypic variation and correlations among root traits form the basis for selecting and breeding soybean varieties with efficient access to water and nutrients and better adaptation to abiotic stresses. Therefore, it is important to develop a simple and consistent system to study root traits in soybean. In this study, we adopted the semi-hydroponic system to investigate the variability in root morphological traits of 171 soybean genotypes popularized in the Yangtze and Huaihe River regions, eastern China. Highly diverse phenotypes were observed: shoot height (18.7-86.7 cm per plant with a median of 52.3 cm); total root length (208-1663 cm per plant with a median of 885 cm); and root mass (dry weight) (19.4-251 mg per plant with a median of 124 mg). Both total root length and root mass exhibited significant positive correlation with shoot mass (p <= 0.05), indicating their relationship with plant growth and adaptation strategies. The nine selected traits contributed to one of the two principal components (eigenvalues > 1), accounting for 78.9% of the total genotypic variation. Agglomerative hierarchical clustering analysis separated the 171 genotypes into five major groups based on these root traits. Three selected genotypes with contrasting root systems were validated in soil-filled rhizoboxes (1.5 m deep) until maturity. Consistent ranking of the genotypes in some important root traits at various growth stages between the two experiments indicates the reliability of the semi-hydroponic system in phenotyping root trait variability at the early growth stage in soybean germplasms.

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