Integrated Morphological, Biochemical, and Regrowth Assessment of Ghanaian Yam Accessions During Medium-Term In Vitro Conservation

Conventional propagation of yam (Dioscorea spp.) is constrained by low multiplication rates, pathogen accumulation, and vulnerability of field-maintained germplasm to biotic and abiotic losses. However, most studies emphasize survival, whereas fewer evaluate accession-specific growth performance alongside water-extractable phenolic content and antioxidant responses under the same conservation conditions. This study integrated morphological, biochemical, and post-conservation regrowth assessments to evaluate eight Ghanaian yam accessions maintained for 24 weeks on hormone-free complete Murashige and Skoog medium. The experiment followed a completely randomized design with three biological replications. All accessions maintained 100% survival without contamination throughout conservation, although substantial accession-dependent differences occurred in vegetative performance. At week 24, UWR produced 5.5 shoots/plant, 14 leaves/plant, and reached 8.5 cm height, while NKURAKAU produced 4.5 shoots plant−1 and reached 8.2 cm. In contrast, SO showed weaker growth, producing 2.8 shoots plant−1, 6 leaves plant−1, and 4.5 cm height. During four weeks of post-conservation recovery, NKURAKAU exhibited the strongest regrowth, producing 1.8 shoots plant−1, 4.2 leaves plant−1, and 5.0 cm high plantlets. Biochemical responses were also accession-specific. AMO exhibited the highest water-extractable TPC after 24 weeks of conservation (4.1 mg GAE/100 g dry weight), whereas UWR showed the lowest response (1.7 mg GAE/100 g dry weight). Conversely, SO and NKURAKAU exhibited comparatively strong DPPH radical-scavenging activity despite lower phenolic contents. No statistically detectable linear association between endpoint TPC and DPPH radical-scavenging activity was observed among the eight accessions (r = −0.24, p > 0.05). Exploratory hierarchical clustering of biochemical trait distinguished AMO as higher-TPC phenotype and SO/NKURAKAU as higher-DPPH phenotype. Overall, combining morphological traits, biochemical indicators, and post-conservation regrowth provides a more informative basis for accession-specific germplasm management than survival alone. NKURAKAU and UWR showed the most balanced performance, while AMO was notable for shoot multiplication and higher TPC.

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Journal
Crops
Published
2026-09-30
DOI
https://doi.org/10.3390/crops6050093
Primary Topic
Potato Plant Research
Type
article
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article

Integrated Morphological, Biochemical, and Regrowth Assessment of Ghanaian Yam Accessions During Medium-Term In Vitro Conservation

Richard Adu Amoah, Benjamin Bonsu Bruce, Eric Opoku Mensah, Marian Dorcas Quain et al.
Crops
Potato Plant Research
article

Integrated Morphological, Biochemical, and Regrowth Assessment of Ghanaian Yam Accessions During Medium-Term In Vitro Conservation

Richard Adu Amoah, Benjamin Bonsu Bruce, Eric Opoku Mensah, Marian Dorcas Quain, Isaac Duah Boateng, Wenxue Zhang
article en

Abstract

Conventional propagation of yam (Dioscorea spp.) is constrained by low multiplication rates, pathogen accumulation, and vulnerability of field-maintained germplasm to biotic and abiotic losses. However, most studies emphasize survival, whereas fewer evaluate accession-specific growth performance alongside water-extractable phenolic content and antioxidant responses under the same conservation conditions. This study integrated morphological, biochemical, and post-conservation regrowth assessments to evaluate eight Ghanaian yam accessions maintained for 24 weeks on hormone-free complete Murashige and Skoog medium. The experiment followed a completely randomized design with three biological replications. All accessions maintained 100% survival without contamination throughout conservation, although substantial accession-dependent differences occurred in vegetative performance. At week 24, UWR produced 5.5 shoots/plant, 14 leaves/plant, and reached 8.5 cm height, while NKURAKAU produced 4.5 shoots plant−1 and reached 8.2 cm. In contrast, SO showed weaker growth, producing 2.8 shoots plant−1, 6 leaves plant−1, and 4.5 cm height. During four weeks of post-conservation recovery, NKURAKAU exhibited the strongest regrowth, producing 1.8 shoots plant−1, 4.2 leaves plant−1, and 5.0 cm high plantlets. Biochemical responses were also accession-specific. AMO exhibited the highest water-extractable TPC after 24 weeks of conservation (4.1 mg GAE/100 g dry weight), whereas UWR showed the lowest response (1.7 mg GAE/100 g dry weight). Conversely, SO and NKURAKAU exhibited comparatively strong DPPH radical-scavenging activity despite lower phenolic contents. No statistically detectable linear association between endpoint TPC and DPPH radical-scavenging activity was observed among the eight accessions (r = −0.24, p > 0.05). Exploratory hierarchical clustering of biochemical trait distinguished AMO as higher-TPC phenotype and SO/NKURAKAU as higher-DPPH phenotype. Overall, combining morphological traits, biochemical indicators, and post-conservation regrowth provides a more informative basis for accession-specific germplasm management than survival alone. NKURAKAU and UWR showed the most balanced performance, while AMO was notable for shoot multiplication and higher TPC.

CropsVol. 6(5)
Pennsylvania State University (US), Council for Scientific and Industrial Research (GH)
Life in Land
Openalex Percentile: Top 15%
Potato Plant Research
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