Genetic diversity analysis and in vitro seedling production of mangosteen (Garcinia mangostana L.) accessions
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Date
2026-02-09
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Department of Fruit Science, College of Agriculture, Vellayani
Abstract
The study entitled “Genetic diversity analysis and in vitro seedling production of
mangosteen (Garcinia mangostana L.) accessions” was conducted at the Department of
Fruit Science and the Department of Molecular Biology and Biotechnology, College of
Agriculture, Vellayani, during the period 2023–2025. The investigation aimed to assess the
genetic diversity of mangosteen accessions using molecular markers and in vitro seedling
production to enhance seedling vigour.
Thirty mangosteen genotypes cultivated in Thrissur and Wayanad districts of
Kerala were subjected to molecular characterization. Genomic DNA was isolated from
young leaves using the CTAB extraction method (Doyle and Doyle, 1987) with
modifications
proposed
by
Sulassih
and
Santosa
(2020)
incorporating
polyvinylpyrrolidone (PVP) to eliminate polyphenolic impurities. The DNA samples
showed UV absorbance ratios (A260/A280) between 1.79 and 2.07 indicating their purity.
Ten Inter Simple Sequence Repeat (ISSR) primers, previously reported in
mangosteen, were used for amplification. These primers produced a total of 71 loci across
the thirty genotypes of which 63 were polymorphic resulting in a mean polymorphism
percentage of 85.87%. The number of loci per primer varied from 3 (UBC 860) TO 11
(UBC 840) indicating considerable variation in amplification efficiency. The Polymorphic
Information Content (PIC) values ranged between 0.04 (UBC 860) and 0.39 (UBC 825)
with an average of 0.28, indicating moderate informativeness. Cluster analysis using the
Unweighted Pair Group Method with Arithmetic Mean (UPGMA) based on Jaccard’s
similarity coefficients revealed three major clusters at a similarity coefficient of 0.66
corresponding to 34% dissimilarity. Cluster I comprised a single accession (Acc. 017) that
was distinctly separated indicating a high degree of divergence. Cluster II containing
twenty six accessions was further divided into subclusters II A and II B at 0.68 similarity,
while Cluster III included three accessions (Acc.004, Acc.048, and Acc.126). Principal
Coordinate Analysis (PCA) further supported the clustering pattern, indicating the
moderate genetic differentiation among the genotypes.
Investigations were also carried out for in vitro seedling production of mangosteen.
Mature seeds of mangosteen were aseptically cultured on Murashige and Skoog (MS) and
85
half-strength MS media containing different concentrations of sucrose (1%, 2%, and 3%)
and gibberellic acid (GA₃) (0, 0.2, 0.5, and 1 ppm). Twelve treatment combinations were
evaluated for their influence on germination, subsequent seedling vigour and growth.
Significant variation was observed among treatments for all parameters studied.
The mean number of days required for germination ranged from 12.33 to 22.67 days. The
earliest germination was observed in treatment T₁₂ (½ MS + 2% sucrose + GA₃ 1 ppm).
Similarly the germination percentage also varied significantly, with T₁₂ showing the highest
value (95.24%) followed by T₁₀ (½ MS + 2% sucrose + GA₃ 0.2 ppm). Seedling vigour
indices (SVI-I and SVI-II) reflected a similar trend with T₁₂ recording the highest values
(1383.81 and 44.48, respectively), indicating the positive influence of reduced salt
concentration and GA₃ supplementation on germination and early growth.
Growth parameters recorded at the time of plant out revealed significant differences
among treatments. The longest shoots (5.73 cm), roots (3.87 cm) and leaves (4.77 cm) were
recorded in T₁₂. After four weeks of hardening, seedlings from T₁₂ maintained superior
performance with the highest shoot length (7.10 cm), root length (7.17 cm), and leaf length
(6.17 cm). The number of leaves was the highest in T₈ (MS + 2% sucrose + GA₃ 0.5 ppm)
and T12 (½ MS Media (2% sucrose) + GA 1 ppm). Survival percentage did not differ
significantly among treatments; however, T₁₂ and T₆ recorded the highest survival
percentage (95.24), indicating the robustness of the developed seedlings. These results
demonstrated that half-strength MS medium supplemented with 2% sucrose and 1 ppm
GA₃ was optimal for inducing early germination, improving root and shoot elongation, and
enhancing seedling vigour.
The present study confirms the existence of genetic diversity among
mangosteen accessions in Kerala despite their apomictic nature. The moderate
polymorphism revealed by ISSR markers indicates underlying genetic differentiation
likely resulting from somatic mutations or environmental adaptation. The optimized in
vitro germination media (½ MS medium supplemented with 2% sucrose and 1 ppm GA₃)
proved effective in enhancing germination, seedling vigour, and survival percentage.
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Keywords
Fruit Science | Genetic diversity | Vitro seedling production | Mangosteen | Garcinia mangostana L
Citation
176825