Regeneration of Pineapple (cv. Kew) and Genetic Fidelity of Organogenesis and Somatic Embryogenesis‐Derived Plantlets

Pineapple ( Ananas comosus L. Merr.) is mainly propagated through crowns, slips and suckers. However, the availability of healthy and genetically uniform planting material is limited in cv. “Kew”, which has poor suckering behavior. The present study was conducted to develop regeneration protocols through organogenesis and somatic embryogenesis and to check the genetic fidelity of regenerated plants using simple sequence repeat (SSR) markers. Surface sterilization with 0.2% HgCl 2 for 12 min gave the best culture establishment (60%). For organogenesis, Murashige and Skoog (MS) medium containing 4.5 mg/L 6‐benzylaminopurine (BAP) + 0.5 mg/L α‐naphthaleneacetic acid (NAA) gave the best response for shoot multiplication and growth. Somatic embryogenesis was highest on MS medium with 3.0 mg/L BAP, while rooting was best on half‐strength MS medium containing 1.5 mg/L indole‐3‐butyric acid (IBA). Somatic embryogenesis produced 10.67 embryos per explant, compared with 5.33 shoots per explant through organogenesis under the respective best treatments. Genetic fidelity was assessed using six SSR markers, and no polymorphism was detected at the SSR loci examined between the mother plant and the tested regenerants. The study provides a useful regeneration protocol combining organogenesis, somatic embryogenesis, and SSR‐based assessment for multiplication of genetically uniform pineapple cv. “Kew” planting material.

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Publication Details

Journal
New Zealand Journal of Crop and Horticultural Science
Published
2026-09-30
DOI
https://doi.org/10.1002/nzc2.70245
Primary Topic
Pineapple and bromelain studies
Type
article
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article

Regeneration of Pineapple (cv. Kew) and Genetic Fidelity of Organogenesis and Somatic Embryogenesis‐Derived Plantlets

Hidayatullah Mir, Tushar Ranjan, Manoj Kundu, Nusrat Perveen et al.
New Zealand Journal of Crop and Horticultural Science
Pineapple and bromelain studies
article

Regeneration of Pineapple (cv. Kew) and Genetic Fidelity of Organogenesis and Somatic Embryogenesis‐Derived Plantlets

Hidayatullah Mir, Tushar Ranjan, Manoj Kundu, Nusrat Perveen, Rishabh Raj, Ratna Rai, Krishna
article en

Abstract

Pineapple ( Ananas comosus L. Merr.) is mainly propagated through crowns, slips and suckers. However, the availability of healthy and genetically uniform planting material is limited in cv. “Kew”, which has poor suckering behavior. The present study was conducted to develop regeneration protocols through organogenesis and somatic embryogenesis and to check the genetic fidelity of regenerated plants using simple sequence repeat (SSR) markers. Surface sterilization with 0.2% HgCl 2 for 12 min gave the best culture establishment (60%). For organogenesis, Murashige and Skoog (MS) medium containing 4.5 mg/L 6‐benzylaminopurine (BAP) + 0.5 mg/L α‐naphthaleneacetic acid (NAA) gave the best response for shoot multiplication and growth. Somatic embryogenesis was highest on MS medium with 3.0 mg/L BAP, while rooting was best on half‐strength MS medium containing 1.5 mg/L indole‐3‐butyric acid (IBA). Somatic embryogenesis produced 10.67 embryos per explant, compared with 5.33 shoots per explant through organogenesis under the respective best treatments. Genetic fidelity was assessed using six SSR markers, and no polymorphism was detected at the SSR loci examined between the mother plant and the tested regenerants. The study provides a useful regeneration protocol combining organogenesis, somatic embryogenesis, and SSR‐based assessment for multiplication of genetically uniform pineapple cv. “Kew” planting material.

New Zealand Journal of Crop and Horticultural ScienceVol. 54(4)
Sher-e-Kashmir University of Agricultural Sciences and Technology of Jammu (IN), Govind Ballabh Pant University of Agriculture and Technology (IN), Bihar Agricultural University (IN), Central Institute of Temperate Horticulture (IN), Central Agricultural University (IN)
Openalex Percentile: Top 19%
Pineapple and bromelain studies
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