AI Article Synopsis

  • * The study focuses on a rare medicinal plant that requires new propagation methods due to difficulties with seed growth, highlighting the urgent need for increased populations.
  • * Researchers developed a successful micropropagation protocol using nodal segment explants, achieving 100% axillary shoot initiation and 75% root initiation with specific hormonal and nutritional supplements.
  • * The acclimatized plantlets showed a 98% survival rate, similar photosynthetic performance to the maternal plant, and genetic fidelity, making this protocol viable for large-scale cultivation to meet market demands.

Article Abstract

is an endangered medicinal plant and hence new propagation methods are urgently required to increase its populations. Unfortunately, propagation through seeds is challenging due to its long flowering cycle and recalcitrant seeds. We developed a protocol for micropropagation using nodal segment explants. A woody plant medium supplemented with vitamins, 15 g L sucrose, and 1.0 mg L 6-benzylaminopurine (BAP) supported the optimum rate (100%) of axillary shoot initiation. Supplementation with 15 g L sucrose and 1.5 mg L indole-3-acetic acid (IAA) provided the optimum rate (75%) of root initiation. Rooted plantlets were successfully planted in sterilized horticultural soil containing perlite (2:1 ) and the survival rate was 98% following acclimatization. The photosynthetic rate assessed using FlourPen FP110 series showed that the ratio of variable fluorescence to maximum fluorescence mean value for regenerated (0.830 ± 0.0008) was similar to that of the maternal plant (0.825 ± 0.005), indicating similarity in their photosynthetic performance; a pivotal process for growth and development. The Fourier transform near-IR (FT-NIR) spectrometer analysis of the regenerated and the maternal plant samples exhibited homogeneity in the absorbance peaks at 8,273, 6,344, and 4,938-4,500 cm associated with lipids, starch, and proteins. The genetic fidelity of regenerated plants was confirmed using the randomly amplified polymorphic DNA (RAPD) technique. Our protocol is suitable for use in large-scale to meet the increasing demands for it in the global market.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC7726163PMC
http://dx.doi.org/10.3389/fpls.2020.548003DOI Listing

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