Keywords = tissue culture
Number of Articles: 9
Production of artificial seeds from somatic embryos of the galbanum plant

Production of artificial seeds from somatic embryos of the galbanum plant

Volume 11, Issue 1, May 2025

https://doi.org/10.30470/jmpb.2025.2047229.1116

arman haghnazari, mohammad reza azimi, ali amarlou, mahdis barati fard, ehsan mohsenifard

Abstract The Ferula gummosa plant is a perennial and valuable species from the Apiaceae family, native to Iran. The significance of this plant lies in its resin, known as galbanum. Dormancy of the seeds is one of the main challenges in its growth, taking at least 9 months under natural conditions. The aim of this experiment was to shorten the dormancy period of this plant using artificial seed technology. In this experiment, somatic embryos of F .gummosa at the heart-shaped and torpedo stages were obtained from leaf explants in an MS1/2 medium containing 1 mg/L of BAP hormone and 1 mg/L of NAA hormone. Additionally, the embryonic part of the seed was isolated and encapsulated using a 2% sodium alginate solution, resulting in the production of artificial seeds. The results showed that the encapsulated somatic embryos at the torpedo stage showed the greatest seedling length after 15 and 30 days, and the germination of these seeds was faster compared to other seeds. The seeds obtained from the embryonic part also showed acceptable results. The findings of this experiment indicate that considering the time required for producing artificial seeds of F. gummosa, this method is quicker and more suitable for the propagation of this plant.

The role of somaclonal variation in plant tissue culture for enhancing secondary metabolites in medicinal plants

The role of somaclonal variation in plant tissue culture for enhancing secondary metabolites in medicinal plants

Volume 11, Issue 1, May 2025

https://doi.org/10.30470/jmpb.2025.2057660.1133

Mina Amani, Mohammad-Reza Jalali

Abstract Abstract
Plant tissue culture is recognized as a key tool in various research fields, especially in the area of medicinal plants. These techniques are employed for mass propagation, conservation, and production of secondary metabolites in medicinal plants. There are various methods for in-vitro culture, including micropropagation, axillary bud culture, organ culture, root and callus culture, organogenesis, somatic embryogenesis, and cell suspension culture. Since cell suspension culture and callus are typically preferred for producing plant chemicals, following root and shoot cultures as well as somatic embryogenesis, these methods play a significant role in optimizing the production of secondary metabolites. However, one of the major challenges in plant tissue culture is the potential occurrence of somaclonal variation, which can result from genetic mutations or changes in epigenetic markers. These variations particularly arise in highly differentiated explants and during the callus stage. Additionally, the occurrence of somaclonal variation may pose a barrier to successful in-vitro propagation and preservation of germplasm. This issue is especially critical in cases where maintaining the genetic and biochemical characteristics of medicinal plants is important. In the present study, the potential somaclonal variations resulting from the tissue culture of medicinal plants and their implications for the production of secondary metabolites are examined and discussed. This research can contribute to a better understanding of the challenges and opportunities associated with the use of tissue culture for the production of medicinal plants and valuable metabolites.

A review of biotechnological researches in artichoke medicinal plant (Cynara scolymus L.)

A review of biotechnological researches in artichoke medicinal plant (Cynara scolymus L.)

Volume 8, Issue 2, January 2023

https://doi.org/10.30470/jmpb.2025.2024687.1102

ALI MOHAMMADKHANI, bahram malaki, Ali Ammarlou

Abstract Artichoke medicinal plant (Cynara scolymus L.) is a herbaceous, diploid and perennial plant. This plant is native to the Mediterranean region and belongs to the Asteracea family. It is rich

in polyphenols, flavonoids, anthocyanins, phenolic compounds, inulin, coumarins, terpenes, dietary fibre, enzymes, polysaccharides, minerals and vitamins Several studies have shown that artichokes have properties such as antioxidant, anti-inflammatory,. Due to the antioxidant and hepatoprotective effects of this plant, which contains very little fat and high levels of minerals, vitamin C, fiber, inulin, polyphenols, hydroxycinnamates and flavones. But its most effective substance can be related to polyphenols, which are mainly composed of mono and dicaffeoylquinic acids and flavonoids. The first research related to tissue culture in this plant dates back to 1973. The first reports on the secondary metabolites of this plant were on synaropecarin, which was recorded and reported for the first time in 1960 by Suchy and his colleagues.Optimization of different physical conditions such as temperature, aeration, light stirring and chemical factors such as addition of growth regulators and precursors to culture media for in vitro production of these active compounds are described. Furthermore, cultures of transformed hairy roots, induced by Agrobacterium rhizogenes infection, have been discussed as an important technique to maximize the production of secondary metabolites in vitro. In this research, a general overview of the history and the time trend of biotechnology research has been made, and the problems, results, and research findings of the world's researchers have been collected.

A Review of synthetic seed technology and its challenges

A Review of synthetic seed technology and its challenges

Volume 8, Issue 1, April 2022, Pages 110-125

https://doi.org/10.30470/jmpb.2024.2025062.1103

arman haghnazari, mohammadreza azimi

Abstract Artificial seed technology is a novel method in biotechnology where artificial seeds are produced and encapsulated using various materials and processes. These seeds are typically created by encapsulating plant meristems or somatic embryos, using polymer materials such as sodium alginate for encapsulation. One of the advantages of these seeds is the easier and better cultivation of certain plants, especially those with harder germination conditions due to dormancy or environmental factors. However, the use of artificial seed technology comes with challenges, including environmental impacts, production costs, and technical issues such as improving encapsulation processes and the quality of artificial seeds. This article introduces artificial seeds and production methods, the materials used for encapsulation, the principles of encapsulation, the advantages, and challenges faced by these seeds. Some companies active in the field of artificial seeds and the plants from which artificial seeds are produced are introduced to further study and advance this technology.

Optimizing MS (Murashige & Skoog) media for Ferula.gummosa

Optimizing MS (Murashige & Skoog) media for Ferula.gummosa

Volume 8, Issue 1, April 2022, Pages 99-109

https://doi.org/10.30470/jmpb.2024.2025075.1105

arman haghnazari, mohammadreza azimi, Ali Ammarlou

Abstract Ferula.gummosa is one of the important medicinal plants in Iran and world. Today this plant is endangered in nature. One of the reasons for the threat is the long dormancy of galbanum seeds and its very low germination power, along with its uncontrolled harvesting. In this research, which was conducted in a completely randomized design with 3 replications and 3 treatments at the Biotechnology Research Institute of Zanjan University of Medical Sciences, galbanum plant embryos from Fars province were seprated from seeds and cultured to find the best concentration for growth in MS media with concentrations of 1/2-1/4 and complete MS media. After 30 days, traits such as seedling length, seedling weight, and percentage of germination in each medium were measured and compared. The results showed that the growth rate of this plant in MS1/4 media was higher than the two other concentrations . According to available published sources, the results of this study are reported for the first time on the effect of culture medium concentration on germination and seedling growth indices of Ferula.gummosa plant

The effects of growth regulators on regeneration of <i> Smyrnium cordifolium </i> Boiss under in <i>vitro conditions</i>

The effects of growth regulators on regeneration of Smyrnium cordifolium Boiss under in vitro conditions

Volume 7, Issue 2, February 2022, Pages 8-18

https://doi.org/10.30470/jmpb.2022.701839

Azadeh Rajabi, Mohammad Gerdakaneh

Abstract       Avondol (Smyrnium cordifolium) is one of the most valuable medicinal plants and its use has a long history in the world. The aim of this study was to investigate the effect of growth regulators on the regeneration of various organs of the avondol in in vitro conditions. This study was conducted in tissue culture laboratory of Research Center of Agricultural and Natural Resources of Kermanshah as a factorial experiment in a completely randomized design with 3 replications. Factors of explant (leaf and stem) plant growth regulators of 2,4-D (0, 0.25, 0.5, 1, 2 and 4 mg/l) and BA (0, 0.25, 0.5 and 1, mg/l) were examined. Six weeks after planting, callus color, callus formation rate, percentage of callus regeneration, callus diameter and callus fresh weight were recorded. The results showed that the highest callus formation rate in 2 mg/l 2,4-D alone, the highest percentage of callus formation of explants in 1 and 2 mg/l 2,4-D alone was obtained in stem explants. The highest callus diameter in the treatment of 2 mg/l 2,4-D alone and the highest weight in 1 and 2 mg/l 2,4-D alone and 2 mg/l 2,4-D with 0.25 mg/l BAwas obtained.
In order to direct regeneration, same calli were cultured on growth regulators BA (0.25, 0.5 and 1 mg/l) and IBA (0, 0.25, 0.5 mg/l) in MS medium with 3 replications. Six weeks after replanting the calli grew and did not regenerate. The results of the second experiment showed that the highest callus formation rate and callus diameter were obtained in combination of 0.5 mg/l BA alone. The highest percentage of callus formation was observed in two hormonal compounds: 0.5 mg/l BA alone and 1 mg/l BA with 0.25 mg/l IBA. The highest callus weight was obtained in 1 mg/l BA alone.

A callus study of different explants of the medicinal Myrtle plant (<i>Myrtus communis </i>)

A callus study of different explants of the medicinal Myrtle plant (Myrtus communis )

Volume 6, Issue 1, September 2021, Pages 93-101

Nazila Bagheri, Bahram Maleki zanjani, Ali Ammarlou

Abstract The pharmaceuticals plant (Myrtus communis L.)  is one of the most important medicinal plant species that consist of around 50 species of the Mediterranean basin. This plant is a perennial flowering shrubs or a small tree. The propagation of this plant is associated with certain difficulties due to its rigid crust. The low percentage of cuttings is one of the major limitations of cuttings approach propagation. The callogenesis is one of the important processes in molecular farming. For start of research the seeds were obtained from Zanjan University's Research Institute of Modern Biological Techniques. In this study, the effect of different concentrations of growth regulator 2 and 4-dichlorophenoxyacetic acid (2,4-D) at four levels on three types of leaf explants, shoots and roots. A factorial experiment based on a completely randomized design with three replications was studied on the Murashige - Skoog medium (MS). The onset of callus formation was observed after about one month. The color of calluses was often white to brown and red. The results showed that callus formation was higher in leaf explants by 90% compared to the other explants and the lowest percentage of callus belonged to root explants. Also, the relative amount of callus formation at leaf concentration of 1 mg / L was higher than other treatments but no significant differences were observed at hormonal levels of 1 and 2 mg / L 2,4-D. Due to the limited scientific reports on the tissue culture of this plant worldwide, and based on the available scientific reports available, the results of this study have been investigated on Iranian varieties as a first report.

The effect of plant growth regulators on callus induction of Datura metel L.

The effect of plant growth regulators on callus induction of Datura metel L.

Volume 3, Issue 2, March 2018, Pages 1-7

Mehrdad Nourazar, Seyed Mehdi Razavi, Alireza Ghasemian

Abstract Datura metel L. is an important medicinal plant that is a part of the Solanaceae family and contains important pharmaceutical compounds, including atropine and hyoscine (scopolamine), which is part of the tropane alkaloids and has known anticholinergic properties. In recent years, callus tissue induction has been introduced as a new method for obtaining secondary metabolites. The aim of this study was to inoculate callus from the isolated leaves of Datura seedlings to obtain the best hormonal concentration for maximum callus production. Datura seeds were cultured in MS medium under sterile conditions and Datura seedlings were obtained. The leaves of the seedlings were isolated and transferred to the MS medium without hormone, but the callus did not occur. In the next step, the leaves of the seedlings were transferred to the MS medium in 9 hormonal treatments containing different concentrations of auxin 2,4-D and cytokinin kinetin (Kin). the samples with light period was 16 hours of light and 8 hours of darkness and temperatures of 25 ° C for four week. The results showed that maximum callus formation in MS medium containing two hormones with concentrations of 1 mg/L 2,4-D and 1 mg/L Kin was obtained.