VINIF.2023.DA075 – Effects of microgravity simulation conditions on morphogenesis, growth, physiology, biochemistry and secondary compound accumulation in some medicinal species

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Principle Investigator
Prof. Duong Tan Nhut
Host Organization
Taynguyen Institute for Scientific Research - Vietnam Academy of Science and Technology

Project goals

Evaluate the impact of microgravity (MG) conditions on morphology, growth, physiology, gene expression related to secondary compound biosynthesis pathways and secondary compound accumulation in Panax vietnamensis, Catharanthus roseus and Phyllanthus amarus. The results from this project will be the scientific basis for the application of cell technology under MG simulation conditions in the production of secondary compounds in Panax vietnamensis, Catharanthus roseus and Phyllanthus amarus.

Main tasks of the project

(1) Determination of rotational speed and MG exposure time to cellular morphology, morphogenesis and growth of P. vietnamensis, P. amarus and C. roseus

(2) Determination of rotational speed and MG exposure time to cell physiological changes of P. vietnamensis, P. amarus and C. roseus such as pigments content, endogenous hormones, antioxidants enzyme activity, non-enzymatic antioxidants content, intracellular free radical content, cellulase enzyme and pectinase activity, ethylene biosythesis

(3) Determination of rotational speed and MG exposure time to plant cell accumulation of secondary compounds (saponin compounds in P. vietnamensis, accumulation of phyllathin in P. amarus and accumulation of alkaloids in C. roseus)

(4) Determination of rotational speed and MG exposure time to cell gene expression involved in secondary compound metabolic pathways in P. vietnamensis, P. amarus and C. roseus

(5) Determination of the change in growth and secondary compound accumulation in the subsequent stages of P. vietnamensis, P. amarus and C. roseus derived from MG under gravity condition (recovery phase)

(6) Establishing a protocol related to the application of plant cell technology under MG conditions in the production of secondary compounds biosynthesis in P. vietnamensis, P. amarus and C. roseus.

Project impact

Breakthrough technology applying microgravity simulation conditions as a stimulant to enhance the biosynthesis of secondary compounds in medicinal plants is a new direction in Vietnam and around the world. Mastering this technology will contribute to improving understanding of the beneficial effects of microgravity conditions on plants as well as exploiting the application of this problem in practice. Furthermore, we hope that the results from this project on the effects of microgravity conditions on morphogenesis, growth, physiology and secondary compound accumulation in medicinal plants will be valuable scientific data for the compilation of monographic books/chapters serving the teaching of Plant Biotechnology.

project manager image
Principle Investigator
Prof. Duong Tan Nhut
Host Organization
Taynguyen Institute for Scientific Research - Vietnam Academy of Science and Technology

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Expect Progress
01/11/2023
30/10/2024
Phase 1

1. Establish in vitro culture samples of Panax vietnamensis (Ngoc Linh ginseng), Paris polyphylla var. chinensis (Rhizoma Paridis), and Selaginella tamariscina (spikemoss).
2. Cultivate suspension cell cultures of Panax vietnamensis, Paris polyphylla var. chinensis, and Selaginella tamariscina.
3. Investigate the effects of simulated microgravity (MG) rotation speed and exposure time to MG conditions on the growth and development of cells from Panax vietnamensis, Paris polyphylla var. chinensis, and Selaginella tamariscina.
4. Study the effects of simulated microgravity (MG) rotation speed and exposure time to MG conditions on some physiological and biochemical parameters of cells from Panax vietnamensis, Paris polyphylla var. chinensis, and Selaginella tamariscina.
5. Draft manuscript 1.
6. Present at an international conference.
7. Present at a domestic conference.
8. Support training for research students.

30/10/2025
Phase 2

1. Investigate the influence of simulated microgravity (MG) rotation speed and exposure time to MG conditions on the gene expression of cells from Panax vietnamensis (Ngoc Linh ginseng), Paris polyphylla var. chinensis (Rhizoma Paridis), and Selaginella tamariscina (spikemoss).
2. Study the impact of simulated microgravity (MG) rotation speed and exposure time to MG conditions on the accumulation of secondary metabolites in cells from Panax vietnamensis, Paris polyphylla var. chinensis, and Selaginella tamariscina.
3. Draft manuscript 2.
4. Investigate the organogenesis and somatic embryogenesis processes of cells from Panax vietnamensis, Paris polyphylla var. chinensis, and Selaginella tamariscina cultivated under MG conditions.
5. Evaluate the growth changes of Panax vietnamensis, Paris polyphylla var. chinensis, and Selaginella tamariscina originating from MG under gravity conditions (recovery phase after MG treatment).
6. National scientific conference report.

30/10/2026
Phase 3

1. Evaluate the accumulation potential of secondary metabolites in Panax vietnamensis (Ngoc Linh ginseng), Paris polyphylla var. chinensis (Rhizoma Paridis), and Selaginella tamariscina (spikemoss) originating from simulated microgravity (MG) under gravity conditions (recovery phase).
2. Draft manuscript 3.
3. Procedures related to the application of cell technology under simulated microgravity conditions.
4. Patent application.
5. Summary report.

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