Related Experiment Video
Updated: Aug 3, 2026

In Vitro Growth of Mouse Preantral Follicles Under Simulated Microgravity
Published on: December 17, 2017
Effect of simulated microgravity on potato minituber formation and structure
O M Nedukha1, E L Kordyum, G M Martyn
1Institute of Botany, Tereschenkivska Str., Kiev, Ukraine. cell@svitonline.com
Simulated microgravity accelerated potato growth and altered minituber cell structure, starch content, and phosphorylase activity. These findings offer insights into plant adaptation to space conditions.
Area of Science:
- Plant biology
- Space agriculture
- Cellular biology
Background:
- Understanding plant responses to microgravity is crucial for space exploration and agriculture.
- Potato (Solanum tuberosum) minitubers are a model for studying tuberization and storage organ development.
Purpose of the Study:
- To investigate the effects of long-term clinorotation (simulated microgravity) on potato minituber formation.
- To analyze the structural and functional changes in storage parenchyma cells of minitubers under simulated microgravity.
Main Methods:
- Organ culture in vitro
- Light and electron microscopy
- Biochemical analysis
- Phenological observation
Main Results:
- Clinorotation led to accelerated growth of potato minitubers.
- Alterations were observed in the ultrastructure of parenchyma cells.
- Changes in starch content and increased phosphorylase activity were noted in minituber storage tissues.
Conclusions:
- Simulated microgravity influences potato minituber development and cellular organization.
- These findings contribute to understanding plant adaptation mechanisms in altered gravity environments.
More Related Videos
06:28High Throughput Image-Based Phenotyping for Determining Morphological and Physiological Responses to Single and Combined Stresses in Potato
Published on: June 7, 2024
10:35In vivo and In vitro Infection of Potato Roots with Plant Parasitic Nematodes for the Assessment of Induced Structural Changes
Published on: February 28, 2025