Background: Lilium candidum L. is a perennial ornamental plant that has various medicinal properties and is used in the cosmetic industry. The species is facing threats from urbanization and climate change and requires urgent protection. The most secure and efficient technology for the long-term storage of plant genetic resources is cryopreservation, which involves preserving genetic material at extremely low temperatures.
Objective: Today, plant biodiversity is endangered because of the narrowing of its natural distribution areas and/or destruction for different purposes. This study concentrated on creating a cryopreservation process using shoot tips and calluses as explant sources for the long-term conservation of L. candidum species.
Materials And Methods: Populations of L. candidum naturally distributed from three different regions of Turkey (Kepsut, Balikesir; the area surrounding Bafa Lake, Aydin; and Fethiye-Mugla) were grown in vitro to supply shoot tip and callus explants. Prior to freezing by droplet-vitrification and vitrification techniques, shoot tips and calluses were treated with MS nutritional medium supplemented with 0.4 M sucrose 7 g per L agar and plant vitrification solution 2 (PVS2).
Results: Cryopreserved shoot tips showed the highest levels of regeneration (71.8%) after a PVS2 treatment of 90 min, while calluses showed the highest levels of regrowth (63.9%) after a PVS2 exposure of 60 min.
Conclusion: High levels of regrowth are produced when the various cryopreservation procedures described here are used to preserve both shoot tip and callus explants. This potentially makes the method promising for the long-term preservation of endangered L. candidum varieties. Doi.org/10.54680/fr23510110512.
Download full-text PDF |
Source |
---|
Microorganisms
January 2025
Hunan Provincial Key Laboratory of Agroecological Engineering, Key Laboratory of Agro-Ecological Processes in Subtropical Region, Institute of Subtropical Agriculture, Chinese Academy of Sciences, Changsha 410125, China.
Synthetic microbial community (SynCom) application is efficient in promoting crop yield and soil health. However, few studies have been conducted to enhance pepper growth via modulating rhizosphere microbial communities by SynCom application. This study aimed to investigate how SynCom inoculation at the seedling stage impacts pepper growth by modulating the rhizosphere microbiome using high-throughput sequencing technology.
View Article and Find Full Text PDFPlant Physiol Biochem
January 2025
Universidade do Oeste Paulista (UNOESTE), Presidente Prudente, SP, Brazil.
Bacillus subtilis is known to promote root growth and improve plant physiology, while organic compost enhances soil water retention. This study explored the combined effect of inoculating B. subtilis in organic compost on soybean growth under water deficit.
View Article and Find Full Text PDFPlanta
January 2025
Advanced Laboratory for Plant Genetic Engineering, Advanced Technology Development Centre, Indian Institute of Technology, Kharagpur, India.
This study seeks to improve the biomass extractability of Sorghum bicolor by targeting a critical enzyme, 4CL, through metabolic engineering of the lignin biosynthetic pathway at the post-transcriptional level. Sorghum bicolor L., a significant forage crop, offers a potential source of carbohydrate components for biofuel production.
View Article and Find Full Text PDFPlant Physiol Biochem
December 2024
College of Landscape Architecture, Sichuan Agricultural University, Chengdu, Sichuan, 611130, China. Electronic address:
Moderate mowing of the shoot is an effective strategy for improving Pb-contaminated soil remediation using bermudagrass. However, the mechanisms by which mowing facilitates Pb uptake and accumulation remain insufficiently understood. Root radial transport is critical in efficient heavy metal uptake and translocation in plants and is influenced by root physiological-biochemical characteristics.
View Article and Find Full Text PDFFront Plant Sci
December 2024
National Key Laboratory of Crop Genetic Improvement, College of Plant Science and Technology, Huazhong Agricultural University, Wuhan, China.
Introduction: Drought stress severely hampers seedling growth and root architecture, resulting in yield penalties. Seed priming is a promising approach to tolerate drought stress for stand establishment and root development.
Methods: Here, various seed priming treatments, .
Enter search terms and have AI summaries delivered each week - change queries or unsubscribe any time!