Research article - Peer-reviewed, 2022
Isolation, purification and PEG-mediated transient expression of mesophyll protoplasts in Camellia oleifera
Li, Sufang; Zhao, Rui; Ye, Tianwen; Guan, Rui; Xu, Linjie; Ma, Xiaoling; Zhang, Jiaxi; Xiao, Shixin; Yuan, DeyiAbstract
Background: Camellia oleifera (C. oleifera) is a woody edible oil crop of great economic importance. Because of the lack of modern biotechnology research, C. oleifera faces huge challenges in both breeding and basic research. The protoplast and transient transformation system plays an important role in biological breeding, plant regeneration and somatic cell fusion. The objective of this present study was to develop a highly efficient protocol for isolating and purifying mesophyll protoplasts and transient transformation of C. oleifera. Several critical factors for mesophyll protoplast isolation from C. oleifera, including starting material (leaf age), pretreatment, enzymatic treatment (type of enzyme, concentration and digestion time), osmotic pressure and purification were optimized. Then the factors affecting the transient transformation rate of mesophyll protoplasts such as PEG molecular weights, PEG4000 concentration, plasmid concentration and incubation time were explored.Results: The in vitro grown seedlings of C. oleifera 'Huashuo' were treated in the dark for 24 h, then the 1st to 2nd true leaves were picked and vacuumed at - 0.07 MPa for 20 min. The maximum yield (3.5 x 10(7)/g.W) and viability (90.9%) of protoplast were reached when the 1st to 2nd true leaves were digested in the enzymatic solution containing1.5% (w/v) Cellulase R-10, 0.5% (w/v) Macerozyme R-10 and 0.25% (w/v) Snailase and 0.4 M mannitol for 10 h. Moreover, the protoplast isolation method was also applicable to the other two cultivars, the protoplast yield for 'TXP14' and 'DP47' was 1.1 x 10(7)/g.FW and 2.6 x 10(7)/g. FW, the protoplast viability for 'TXP14' and 'DP47' was 90.0% and 88.2%. The purification effect was the best when using W buffer as a cleaning agent by centrifugal precipitation. The maximum transfection efficiency (70.6%) was obtained with the incubation of the protoplasts with 15 mu g plasmid and 40% PEG4000 for 20 min.Conclusion: In summary, a simple and efficient system for isolation and transient transformation of C. oleifera mesophyll protoplast is proposed, which is of great significance in various aspects of C. oleifera research, including the study of somatic cell fusion, genome editing, protein function, signal transduction, transcriptional regulation and multi-omics analyses.Keywords
Camellia oleifera; Leaf mesophyll; Protoplast isolation; Purification; PEG; Transient transformationPublished in
Plant Methods2022, volume: 18, number: 1, article number: 141
Publisher: BMC
Authors' information
Li, Sufang
Central South University of Forestry and Technology
Zhao, Rui
Central South University of Forestry and Technology
Ye, Tianwen
Central South University of Forestry and Technology
Swedish University of Agricultural Sciences, Department of Plant Breeding
Xu, Linjie
Central South University of Forestry and Technology
Ma, Xiaoling
Central South University of Forestry and Technology
Zhang, Jiaxi
Central South University of Forestry and Technology
Xiao, Shixin
Central South University of Forestry and Technology
Yuan, Deyi
Central South University of Forestry and Technology
UKÄ Subject classification
Agricultural Science
Publication Identifiers
DOI: https://doi.org/10.1186/s13007-022-00972-1
URI (permanent link to this page)
https://res.slu.se/id/publ/120725