Transfer of cytoplasm from newBeta CMS sources to sugar beet by asymmetric fusion
- 1 May 1990
- journal article
- research article
- Published by Springer Nature in Theoretical and Applied Genetics
- Vol. 79 (3) , 390-396
- https://doi.org/10.1007/bf01186084
Abstract
Summary For our program on the transfer of cytoplasmic male sterility (CMS) by cybridization inBeta vulgaris L. (sugar beet), we have developed a procedure for the isolation and culture of mesophyll protoplasts of sugar beet followed by shoot regeneration. A prerequisite proved to be the presence in the media of n-propylgallate (nPG), a lipoxygenase inhibitor. Sustained divisions were found in all accessions that were tested. Plating efficiencies and regeneration ability varied greatly from one experiment to the other and appeared to be accession-dependent. Shoots could be easily transferred to soil. A majority of the regenerants (72%) retained the diploid chromosome number. Somaclonar variation in phenotype was low (4.9%). Mitochondrial DNA probes, capable of discriminating different cytoplasms ofBeta spp. showed no rearrangements due to the protoplast and in vitro culture phase, indicating that these probes can be used to identify cybrids after asymmetric fusions. The data presented here open up possibilities for genetic engineering using protoplasts in one of the world's most important arable crops.Keywords
This publication has 28 references indexed in Scilit:
- The Role of Explant Source and Culture Conditions on Callus Induction and Shoot Regeneration in Sugarbeet (Beta vulgaris L.)Journal of Plant Physiology, 1989
- The Production and Electrofusion of Beta CytoplastsPublished by Springer Nature ,1988
- Stabilizing Corn Leaf Protoplasts with n-Propyl GallateJournal of Plant Physiology, 1987
- The transfer of cytoplasmic male sterility to winter-type oilseed rape (Brassica napus L.) by protoplast fusionPlant Science, 1987
- Isolation and Culture of Mesophyll Protoplasts of Garden, Fodder and Sugar Beets Using a Nurse Culture System: Callus Formation and OrganogenesisJournal of Plant Physiology, 1986
- Plasmolysis of Glycine max mesophyll cells: the use of octylguanidine and its implications in protoplast isolationPlant Science, 1985
- Mitochondrial Genome Organization and Expression in Higher PlantsAnnual Review of Plant Physiology, 1982
- In vitro culture of the sugarbeet: Description of a cell line with high regeneration capacityPlant Science Letters, 1979
- The isolation, culture and regeneration of Petunia leaf protoplastsDevelopmental Biology, 1973
- Southern Corn Leaf Blight: Susceptible and Resistant MitochondriaScience, 1971