Mitochondrial gene expression and cytoplasmic male sterility in sorghum
1Department of Botany, University of Edinburgh, EH9 3JH, Edinburgh, Scotland, U.K.
Abstract:
Variation in sorghum mitochondrial translation products has enabled fertile (Kafir) cytoplasm to be distinguished from Milo cytoplasmic male sterile cytoplasm and from three alternative sources of cytoplasmic male sterile cytoplasm. Mitochondria from Milo cytoplasm synthesised a 65 000 mol. wt. polypeptide which was not synthesised by those from Kafir cytoplasm. In the cytoplasmic male sterile combination of Kafir nucleus in Milo cytoplasm synthesis of this polypeptide was dramatically increased. Mitochondria from two cytoplasmic male sterile lines (Kafir nucleus in IS1112 cytoplasm and Yellow Feterita nucleus in M35-1 cytoplasm) did not synthesise the 65 000 mol. wt. polypeptide but synthesised additional high molecular weight polypeptides (from 54 000 to 82 000 mol. wt.), the major one being 82 000. Mitochondria from cytoplasm IS1112 were also distinguished by synthesis of an additional 12 000 mol. wt. polypeptide. Mitochondria from the cytoplasmic male sterile line Martin nucleus in 9E cytoplasm synthesised an additional 42 000 mol. wt. polypeptide but did not synthesise a 38 000 mol. wt. polypeptide detected in all other cytoplasms. Immunoprecipitation of mitochondrial translation products with antiserum raised against subunit I of yeast cytochrome oxidase tentatively identified the 38 000 mol. wt. polypeptide as subunit I of sorghum cytochrome oxidase. The 42 000 mol. wt. polypeptide was also immuno-precipitated by this antiserum and thus is probably an altered form of cytochrome oxidase subunit I.Analysis of native mitochondrial DNA by agarose gel electrophoresis revealed the presence of two 'plasmid-like' DNA species of molecular weight 5.3 and 5.7 kb in the cytoplasmic male sterile lines Kafir nucleus in cytoplasm IS1112 and Yellow Feterita nucleus in M35-1 cytoplasm. Thus there is a positive correlation between the synthesis of the 82 000 mol. wt. polypeptide and the presence of the additional DNA species.
Insights
Sorghum cytoplasmic male sterility is linked to specific mitochondrial translation products. Differences in polypeptides and the presence of plasmid-like DNA correlate with male sterility, aiding in distinguishing sorghum cytoplasms.
Area of Science:
- Plant genetics
- Molecular biology
- Biochemistry
Background:
- Sorghum cytoplasm variation influences mitochondrial gene expression.
- Cytoplasmic male sterility (CMS) in plants is a crucial trait for hybrid breeding.
- Distinguishing between fertile and sterile sorghum cytoplasms is vital for agriculture.
Purpose of the Study:
- To analyze and differentiate sorghum mitochondrial translation products.
- To investigate the molecular basis of cytoplasmic male sterility in sorghum.
- To correlate mitochondrial DNA variations with CMS phenotypes.
Main Methods:
- Mitochondrial translation product analysis via gel electrophoresis.
- Immunoprecipitation using antiserum against yeast cytochrome oxidase subunit I.
- Agarose gel electrophoresis of native mitochondrial DNA.
Main Results:
- Distinct mitochondrial polypeptides (e.g., 65,000, 82,000, 42,000, 38,000 mol. wt.) characterize different sorghum cytoplasms.
- A 65,000 mol. wt. polypeptide is specific to Milo cytoplasm.
- Plasmid-like mitochondrial DNA species (5.3 and 5.7 kb) are present in specific CMS lines and correlate with 82,000 mol. wt. polypeptide synthesis.
Conclusions:
- Sorghum mitochondrial translation patterns can distinguish fertile and sterile cytoplasms.
- Specific mitochondrial polypeptides, like cytochrome oxidase subunit I variants, are associated with CMS.
- The presence of plasmid-like DNA in CMS lines suggests a role in altered mitochondrial gene expression and sterility.
More Related Videos
05:56Direct Agroinoculation of Maize Seedlings by Injection with Recombinant Foxtail Mosaic Virus and Sugarcane Mosaic Virus Infectious Clones
Published on: February 27, 2021
07:10Isolation of Histone from Sorghum Leaf Tissue for Top Down Mass Spectrometry Profiling of Potential Epigenetic Markers
Published on: March 4, 2021
Related Concept Videos
Gene Regulation During Sporulation
Monohybrid Crosses
