Topological Orientation of the Membrane Protein URF13 View Full Text


Ontology type: schema:Chapter     


Chapter Info

DATE

1991

AUTHORS

K. L. Korth , F. Struck , C. I. Kaspi , J. N. Siedow , C. S. Levings

ABSTRACT

Maize carrying the Texas male-sterile cytoplasm (cms-T) codes for a mitochondrial gene designated T-urf13 (Dewey et al., 1986). This unusual gene probably arose by mtDNA rearrangements caused by intramolecular recombinational events. T-urf13 has been implicated with cytoplasmic male sterility (cms), a cytoplasmically inherited trait causing pollen abortion, and with susceptibility to two fungal pathogens. In maize and most higher plants, the mitochondrial genome is transmitted strictly through the egg. Analysis of cms-T revertants provides the most convincing evidence that T-urf13 is responsible for the two traits (Rottman et al., 1987; Wise et al., 1987a). These studies showed that spontaneous deletions or a frame-shift mutation of the T-urf13 gene result in reversion to both male-fertile and disease-resistant phenotypes. In addition, these investigations indicate that the two traits are caused by the same gene, T-urf13, although the possibility of two closely linked loci cannot be discounted. Moreover, the nuclear restorer gene, Rf1 which is one of two genes needed to suppress pollen sterility in cms-T maize, reduces the expression of the T-urf13 encoded protein (Dewey et al., 1987). More... »

PAGES

375-381

Book

TITLE

Plant Molecular Biology 2

ISBN

978-1-4613-6454-2
978-1-4615-3304-7

Identifiers

URI

http://scigraph.springernature.com/pub.10.1007/978-1-4615-3304-7_37

DOI

http://dx.doi.org/10.1007/978-1-4615-3304-7_37

DIMENSIONS

https://app.dimensions.ai/details/publication/pub.1034820533


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