A study on self-incompatibility in Brassica

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منابع مشابه

[Molecular mechanism of self-incompatibility in Brassica].

In Brassica species, self-incompatibility has been mapped genetically to a single chromosomal location. In this region several closely linked genes have been identified. One of them, S-locus receptor kinase (SRK), determines S haplotype specificity of the stigma and it's the key protein for SI reaction. The role of the S locus glycoprotein (SLG) gene remains unclear. In the last decade approxim...

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Recent Progresses on Self-incompatibility Research in Brassica Species

Many hermaphrodite plant species have evolved mechanisms to prevent self-fertilization. One such mechanism is self-incompatibility (SI), which is defined as the inability of a fertile hermaphrodite plant to produce zygotes after self-pollination. SI prevents self-fertilization by rejecting pollen from plants with the same genotype. The SI system in Brassica is controlled sporophytically by mult...

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Evolutionary dynamics of self-incompatibility alleles in Brassica.

Self-incompatibility in Brassica entails the rejection of pollen grains that express specificities held in common with the seed parent. In Brassica, pollen specificity is encoded at the multipartite S-locus, a complex region comprising many expressed genes. A number of species within the Brassicaceae express sporophytic self-incompatibility, under which individual pollen grains bear specificiti...

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The pollen determinant of self-incompatibility in Brassica campestris.

Many flowering plants possess self-incompatibility (SI) systems that prevent inbreeding. In Brassica, SI is controlled by a single polymorphic locus, the S locus. Two highly polymorphic S locus genes, SLG (S locus glycoprotein) and SRK (S receptor kinase), have been identified, both of which are expressed predominantly in the stigmatic papillar cell. We have shown recently that SRK is the deter...

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Receptor-ligand interaction demonstrated in Brassica self-incompatibility.

development. Proc. Natl. Acad. Sci. U. S. A. 90, 3368–3372 6 Vidal, V.P. et al. (2001) Sox9 induces testis development in XX transgenic mice. Nat. Genet. 28, 216–217 7 Zhang, J. et al. (1999) In vitro binding and expression studies demonstrate a role for the mouse Sry Q-rich domain in sex determination. Int. J. Dev. Biol. 43, 219–227 8 Capel, B. et al. (1993) Circular transcripts of the testis-...

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ژورنال

عنوان ژورنال: Trends in Agriculture & Life Sciences

سال: 2016

ISSN: 2508-2809

DOI: 10.29335/tals.2016.53.69