Identification of Self-Incompatibility Alleles by Specific PCR Analysis and S-RNase Sequencing in Apricot

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Identification of Self- incompatibility Alleles in Some Almond Genotypes by Degenerate S-RNase Primers

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S-RNase-mediated self-incompatibility.

The Solanaceae, Rosaceae, and Scrophulariaceae families all possess an RNase-mediated self-incompatibility mechanism through which their pistils can recognize and reject self-pollen to prevent inbreeding. The highly polymorphic S-locus controls the self-incompatibility interaction, and the S-locus of the Solanaceae has been shown to be a multi-gene complex in excess of 1.3 Mb. To date, the func...

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The Study of Morphological Traits and Identification of Self-incompatibility Alleles in Almond Cultivars and Genotypes

The evaluation of an almond collection using morphological variables and identification of self-incompatibility genotype  is useful for selecting pollinizers and for the design of crossing in almond breeding programs. In this study, important morphological traits and self-incompatibilities in 71 almond cultivars and genotypes were studied. Simple and multiplex specific PCR analyses were used in...

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RNase-based self-incompatibility: puzzled by pollen S.

Many plants have a genetically determined self-incompatibility system in which the rejection of self pollen grains is controlled by alleles of an S locus. A common feature of these S loci is that separate pollen- and style-expressed genes (pollen S and style S, respectively) determine S allele identity. The long-held view has been that pollen S and style S must be a coevolving gene pair in orde...

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ژورنال

عنوان ژورنال: International Journal of Molecular Sciences

سال: 2018

ISSN: 1422-0067

DOI: 10.3390/ijms19113612