Cross-incompatibility and self-incompatibility: unrelated phenomena in wild and cultivated potatoes?

Author:

Maune Juan Federico1,Camadro Elsa Lucila12,Erazzú Luis Ernesto345

Affiliation:

1. Facultad de Ciencias Agrarias (FCA), Universidad Nacional de Mar del Plata (UNMdP), Ruta Nacional 226 Km 73.5 (7620), Balcarce, Buenos Aires, Argentina.

2. Instituto Nacional de Tecnología Agropecuaria (INTA), Centro Regional Buenos Aires Sur (CERBAS), Estación Experimental Agropecuaria (EEA) “Domingo R. Pasquale”, Ruta Nacional 226 Km 73.5 (7620), Balcarce, Buenos Aires, Argentina.

3. Consejo Nacional de Investigaciones Científicas y Técnicas (CONICET), Godoy Cruz 2290 (C1425FQB) CABA, Argentina.

4. INTA, Centro Regional Tucumán-Santiago del Estero, EEA Famaillá, Ruta Provincial 301 Km 32 (4132), Famaillá, Tucumán, Argentina.

5. Facultad de Agronomía y Zootecnia, Universidad Nacional de Tucumán, Avenida Gral. Roca 1900, 4000 San Miguel de Tucumán, Tucumán, Argentina.

Abstract

Knowledge of internal hybridization barriers is relevant for germplasm conservation and utilization. The two pre-zygotic barriers are pollen–pistil self-incompatibility (SI) and cross-incompatibility (CI). To ascertain whether SI and CI were phenotypically related phenomena in potatoes, extensive intra- and interspecific, both intra- and interploidy breeding relationships were established, without previous assumptions on the compatibility behavior of the studied germplasm. Pollen–pistil relationships were analyzed at the individual genotype/accession/family level. In two seasons, 828 intra- and interspecific genotypic combinations were performed, using accessions of the wild potatoes Solanum chacoense Bitter (2n = 2x = 24), S. gourlayi Hawkes (2n = 2x = 24; 2n = 4x = 48), and S. spegazzinii Bitter (2n = 2x = 24), full-sibling (hereinafter “full-sib”) families (2n = 2x = 24) within/between the latter two diploids, and S. tuberosum L. (2n = 4x = 48) cultivars. Pollen–pistil incompatibility occurred in the upper first third of the style (I1/3) in all selfed diploids. In both the intra- and interspecific combinations, the most frequent relationship was compatibility, followed by I1/3, but incompatibility also occurred in the stigma and the style (middle third and bottom third). We observed segregation for these relationships in full-sib families, and unilateral and bilateral incompatibility in reciprocal crosses between functional SI genotypes. Cross-incompatibility in potatoes is, apparently, controlled by genes independent of the S-locus or its S-haplotype recognition region (although molecular evidence is needed to confirm it), with segregation even within accessions.

Publisher

Canadian Science Publishing

Subject

Plant Science,Ecology,Ecology, Evolution, Behavior and Systematics

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