5 Pags.- 1 Tabl. The definitive version is available at: https://www.actahort.org/index.htmApricot (Prunus armeniaca) is a member of the Rosaceae originated in China. Most of the European apricot cultivars have been traditionally considered self-compatible (SC) although S-RNase-based gametophytic self-incompatibility (GSI), a common incompatibility mechanism found in the Rosaceae and genetically determined by a locus (S) with multiple alleles, is common in the species. This locus encodes an allele-specific S-RNase, expressed in the style, which inhibits the growth of pollen tubes with the same S alleles. In the last years, an important renewal of plant material is taking place worldwide, with the introduction of new cultivars from differen...
In flowering plants, gametophytic self-incompatibility, controlled by a single locus with several al...
In recent years, an important renewal of apricot cultivars is taking place worldwide, with the intro...
The gametophytic self-incompatibility (GSI) system in Rosaceae has been proposed to be controlled by...
12 Pags.- 3 Tabls.- 2 Figs. Creative Commons License Attribution 4.0 International (CC BY 4.0)Apri...
Self-incompatibility (SI) is one of the most efficient mechanisms to promote out-crossing in plants....
Apricot (Prunus armeniaca L.) is a species of the Rosaceae that was originated in Central Asia, from...
Self-incompatibility (SI) is one of the most efficient mechanisms to promote out-crossing in plants....
2 .pdf files copy of: 1) Extended abstract 2) Original Poster presented by Authors (3 Fots.- 2 Tab...
Self-incompatibility (SI) in flowering plants is a widespread genetic system that promotes out-cross...
5 pages, 3 figures, 1 table.-- Published Online: 28 Jun 2008.In previous work the existence of prote...
In the last years, an important renewal of plant material is taking place in apricot, with the intr...
Self-incompatibility plays an important role in the fertilization of fruit species such as apricot. ...
In recent years, an important renewal of apricot cultivars is taking place worldwide, with the intro...
In this study, the sexual incompatibility and S-allele diversity of 24 Turkish apricot cultivars, Pa...
WOS: 000384537200009Self-incompatibility plays an important role in the fertilization of fruit speci...
In flowering plants, gametophytic self-incompatibility, controlled by a single locus with several al...
In recent years, an important renewal of apricot cultivars is taking place worldwide, with the intro...
The gametophytic self-incompatibility (GSI) system in Rosaceae has been proposed to be controlled by...
12 Pags.- 3 Tabls.- 2 Figs. Creative Commons License Attribution 4.0 International (CC BY 4.0)Apri...
Self-incompatibility (SI) is one of the most efficient mechanisms to promote out-crossing in plants....
Apricot (Prunus armeniaca L.) is a species of the Rosaceae that was originated in Central Asia, from...
Self-incompatibility (SI) is one of the most efficient mechanisms to promote out-crossing in plants....
2 .pdf files copy of: 1) Extended abstract 2) Original Poster presented by Authors (3 Fots.- 2 Tab...
Self-incompatibility (SI) in flowering plants is a widespread genetic system that promotes out-cross...
5 pages, 3 figures, 1 table.-- Published Online: 28 Jun 2008.In previous work the existence of prote...
In the last years, an important renewal of plant material is taking place in apricot, with the intr...
Self-incompatibility plays an important role in the fertilization of fruit species such as apricot. ...
In recent years, an important renewal of apricot cultivars is taking place worldwide, with the intro...
In this study, the sexual incompatibility and S-allele diversity of 24 Turkish apricot cultivars, Pa...
WOS: 000384537200009Self-incompatibility plays an important role in the fertilization of fruit speci...
In flowering plants, gametophytic self-incompatibility, controlled by a single locus with several al...
In recent years, an important renewal of apricot cultivars is taking place worldwide, with the intro...
The gametophytic self-incompatibility (GSI) system in Rosaceae has been proposed to be controlled by...