Molecular characterization of genetic diversity in apricot cultivars: Current situation and future perspectives

S Herrera, JI Hormaza, J Lora, G Ylla, J Rodrigo - Agronomy, 2021 - mdpi.com
In the recent years, an important renewal of apricot cultivars is taking place worldwide with
the introduction of a large number of new releases, which are replacing traditional and local …

Optimizing Production in the New Generation of Apricot Cultivars: Self-incompatibility, S-RNase Allele Identification, and Incompatibility Group Assignment

S Herrera, J Lora, JI Hormaza, M Herrero… - Frontiers in Plant …, 2018 - frontiersin.org
Apricot (Prunus armeniaca L.) is a species of the Rosaceae that was originated in Central
Asia, from where it entered Europe through Armenia. The release of an increasing number …

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

S Herrera, J Rodrigo, JI Hormaza, J Lora - International journal of …, 2018 - mdpi.com
Self-incompatibility (SI) is one of the most efficient mechanisms to promote out-crossing in
plants. However, SI could be a problem for fruit production. An example is apricot (Prunus …

Characterization of wild apricot (Prunus armeniaca L.) genotypes selected from Cappadocia region (Nevşehir-Turkey) by SSR markers

M Bakır, H Dumanoğlu, V Erdoğan… - Journal of Agricultural …, 2019 - dergipark.org.tr
Cappadocia region of Anatolia hosts the third largest wild apricot population in Turkey. The
objective of the study was to characterize 44 wild apricot genotypes selected from …

Genetic diversity of Prunus armeniaca L. var. ansu Maxim. germplasm revealed by simple sequence repeat (SSR) markers

J Chen, Q Liu, C Lu, Q Liu, J Pan, J Zhang, S Dong - Plos one, 2022 - journals.plos.org
The genetic diversity and genetic structure of P. armeniaca var. ansu were analyzed based
on SSR markers. The aim was to provide scientific basis for conservation, efficient utilization …

Self-Incompatibility in Apricot: Identifying Pollination Requirements to Optimize Fruit Production

S Herrera, J Lora, JI Hormaza, J Rodrigo - Plants, 2022 - mdpi.com
In recent years, an important renewal of apricot cultivars is taking place worldwide, with the
introduction of many new releases. Self-incompatible genotypes tolerant to the sharka …

Patterns of Diversity of the S and M Loci in Tunisian Apricots (Prunus armeniaca L.): Identification of Pollen-Part Mutations Conferring Self-Compatibility

A Boubakri, H Bourguiba, N Trifi-Farah… - Plant Molecular Biology …, 2024 - Springer
Abstract Self-(in) compatibility (SI) is a genetic barrier developed by flowering plants to
prevent self-pollination and promote outcrossing. SI is one of the most important traits in …

[PDF][PDF] An overview of apricot breeding programs focused on production improvement, field resistance and high-quality fruits.

I Al-Suwaid, F STĂNICĂ, A Butcaru… - … Papers. Series B …, 2022 - horticulturejournal.usamv.ro
Scientific knowledge through studies with fundamental and applied research has
revolutionized plant breeding over the past decades. Given the importance of the fruits for …

Self-Incompatibility in Apricot: Identifying Pollination Requirements to Optimize Fruit Production

S Herrera Lagranja, J Lora, JI Hormaza Urroz… - 2022 - citarea.cita-aragon.es
In recent years, an important renewal of apricot cultivars is taking place worldwide, with the
introduction of many new releases. Self-incompatible genotypes tolerant to the sharka …

Molecular Characterization of Genetic Diversity in Apricot Cultivars: Current Situation and Future Perspectives

S Herrera Lagranja, JI Hormaza Urroz, J Lora, G Ylla… - 2021 - citarea.cita-aragon.es
In the recent years, an important renewal of apricot cultivars is taking place worldwide with
the introduction of a large number of new releases, which are replacing traditional and local …