ResynPy: a software for selecting pairs of complementary inbred lines to resynthesize valuable heterozygous genotypes
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Fecha de publicación
2025-10-28ISSN
1471-2105
Resumen
Background
Using cultivars based on a single, partly heterozygous, genotype is one of the bases of agriculture, frequently used in seed-propagated species such as vegetables and field crops (F1 hybrid varieties), and in most fruit trees and ornamentals (clonal varieties) that reproduce vegetatively. Producing two inbred lines that fully or partly reconstruct a given high-value heterozygous individual is now possible with the
Resynthesis method, which uses molecular markers to select pairs of complementary genotypes in the F2 and subsequent selfing generations. The objective of this paper was to develop a software to facilitate the selection of such complementary pairs from a large number of segregating genotyped individuals.
Results
The ResynPy tool we developed screens the genotyping data of a segregating population, originating from selfing a top-performing partly heterozygous individual, and detects pairs of individuals that could produce progeny containing individuals nearly identical to the initial elite genotype. Our software selects candidate pairs of individuals in a small timeframe window with a low memory footprint. ResynPy tool could be part of a breeding toolkit to accelerate breeding programs in any plant species of economic importance capable of producing self-pollinated progeny.
Conclusions
ResynPy is a software developed in Python language and is freely available on GitHub (HYPERLINK “https://github.com/kostasgalexiou/ResynPy/tree/main”). ResynPy automates the process of individual selection implemented by the Resynthesis method, in a highly efficient manner through parallelization, allowing to plant breeders for detection of pairs of complementary individuals in a selfing population that could be suitable parents to a plant variety with economically important agronomic traits. With ResynPy, breeders are provided with a fast and easyto-use tool that will aid them to advance their plant breeding programs.
Tipo de documento
Artículo
Versión del documento
Versión publicada
Lengua
Inglés
Materias (CDU)
633 - Cultivos y producciones
Páginas
7
Publicado por
BioMed Central
Publicado en
BMC Bioinformatics
Número del acuerdo de la subvención
MICIU/Programa Estatal de generación del conocimiento y fortalecimiento científico y tecnológico del sistema I+D+I/PID2019-110599RR-I00/ES/Aplication of Marker Assisted Introgression and Resynthesis in peach/MAIRES
MICINN/Programa Estatal para impulsar la investigación científico-técnica y su transferencia/PID2022-140362OR-I00/ES/Introgresión asistida por marcadores en Prunus y mapeo fino de genes de interés agronómico en melocotonero y en almendro/
MINECO/Programa Estatal de fomento de la investigación científica y técnica de excelencia/SEV-2015-0533/ES/ /
MICIU/Programa Estatal de generación del conocimiento y fortalecimiento científico y tecnológico del sistema I+D+I/CEX2019-000902-S/ES/ /
FEDER/ / /EU/ /
Program
Genòmica i Biotecnologia
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