Inheritance of growth habit detected by genetic linkage analysis using microsatellites in the common bean (Phaseolus vulgaris L.)

Publication Overview
TitleInheritance of growth habit detected by genetic linkage analysis using microsatellites in the common bean (Phaseolus vulgaris L.)
AuthorsdeCampos T, Oblessuc PR, Sforca DA, Cardoso JMK, Baroni RM, deSousa ACB, Carbonell SAM, Chioratto AF, Garcia AAF, Rubiano LR, deSouza AP
TypeJournal Article
Journal NameMolecular Breeding
Volume27
Year2011
Page(s)549-560
CitationdeCampos T, Oblessuc PR, Sforca DA, Cardoso JMK, Baroni RM, deSousa ACB, Carbonell SAM, Chioratto AF, Garcia AAF, Rubiano LR, deSouza AP. Inheritance of growth habit detected by genetic linkage analysis using microsatellites in the common bean (Phaseolus vulgaris L.). Molecular Breeding. 2011; 27:549-560.

Abstract

The genetic linkage map for the common bean (Phaseolus vulgaris L.) is a valuable tool for breeding programs. Breeders provide new cultivars that meet the requirements of farmers and consumers, such as seed color, seed size, maturity, and growth habit. A genetic study was conducted to examine the genetics behind certain qualitative traits. Growth habit is usually described as a recessive trait inherited by a single gene, and there is no consensus about the position of the locus. The aim of this study was to develop a new genetic linkage map using genic and genomic microsatellite markers and three morphological traits: growth habit, flower color, and pod tip shape. A mapping population consisting of 380 recombinant F10 lines was generated from IAC-UNA × CAL143. A total of 871 microsatellites were screened for polymorphisms among the parents, and a linkage map was obtained with 198 mapped microsatellites. The total map length was 1865.9 cM, and the average distance between markers was 9.4 cM. Flower color and pod tip shape were mapped and segregated at Mendelian ratios, as expected. The segregation ratio and linkage data analyses indicated that the determinacy growth habit was inherited as two independent and dominant genes, and a genetic model is proposed for this trait.
Features
This publication contains information about 122 features:
Feature NameUniquenameType
PVBR-185PVBR-185genetic_marker
PVBR-191PVBR-191genetic_marker
PVBR-198PVBR-198genetic_marker
PVBR-201PVBR-201genetic_marker
PVBR-213PVBR-213genetic_marker
PVBR-218PVBR-218genetic_marker
PVBR-233PVBR-233genetic_marker
PVBR-235PVBR-235genetic_marker
PVBR-243PVBR-243genetic_marker
PVBR-255PVBR-255genetic_marker
PVBR-269PVBR-269genetic_marker
PV-taaa003PV-taaa003genetic_marker
PV-taaaa001PV-taaaa001genetic_marker
PV-tgtt001PV-tgtt001genetic_marker
SSR-IAC130SSR-IAC130genetic_marker
SSR-IAC132SSR-IAC132genetic_marker
SSR-IAC137SSR-IAC137genetic_marker
SSR-IAC142SSR-IAC142genetic_marker
SSR-IAC145SSR-IAC145genetic_marker
SSR-IAC150SSR-IAC150genetic_marker
SSR-IAC158SSR-IAC158genetic_marker
Flower colorflower color-Vheritable_phenotypic_marker

Pages

Featuremaps
This publication contains information about 1 maps:
Map Name
Bean-CAL143/IAC-UNA-RIL
Stocks
This publication contains information about 3 stocks:
Stock NameUniquenameType
CAL143CAL143accession
IAC-UNAIAC-UNAaccession
CAL143/IAC-UNA-RILCAL143/IAC-UNA-RILpopulation
Properties
Additional details for this publication include:
Property NameValue
URLhttps://link.springer.com/article/10.1007/s11032-010-9453-x