Literature DB >> 12582867

Mapping QTLs for grain hardness and puroindoline content in wheat ( Triticum aestivum L.).

G Igrejas1, P Leroy, G Charmet, T Gaborit, D Marion, G Branlard.   

Abstract

Genes for puroindoline-a (Pin-a), puroindoline-b (Pin-b) and grain-softness proteins (GSP) have been shown to be linked to the dominant Ha locus responsible for the soft texture of the grain. Though linkage has been demonstrated of the puroindoline genes to the Ha locus, there is no clear evidence that puroindoline content is the product of the gene Ha. A segregating population of 115 recombinant inbred lines (RILs) originating from a cross between the hexaploid Synthetic wheat ( Triticum durum x Aegilops tauschii, W 7984) and the cultivar 'Opata' (M 85) was studied in two different experimental years to detect Quantitative Trait Loci (QTLs) for three traits: grain hardness (Hard), puroindoline-a (Pin-a) and puroindoline-b (Pin-b) contents. The detection of QTLs was performed using marker linear regression. Negative correlation coefficients (-0.86 and -0.80) were identified between grain hardness and puroindoline content (a and b, respectively) on data obtained in 1996. Results obtained in 1999 confirmed the negative correlation between Hard and Pin-a (-0.73); however a positive correlation coefficient was found with Pin-b content (0.41). Total phenotypic variation explained by each QTL was calculated (R2). For each of the Hard, Pin-a and Pin-b traits one major QTL was detected on the short arm of chromosome 5D, located close to the mta9 allele (puroindoline-a). For the first year (1996) the QTL in this region explained around 63% of the phenotypic variability in grain hardness, 77% in Pin-a and 45% in Pin-b contents. These values were confirmed in trials carried out in 1999 with a R2 value of 0.71, 0.72 and 0.25 for Hard, Pin-a and Pin-b, respectively. In 1996 and 1999 a second major QTL was detected for grain hardness on the long arm of the same chromosome. Present results indicate that it cannot be definitely concluded that puroindoline content represents a linear explanation for variations in grain hardness.

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Year:  2002        PMID: 12582867     DOI: 10.1007/s00122-002-0971-8

Source DB:  PubMed          Journal:  Theor Appl Genet        ISSN: 0040-5752            Impact factor:   5.699


  13 in total

1.  Chromosome mapping and identification of amphiphilic proteins of hexaploid wheat kernels.

Authors:  N Amiour; M Merlino; P Leroy; G Branlard
Journal:  Theor Appl Genet       Date:  2003-09-06       Impact factor: 5.699

Review 2.  Molecular genetics of puroindolines and related genes: regulation of expression, membrane binding properties and applications.

Authors:  Mrinal Bhave; Craig F Morris
Journal:  Plant Mol Biol       Date:  2007-11-30       Impact factor: 4.076

3.  Genetic and biochemical analysis of common wheat cultivars lacking puroindoline a.

Authors:  L Gazza; F Nocente; P K W Ng; N E Pogna
Journal:  Theor Appl Genet       Date:  2005-01-19       Impact factor: 5.699

4.  Chromosomal loci associated with endosperm hardness in a malting barley cross.

Authors:  Cassandra K Walker; J F Panozzo; R Ford; P Eckermann; D Moody; A Lehmensiek; R Appels
Journal:  Theor Appl Genet       Date:  2010-09-10       Impact factor: 5.699

5.  Determination and evaluation of the sequence and textural effects of the puroindoline a and puroindoline b genes in a population of synthetic hexaploid wheat.

Authors:  K R Gedye; C F Morris; A D Bettge
Journal:  Theor Appl Genet       Date:  2004-09-22       Impact factor: 5.699

6.  Mapping and proteomic analysis of albumin and globulin proteins in hexaploid wheat kernels (Triticum aestivum L.).

Authors:  Marielle Merlino; Philippe Leroy; Christophe Chambon; Gérard Branlard
Journal:  Theor Appl Genet       Date:  2009-03-11       Impact factor: 5.699

Review 7.  The determinants of grain texture in cereals.

Authors:  A Nadolska-Orczyk; S Gasparis; W Orczyk
Journal:  J Appl Genet       Date:  2009       Impact factor: 3.240

8.  Fine mapping and marker development for the crossability gene SKr on chromosome 5BS of hexaploid wheat (Triticum aestivum L.).

Authors:  Walid Alfares; Annaig Bouguennec; François Balfourier; Georges Gay; Hélène Bergès; Sonia Vautrin; Pierre Sourdille; Michel Bernard; Catherine Feuillet
Journal:  Genetics       Date:  2009-08-03       Impact factor: 4.562

Review 9.  Molecular genetics of puroindolines and related genes: allelic diversity in wheat and other grasses.

Authors:  Mrinal Bhave; Craig F Morris
Journal:  Plant Mol Biol       Date:  2007-11-30       Impact factor: 4.076

10.  QTL detection for wheat kernel size and quality and the responses of these traits to low nitrogen stress.

Authors:  Fa Cui; Xiaoli Fan; Mei Chen; Na Zhang; Chunhua Zhao; Wei Zhang; Jie Han; Jun Ji; Xueqiang Zhao; Lijuan Yang; Zongwu Zhao; Yiping Tong; Tao Wang; Junming Li
Journal:  Theor Appl Genet       Date:  2015-12-10       Impact factor: 5.699

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