Association mapping of starch chain length distribution and amylose content in pea (Pisum sativum L.) using carbohydrate metabolism candidate genes

Publication Overview
TitleAssociation mapping of starch chain length distribution and amylose content in pea (Pisum sativum L.) using carbohydrate metabolism candidate genes
AuthorsCarpenter MA, Shaw M, Cooper RD, Frew TJ, Butler RC, Murray SR, Moya L, Coyne CJ, Timmerman-Vaughan GM
TypeJournal Article
Journal NameBMC plant biology
Volume17
Issue1
Year2017
Page(s)132
CitationCarpenter MA, Shaw M, Cooper RD, Frew TJ, Butler RC, Murray SR, Moya L, Coyne CJ, Timmerman-Vaughan GM. Association mapping of starch chain length distribution and amylose content in pea (Pisum sativum L.) using carbohydrate metabolism candidate genes. BMC plant biology. 2017 Aug 01; 17(1):132.

Abstract

BACKGROUND
Although starch consists of large macromolecules composed of glucose units linked by α-1,4-glycosidic linkages with α-1,6-glycosidic branchpoints, variation in starch structural and functional properties is found both within and between species. Interest in starch genetics is based on the importance of starch in food and industrial processes, with the potential of genetics to provide novel starches. The starch metabolic pathway is complex but has been characterized in diverse plant species, including pea.

RESULTS
To understand how allelic variation in the pea starch metabolic pathway affects starch structure and percent amylose, partial sequences of 25 candidate genes were characterized for polymorphisms using a panel of 92 diverse pea lines. Variation in the percent amylose composition of extracted seed starch and (amylopectin) chain length distribution, one measure of starch structure, were characterized for these lines. Association mapping was undertaken to identify polymorphisms associated with the variation in starch chain length distribution and percent amylose, using a mixed linear model that incorporated population structure and kinship. Associations were found for polymorphisms in seven candidate genes plus Mendel's r locus (which conditions the round versus wrinkled seed phenotype). The genes with associated polymorphisms are involved in the substrate supply, chain elongation and branching stages of the pea carbohydrate and starch metabolic pathways.

CONCLUSIONS
The association of polymorphisms in carbohydrate and starch metabolic genes with variation in amylopectin chain length distribution and percent amylose may help to guide manipulation of pea seed starch structural and functional properties through plant breeding.

Features
This publication contains information about 32 features:
Feature NameUniquenameType
Starch synthase II_2Starch synthase II_2genetic_marker
Sucrose phosphataseSucrose phosphatasegenetic_marker
Sucrose phosphate synthaseSucrose phosphate synthasegenetic_marker
Sucrose synthaseSucrose synthasegenetic_marker
UDP-glucose pyrophosphorylase_1UDP-glucose pyrophosphorylase_1genetic_marker
UDP-glucose pyrophosphorylase_2UDP-glucose pyrophosphorylase_2genetic_marker
α-1,4-glucan phosphorylase Lα-1,4-glucan phosphorylase Lgenetic_marker

Pages

Stocks
This publication contains information about 85 stocks:
Stock NameUniquenameType
No. 3843No. 3843accession
No. S-653No. S-653accession
No. S-688No. S-688accession
KELINAKELINAaccession
SIVIKKASIVIKKAaccession
FLOFLOaccession
ROGERS ACEROGERS ACEaccession
No. 4No. 4accession
VATANA MATARVATANA MATARaccession
TUNG HAUNTUNG HAUNaccession
G 9173G 9173accession
Col. No. D-45Col. No. D-45accession
MANGETOUT CORNE DE BELEIRMANGETOUT CORNE DE BELEIRaccession
Aa92Aa92accession
Aa108Aa108accession
WILLIAM MASSEY, LINE 3WILLIAM MASSEY, LINE 3accession
Aa175Aa175accession
G 16703G 16703accession
HINDUKUSCHHINDUKUSCHaccession
HODINGER FUTTERERBSEHODINGER FUTTERERBSEaccession
POPULATIONPOPULATIONaccession
G 11058G 11058accession
FOLI NO. 2FOLI NO. 2accession
AMPLISSIMO VIKTORIA UKRAINSKAYAAMPLISSIMO VIKTORIA UKRAINSKAYAaccession
AMPLISSIMO ZAZERSKIJAMPLISSIMO ZAZERSKIJaccession

Pages

Properties
Additional details for this publication include:
Property NameValue
Publication ModelElectronic
ISSN1471-2229
eISSN1471-2229
Publication Date2017 Aug 01
Journal AbbreviationBMC Plant Biol.
DOI10.1186/s12870-017-1080-9
Elocation10.1186/s12870-017-1080-9
Journal CountryEngland
LanguageEnglish
Language Abbreng
Publication TypeJournal Article