A Long-Read Transcriptome Assembly of Cotton (Gossypium hirsutum L.) and Intraspecific Single Nucleotide Polymorphism Discovery.

Publication Overview
TitleA Long-Read Transcriptome Assembly of Cotton (Gossypium hirsutum L.) and Intraspecific Single Nucleotide Polymorphism Discovery.
AuthorsAshrafi H, Hulse-Kemp AM, Wang F, Yang SS, Guan X, Jones DC, Matvienko M, Mockaitis K, Chen ZJ, Stelly DM, Van Deynze A
TypeJournal Article
Journal NameThe Plant Genome
Volume8
Issue2
Year2015
Page(s)1-14
CitationAshrafi H, Hulse-Kemp AM, Wang F, Yang SS, Guan X, Jones DC, Matvienko M, Mockaitis K, Chen ZJ, Stelly DM, Van Deynze A. A Long-Read Transcriptome Assembly of Cotton (Gossypium hirsutum L.) and Intraspecific Single Nucleotide Polymorphism Discovery. 2015; 8(2):1-14.

Abstract

Upland cotton (Gossypium hirsutum L.) has a narrow germplasm base, which constrains marker development and hampers intraspecific breeding. A pressing need exists for high-throughput single nucleotide polymorphism (SNP) markers that can be readily applied to germplasm in breeding and breeding-related research programs. Despite progress made in developing new sequencing technologies during the past decade, the cost of sequencing remains substantial when one is dealing with numerous samples and large genomes. Several strategies have been proposed to lower the cost of sequencing for multiple genotypes of large-genome species like cotton, such as transcriptome sequencing and reduced-representation DNA sequencing. This paper reports the development of a transcriptome assembly of the inbred line Texas Marker-1 (TM-1), a genetic standard for cotton, its usefulness as a reference for RNA sequencing (RNA-seq)-based SNP identification, and the availability of transcriptome sequences of four other cotton cultivars. An assembly of TM-1 was made using Roche 454 transcriptome reads combined with an assembly of all available public expressed sequence tag (EST) sequences of TM-1. The TM-1 assembly consists of 72,450 contigs with a total of 70 million bp. Functional predictions of the transcripts were estimated by alignment to selected protein databases. Transcriptome sequences of the five lines, including TM-1, were obtained using an Illumina Genome Analyzer-II, and the short reads were mapped to the TM-1 assembly to discover SNPs among the five lines. We identified >14,000 unfiltered allelic SNPs, of which ∼3,700 SNPs were retained for assay development after applying several rigorous filters. This paper reports availability of the reference transcriptome assembly and shows its utility in developing intraspecific SNP markers in upland cotton.
Features
This publication contains information about 14,613 features:
Feature NameUniquenameType
UCD_Gh_M_007548UCD_Gh_M_007548genetic_marker
UCD_Gh_M_007549UCD_Gh_M_007549genetic_marker
UCD_Gh_M_007550UCD_Gh_M_007550genetic_marker
UCD_Gh_M_007551UCD_Gh_M_007551genetic_marker
UCD_Gh_M_007552UCD_Gh_M_007552genetic_marker
UCD_Gh_M_007553UCD_Gh_M_007553genetic_marker
UCD_Gh_M_007554UCD_Gh_M_007554genetic_marker
UCD_Gh_M_007555UCD_Gh_M_007555genetic_marker
UCD_Gh_M_007556UCD_Gh_M_007556genetic_marker
UCD_Gh_M_007557UCD_Gh_M_007557genetic_marker
UCD_Gh_M_007558UCD_Gh_M_007558genetic_marker
UCD_Gh_M_007559UCD_Gh_M_007559genetic_marker
UCD_Gh_M_007560UCD_Gh_M_007560genetic_marker
UCD_Gh_M_007561UCD_Gh_M_007561genetic_marker
UCD_Gh_M_007562UCD_Gh_M_007562genetic_marker
UCD_Gh_M_007563UCD_Gh_M_007563genetic_marker
UCD_Gh_M_007564UCD_Gh_M_007564genetic_marker
UCD_Gh_M_007565UCD_Gh_M_007565genetic_marker
UCD_Gh_M_007566UCD_Gh_M_007566genetic_marker
UCD_Gh_M_007567UCD_Gh_M_007567genetic_marker
UCD_Gh_M_007568UCD_Gh_M_007568genetic_marker
UCD_Gh_M_007569UCD_Gh_M_007569genetic_marker
UCD_Gh_M_007570UCD_Gh_M_007570genetic_marker
UCD_Gh_M_007571UCD_Gh_M_007571genetic_marker
UCD_Gh_M_007572UCD_Gh_M_007572genetic_marker

Pages

Libraries
This publication contains information about 1 libraries:
Library NameUnique NameOrganism
TAMU_CottonSNP63KTAMU_CottonSNP63KGossypium spp.
Properties
Additional details for this publication include:
Property NameValue
URLhttps://dl.sciencesocieties.org/publications/tpg/articles/8/2/plantgenome2014.10.0068