Development and cross-species/genera transferability of microsatellite markers discovered using 454 genome sequencing in chokecherry (Prunus virginiana L.)

Publication Overview
TitleDevelopment and cross-species/genera transferability of microsatellite markers discovered using 454 genome sequencing in chokecherry (Prunus virginiana L.)
AuthorsWang H, Walla JA, Zhong S, Huang D, Dai W
TypeJournal Article
Journal NamePlant cell reports
Volume31
Issue11
Year2012
Page(s)2047-55
CitationWang H, Walla JA, Zhong S, Huang D, Dai W. Development and cross-species/genera transferability of microsatellite markers discovered using 454 genome sequencing in chokecherry (Prunus virginiana L.). Plant cell reports. 2012 Nov; 31(11):2047-55.

Abstract

Chokecherry (Prunus virginiana L.) (2n = 4x = 32) is a unique Prunus species for both genetics and disease-resistance research due to its tetraploid nature and X-disease resistance. However, no genetic and genomic information on chokecherry is available. A partial chokecherry genome was sequenced using Roche 454 sequencing technology. A total of 145,094 reads covering 4.8 Mbp of the chokecherry genome were generated and 15,113 contigs were assembled, of which 11,675 contigs were larger than 100 bp in size. A total of 481 SSR loci were identified from 234 (out of 11,675) contigs and 246 polymerase chain reaction (PCR) primer pairs were designed. Of 246 primers, 212 (86.2 %) effectively produced amplification from the genomic DNA of chokecherry. All 212 amplifiable chokecherry primers were used to amplify genomic DNA from 11 other rosaceous species (sour cherry, sweet cherry, black cherry, peach, apricot, plum, apple, crabapple, pear, juneberry, and raspberry). Thus, chokecherry SSR primers can be transferable across Prunus species and other rosaceous species. An average of 63.2 and 58.7 % of amplifiable chokecherry primers amplified DNA from cherry and other Prunus species, respectively, while 47.2 % of amplifiable chokecherry primers amplified DNA from other rosaceous species. Using random genome sequence data generated from next-generation sequencing technology to identify microsatellite loci appears to be rapid and cost-efficient, particularly for species with no sequence information available. Sequence information and confirmed transferability of the identified chokecherry SSRs among species will be valuable for genetic research in Prunus and other rosaceous species. Key message A total of 246 SSR primers were identified from chokecherry genome sequences. Of which, 212 were confirmed amplifiable both in chokecherry and other 11 other rosaceous species.

Features
This publication contains information about 216 features:
Feature NameUniquenameType
C3977C3977genetic_marker
C4056C4056genetic_marker
C4092C4092genetic_marker
C4121C4121genetic_marker
C4126C4126genetic_marker
C4136C4136genetic_marker
C4230C4230genetic_marker
C4273C4273genetic_marker
C4274-1C4274-1genetic_marker
C4274-2C4274-2genetic_marker
C4274-3C4274-3genetic_marker
C4285C4285genetic_marker
C4399C4399genetic_marker
C4402C4402genetic_marker
C4407C4407genetic_marker
C4441C4441genetic_marker
C4551C4551genetic_marker
C4580C4580genetic_marker
C4581C4581genetic_marker
C4846C4846genetic_marker
C4882C4882genetic_marker
C4940C4940genetic_marker
C5068C5068genetic_marker
C5120C5120genetic_marker
C5226C5226genetic_marker

Pages