An analysis of Echinacea chloroplast genomes: Implications for future botanical identification.

Publication Dbxref
PMID:28303008
Title
An analysis of Echinacea chloroplast genomes: Implications for future botanical identification.
Publication Type
Journal Article
Additional Publication Type(s)
Research Support, U.S. Gov't, P.H.S.
Series Name
Scientific reports
Volume
7
Publication Year
2017
Issue
1
Page Numbers
216
DOI
10.1038/s41598-017-00321-6
Journal Abbreviation
Sci Rep
EISSN
2045-2322
Publication Date
2017 03 16
Citation
Zhang N, Erickson DL, Ramachandran P, Ottesen AR, Timme RE, Funk VA, Luo Y, Handy SM. An analysis of Echinacea chloroplast genomes: Implications for future botanical identification.. Scientific reports. 2017 03 16; 7(1):216.
ISSN
2045-2322
Language Abbr
eng
Publication Model
Electronic
Authors
Zhang N, Erickson DL, Ramachandran P, Ottesen AR, Timme RE, Funk VA, Luo Y, Handy SM
Language
English
Elocation
10.1038/s41598-017-00321-6
Journal Country
England
Abstract

Echinacea is a common botanical used in dietary supplements, primarily to treat upper respiratory tract infections and to support immune function. There are currently thought to be nine species in the genus Echinacea. Due to very low molecular divergence among sister species, traditional DNA barcoding has not been successful for differentiation of Echinacea species. Here, we present the use of full chloroplast genomes to distinguish between all 9 reported species. Total DNA was extracted from specimens stored at the National Museum of Natural History, Smithsonian Institution, which had been collected from the wild with species identification documented by experts in the field. We used Next Generation Sequencing (NGS) and CLC Genomics Workbench to assemble complete chloroplast genomes for all nine species. Full chloroplasts unambiguously differentiated all nine species, compared with the very few single nucleotide polymorphisms (SNPs) available with core DNA barcoding markers. SNPs for any two Echinacea chloroplast genomes ranged from 181 to 910, and provided robust data for unambiguous species delimitation. Implications for DNA-based species identification assays derived from chloroplast genome sequences are discussed in light of product safety, adulteration and quality issues.

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