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Efficient COI barcoding using high throughput single-end 400bp sequencing

delete2020-12-04
delete25
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OA
AI
C
Chentao Yang
Z
Zheng, YX
S
Shangjin Tan
G
Guanliang Meng
W
Wei Rao
杨采青 (Cai‐qing Yang)
D
David G. Bourne
P
Paul A. O’Brien
许俊强 封面图
许俊强 (Junqiang Xu)
S
Sha Liao
A
Ao Chen
X
Xiaowei Chen
X
Xinrui Jia
张爱兵 (Ai‐bing Zhang) *
S
Shanlin Liu *
DOI:10.1186/s12864-020-07255-wdelete
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摘要

摘要

En 中文
BackgroundOver the last decade, the rapid development of high-throughput sequencing platforms has accelerated species description and assisted morphological classification through DNA barcoding. However, the current high-throughput DNA barcoding methods cannot obtain full-length barcode sequences due to read length limitations (e.g. a maximum read length of 300bp for the Illumina's MiSeq system), or are hindered by a relatively high cost or low sequencing output (e.g. a maximum number of eight million reads per cell for the PacBio's SEQUEL II system).ResultsPooled cytochrome c oxidase subunit I (COI) barcodes from individual specimens were sequenced on the MGISEQ-2000 platform using the single-end 400bp (SE400) module. We present a bioinformatic pipeline, HIFI-SE, that takes reads generated from the 5 and 3 ' ends of the COI barcode region and assembles them into full-length barcodes. HIFI-SE is written in Python and includes four function modules of filter, assign, assembly and taxonomy. We applied the HIFI-SE to a set of 845 samples (30 marine invertebrates, 815 insects) and delivered a total of 747 fully assembled COI barcodes as well as 70 Wolbachia and fungi symbionts. Compared to their corresponding Sanger sequences (72 sequences available), nearly all samples (71/72) were correctly and accurately assembled, including 46 samples that had a similarity score of 100% and 25 of ca. 99%.Conclusions The HIFI-SE pipeline represents an efficient way to produce standard full-length barcodes, while the reasonable cost and high sensitivity of our method can contribute considerably more DNA barcodes under the same budget. Our method thereby advances DNA-based species identification from diverse ecosystems and increases the number of relevant applications.
Keyword:
DNA barcode
High-throughput sequencing
MGISEQ-2000
SE400
COI
Biodiversity
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期刊

BMC Genomics 封面图
BMC Genomics
IF:
3.7
论文数:
1.9W
被引数:
5.2W

机构

C
capital normal university
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6.4K
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J
James Cook University
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7.8K
论文数: 7.9K
被引数: 1.2W
B
beijing genomics institute (bgi)
学者数:
5.2K
论文数: 2.1K
被引数: 7
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