生物
基因组
种内竞争
丰度(生态学)
环境DNA
霰弹枪测序
生态学
进化生物学
计算生物学
DNA测序
生物多样性
DNA
遗传学
基因
作者
Yinqiu Ji,Tea Huotari,Tomas Roslin,Niels Martin Schmidt,Jiaxin Wang,Douglas W. Yu,Otso Ovaskainen
标识
DOI:10.1111/1755-0998.13057
摘要
Abstract The accurate quantification of eukaryotic species abundances from bulk samples remains a key challenge for community ecology and environmental biomonitoring. We resolve this challenge by combining shotgun sequencing, mapping to reference DNA barcodes or to mitogenomes, and three correction factors: (a) a percent‐coverage threshold to filter out false positives, (b) an internal‐standard DNA spike‐in to correct for stochasticity during sequencing, and (c) technical replicates to correct for stochasticity across sequencing runs. The SPIKEPIPE pipeline achieves a strikingly high accuracy of intraspecific abundance estimates (in terms of DNA mass) from samples of known composition (mapping to barcodes R 2 = .93, mitogenomes R 2 = .95) and a high repeatability across environmental‐sample replicates (barcodes R 2 = .94, mitogenomes R 2 = .93). As proof of concept, we sequence arthropod samples from the High Arctic, systematically collected over 17 years, detecting changes in species richness, species‐specific abundances, and phenology. SPIKEPIPE provides cost‐efficient and reliable quantification of eukaryotic communities.
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