直接聚合酶链式反应满足高通量测序——无需DNA提取的摇蚊群落代谢编码

N. Röder, K. Schwenk
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引用次数: 0

摘要

水生新兴昆虫群落是水生和陆地生态系统之间的重要纽带,但研究它们既昂贵又耗时,因为它们通常种类繁多且数量过剩。元条形码是研究节肢动物群落组成的一种有价值的工具,然而高通量应用,如生物监测,需要具有成本效益和用户友好的程序。为了研究在元条形码中是否可以省略耗时和劳动密集型的DNA提取步骤,我们研究了使用标准DNA提取与直接PCR方案的检出率和个体读取丰度的差异。对双翅目手蛾科已知组成的人工群落和自然群落进行了提取和不提取DNA的元条形码,比较了检出率、个体reads丰度和存在-缺失群落组成。我们发现,本文提出的直接PCR元条形码新方法不会改变检测率,并且对人工创建的群落中的个体读码丰度影响较小。此外,两种方法的存在-缺失群落组成具有高度可比性。综上所述,我们的研究表明,直接PCR方法可以应用于手形动物元条形码方法,并可能应用于更广泛的节肢动物类群,使我们能够在未来更有效地研究群落。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Direct PCR meets high-throughput sequencing – metabarcoding of chironomid communities without DNA extraction
Aquatic emergent insect communities form an important link between aquatic and terrestrial ecosystems, yet studying them is costly and time-consuming as they are usually diverse and superabundant. Metabarcoding is a valuable tool to investigate arthropod community compositions, however high-throughput applications, such as for biomonitoring, require cost-effective and user-friendly procedures. To investigate if the time-consuming and labour-intensive DNA extraction step can be omitted in metabarcoding, we studied the difference in detection rates and individual read abundance using standard DNA extraction versus direct PCR protocols. Metabarcoding with and without DNA extraction was performed with artificially created communities of known composition as well as on natural communities both of the dipteran family Chironomidae to compare detection rates, individual read abundances and presence-absence community composition. We found that the novel approach of direct PCR metabarcoding presented here did not alter detection rates and had a minor effect on individual read abundances in artificially created communities. Furthermore, presence-absence community compositions of natural chironomid communities were highly comparable using both approaches. In conclusion, we showed that direct PCR protocols can be applied in chironomid metabarcoding approaches, with possible application for a wider range of arthropod taxa, enabling us to study communities more efficiently in the future.
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来源期刊
Metabarcoding and Metagenomics
Metabarcoding and Metagenomics Agricultural and Biological Sciences-Animal Science and Zoology
CiteScore
5.40
自引率
0.00%
发文量
25
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