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首页> 外文期刊>Trends in Ecology & Evolution >Next-[268TD$DIF]Generation Global Biomonitoring:Large-scale, Automated Reconstruction of Ecological Networks
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Next-[268TD$DIF]Generation Global Biomonitoring:Large-scale, Automated Reconstruction of Ecological Networks

机译:下一步 - [268TD $ DIF]全球生物监测:大规模,自动重建生态网络

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摘要

We foresee a new global-scale, ecological approach to biomonitoring emerging within the next decade that can detect ecosystem change accurately, cheaply, and generically. Next-generation sequencing of DNA sampled from the Earth's environments would provide data for the relative abundance of operational taxonomic units or ecological functions. Machine-learning methods would then be used to reconstruct the ecological networks of interactions implicit in the raw NGS data. Ultimately, we envision the development of autonomous samplers that would sample nucleic acids and upload NGS sequence data to the cloud for network reconstruction. Large numbers of these samplers, in a global array, would allow sensitive automated biomonitoring of the Earth's major ecosystems at high spatial and temporal resolution, revolutionising our understanding of ecosystem change.
机译:我们预计新的全球规模,在未来十年内出现的生物监测方法,可以检测生态系统准确,便宜,仿制地改变生态系统。 从地球环境中采样的DNA的下一代测序将为运行分类单位或生态功能的相对丰富提供数据。 然后,可以使用机器学习方法来重建原始NGS数据中隐含的相互作用的生态网络。 最终,我们设想了自主采样器的发展,这些采样器将捕获核酸并将NGS序列数据上传到云进行网络重建。 在全球阵列中,大量这些采样器将在高空间和时间分辨率下允许地球主要生态系统的敏感自动化生物监控,彻底改变我们对生态系统变革的理解。

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