Department of Biology, Johns Hopkins University, Baltimore, MD 21218, USA.
Genes (Basel). 2019 Mar 14;10(3):220. doi: 10.3390/genes10030220.
In the past decades, the study of microbial life through shotgun metagenomic sequencing has rapidly expanded our understanding of environmental, synthetic, and clinical microbial communities. Here, we review how shotgun metagenomics has affected the field of halophilic microbial ecology, including functional potential reconstruction, virus⁻host interactions, pathway selection, strain dispersal, and novel genome discoveries. However, there still remain pitfalls and limitations from conventional metagenomic analysis being applied to halophilic microbial communities. Deconvolution of halophilic metagenomes has been difficult due to the high G + C content of these microbiomes and their high intraspecific diversity, which has made both metagenomic assembly and binning a challenge. Halophiles are also underrepresented in public genome databases, which in turn slows progress. With this in mind, this review proposes experimental and analytical strategies to overcome the challenges specific to the halophilic microbiome, from experimental designs to data acquisition and the computational analysis of metagenomic sequences. Finally, we speculate about the potential applications of other next-generation sequencing technologies in halophilic communities. RNA sequencing, long-read technologies, and chromosome conformation assays, not initially intended for microbiomes, are becoming available in the study of microbial communities. Together with recent analytical advancements, these new methods and technologies have the potential to rapidly advance the field of halophile research.
在过去的几十年中,通过高通量宏基因组测序研究微生物生命,极大地扩展了我们对环境、合成和临床微生物群落的理解。在这里,我们回顾了高通量宏基因组学如何影响嗜盐微生物生态学领域,包括功能潜力重建、病毒-宿主相互作用、途径选择、菌株传播和新基因组的发现。然而,将传统宏基因组分析应用于嗜盐微生物群落仍然存在一些缺陷和限制。由于这些微生物组的高 GC 含量和高度的种内多样性,使得嗜盐宏基因组的去卷积变得困难,这使得宏基因组组装和分类都具有挑战性。嗜盐菌在公共基因组数据库中的代表性也不足,这反过来又减缓了研究进展。有鉴于此,本综述提出了一些实验和分析策略,以克服嗜盐微生物组特有的挑战,从实验设计到宏基因组序列的数据获取和计算分析。最后,我们推测了其他下一代测序技术在嗜盐微生物群落中的潜在应用。RNA 测序、长读长技术和染色体构象分析,最初并不是为微生物组设计的,现在也可用于微生物组的研究。这些新方法和技术与最近的分析进展一起,有可能迅速推动嗜盐菌研究领域的发展。