Patterns of protist diversity associated with raw sewage in New York City

被引:0
作者
Julia M. Maritz
Theresa A. Ten Eyck
S. Elizabeth Alter
Jane M. Carlton
机构
[1] New York University,Department of Biology, Center for Genomics and Systems Biology
[2] City University of New York,Department of Biology, York College
[3] The Graduate Center of the City University of New York,undefined
来源
The ISME Journal | 2019年 / 13卷
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摘要
Protists are ubiquitous components of terrestrial and aquatic environments, as well as animal and human microbiomes. Despite this, little is known about protists in urban environments. The ~7400-mile sewer system of New York City (NYC) collects human waste from ~8 million human inhabitants as well as from animals, street runoff, and groundwater, providing an ideal system to study these microbes. We used 18S rRNA amplicon sequencing and shotgun metagenomic sequencing to profile raw sewage microbial communities. Raw sewage samples were collected over a 12-month period from 14 treatment plants of the five NYC boroughs, and compared with samples from other environments including soil, stormwater, and sediment. Sewage contained a diverse protist community dominated by free-living clades, and communities were highly differentiated across environments. Seasonal differences in protist composition were observed; however, network analysis and functional profiling demonstrated that sewage communities were robust and functionally consistent. Protists typically associated with human and animal guts or feces were frequently detected. Abundance of these parasites varied significantly both spatially and temporally, suggesting that spikes could reflect trends in the source population. This underscores sewage as a valuable model system for monitoring patterns in urban microbes and provides a baseline protist metagenome of NYC.
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页码:2750 / 2763
页数:13
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  • [1] Leung MH(2014)Indoor-air microbiome in an urban subway network: diversity and dynamics Appl Environ Microbiol. 80 6760-70
  • [2] Wilkins D(2014)Detection of zoonotic pathogens and characterization of novel viruses carried by commensal MBio. 5 e01933-14
  • [3] Li EK(2013) norvegicus in New York City PloS One. 8 e58020-60
  • [4] Kong FK(1795)Digging the New York City skyline: soil fungal communities in green roofs and city parks Proc Biol Sci. 2014 281-9
  • [5] Lee PK(2016)Biogeographic patterns in below-ground diversity in New York City’s Central Park are similar to those observed globally ISME J. 10 751-87
  • [6] Firth C(2015)Urban stress is associated with variation in microbial species composition-but not richness-in Manhattan Int Microbiol. 18 141-16
  • [7] Bhat M(2015)The microbiome of urban waters Cell Syst. 1 72-16
  • [8] Firth MA(2016)Geospatial resolution of human and bacterial diversity with city-scale metagenomics mSystems. 1 e00018-26
  • [9] Williams SH(2016)Urban transit system microbial communities differ by surface type and interaction with humans and the environment mSphere. 1 e00226-100
  • [10] Frye MJ(2014)Microbial community patterns associated with automated teller machine keypads in New York City Appl Microbiol Biotechnol. 98 3317-27