Diversity and potential functional characteristics of phage communities colonizing microplastic biofilms

微塑料 基因组 生物 丰度(生态学) 噬菌体 物种均匀度 生物膜 物种丰富度 生态学 焦测序 微观世界 微生物种群生物学 动物 细菌 遗传学 生物化学 基因 大肠杆菌
作者
Lihua Niu,Shiqin Zhao,Yamei Chen,Yi Li,Guanhua Zou,Ye Tao,Wenlong Zhang,Longfei Wang,Huanjun Zhang
出处
期刊:Environmental Research [Elsevier]
卷期号:219: 115103-115103 被引量:11
标识
DOI:10.1016/j.envres.2022.115103
摘要

The multiple ecological influences and potential microbial degradation of microplastics are generally attributed to the microbial communities colonized on microplastics. Phages play an important role in the composition and function of their bacterial hosts, yet the occurrence and the potential functional characteristics of phages in the biofilms of microplastics have not been known. This study, for the first time, explored the diversity, composition, and potential function characteristics of phage communities living in the biofilms of PP, PE, and PET microplastics and stones, cultured in the same site, via the metagenome method. The results showed that a total of 240 non-redundant virus OTUs (vOTUs), distributed in at least four orders and seven families, were detected from biofilm metagenomes of microplastics. Compared to stones, some phages were selectively enriched by microplastic biofilms, with 13 vOTUs uniquely colonized on three microplastics, and these vOTUs mainly belong to the family Autographiviridae and Podoviridae. Except for the evenness of PP, the richness index, Chao 1 index, and abundance of phage communities of three microplastics were much higher than that of stone. At least 8 bacterial phyla and 72 genera were possibly infected by phages. Compared to the stones, both composition and abundance of the phages and hosts presented significant and strong correlations for three microplastics. Some of the bacterial hosts on microplastics were likely involved in the microplastic degradation, fermenters, nitrogen transformation processes, and so on. A total of 124 encoding auxiliary metabolic genes (AMGs) were detected from viral contigs. The abundance of AMGs in microplastics was much higher than that of stones, which may provide more direct or indirect support for the bacterial degradation of microplastics. This study provides a new perspective on the occurrence and potential functions of phages on microplastic biofilms, thus expanding our understanding of microbial communities on microplastic biofilms.
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