...
首页> 外文期刊>Applied Microbiology and Biotechnology >Illumina sequencing of bacterial 16S rDNA and 16S rRNA reveals seasonal and species-specific variation in bacterial communities in four moss species
【24h】

Illumina sequencing of bacterial 16S rDNA and 16S rRNA reveals seasonal and species-specific variation in bacterial communities in four moss species

机译:illumina序列的细菌16s rdna和16s rRNA揭示了四种苔藓物种中细菌群落的季节性和物种特异性变异

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

In order to better understand the factors that influence bacterial diversity and community composition in moss-associated bacteria, a study of bacterial communities in four moss species collected in three seasons was carried out via high-throughput sequencing of 16S rDNA and 16S rRNA. Moss species included Cratoneuron filicinum, Pylaisiella polyantha, Campyliadelphus polygamum, and Grimmia pilifera, with samples collected in May, July, and October 2015 from rocks at Beijing Songshan National Nature Reserve. In total, the bacterial richness and diversity were high regardless of moss species, sampling season, or data source (DNA vs. RNA). Bacterial sequences were assigned to a total of 558 OTUs and 279 genera in 16 phyla. Proteobacteria and Actinobacteria were the two most abundant phyla, and Cellvibrio, Lapillicoccus, Jatrophihabitans, Friedmanniella, Oligoflexus, and Bosea the most common genera in the samples. A clustering algorithm and principal coordinate analysis revealed that C. filicinum and C. polygamum had similar bacterial communities, as did P. polyantha and G. pilifera. Metabolically active bacteria showed the same pattern in addition to seasonal variation: bacterial communities were most similar in summer and autumn, looking at each moss species separately. In contrast, DNA profiles lacked obvious seasonal dynamics. A partial least squares discriminant analysis identified three groups of samples that correlated with differences in moss species resources. Although bacterial community composition did vary with the sampling season and data source, these were not the most important factors influencing bacterial communities. Previous reports exhibited that mosses have been widely used in biomonitoring of air pollution by enriching some substances or elements in the moss-tag technique and the abundant moss associated bacteria might also be important components involved in the related biological processes. Thus, this survey not only enhanced our understanding of the factors which influence microbial communities in mosses but also would be helpful for better use and development of the moss-tag technique in the environmental biomonitoring.
机译:为了更好地了解影响苔藓相关细菌中的细菌多样性和群落组成的因素,通过16S rDNA和16s rRNA的高通量测序进行三个季节收集的四个苔藓物种中的细菌社区的研究。苔藓物种包括Cratoneuron Filicinum,Pylaisiella polyantha,Campyliadelphus Polygamum和Grimmia pilifera,在5月,7月和2015年10月收集的样品来自北京松山国家自然保护区的岩石。总共,无论苔藓物种,抽样季节或数据源(DNA对阵RNA),细菌丰富和多样性都很高。将细菌序列分配到16μg558oTus和279属中。植物体外和肌动菌是两种最丰富的植物和细胞,氯吡咯,Jatrophihabitans,Friedmanniella,Oligoflexus和Bosea最常见的样品中最常见的属。聚类算法和主坐标分析显示,C.氟氨啶和C.Polygamum具有类似的细菌群落,如P. Polyantha和G. pilifera。除了季节性变异之外,代谢活性细菌表现出相同的模式:夏季和秋季的细菌社区最相似,分别看每个苔藓。相比之下,DNA配置文件缺乏明显的季节性动态。局部最小二乘判别分析确定了三组样本,其与苔藓物种资源的差异相关。虽然细菌群落组成与采样季节和数据源不同,但这些不是影响细菌社区的最重要因素。以前的报道表明,通过富集苔藓标签技术中的一些物质或元素,苔藓已被广泛用于空气污染的生物监测,并且丰富的苔藓相关细菌可能也是相关生物过程中涉及的重要组成部分。因此,这项调查不仅提高了我们对影响苔藓中微生物社区的因素的理解,而且可以有助于更好地使用和开发环境生物监测中的苔藓标签技术。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号