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美国伊利湖西部水华期间昼夜代谢功能的宏转录组学分析

Metatranscriptomic Analyses of Diel Metabolic Functions During a Bloom in Western Lake Erie (United States).

作者信息

Davenport Emily J, Neudeck Michelle J, Matson Paul G, Bullerjahn George S, Davis Timothy W, Wilhelm Steven W, Denney Maddie K, Krausfeldt Lauren E, Stough Joshua M A, Meyer Kevin A, Dick Gregory J, Johengen Thomas H, Lindquist Erika, Tringe Susannah G, McKay Robert Michael L

机构信息

Department of Biological Sciences, Bowling Green State University, Bowling Green, OH, United States.

Cooperative Institute for Great Lakes Research (CIGLR), University of Michigan, Ann Arbor, MI, United States.

出版信息

Front Microbiol. 2019 Sep 10;10:2081. doi: 10.3389/fmicb.2019.02081. eCollection 2019.

Abstract

This study examined diel shifts in metabolic functions of spp. during a 48-h Lagrangian survey of a toxin-producing cyanobacterial bloom in western Lake Erie in the aftermath of the 2014 Toledo Water Crisis. Transcripts mapped to the genomes of recently sequenced lower Great Lakes isolates showed distinct patterns of gene expression between samples collected across day (10:00 h, 16:00 h) and night (22:00 h, 04:00 h). Daytime transcripts were enriched in functions related to Photosystem II (e.g., ), nitrogen and phosphate acquisition, cell division (), heat shock response (, ), and uptake of inorganic carbon (, ). Genes transcribed during nighttime included those involved in phycobilisome protein synthesis and Photosystem I core subunits. Hierarchical clustering and principal component analysis (PCA) showed a tightly clustered group of nighttime expressed genes, whereas daytime transcripts were separated from each other over the 48-h duration. Lack of uniform clustering within the daytime transcripts suggested that the partitioning of gene expression in is dependent on both circadian regulation and physicochemical changes within the environment.

摘要

本研究在2014年托莱多水危机后,对伊利湖西部产毒素蓝藻水华进行了48小时的拉格朗日调查,期间检测了某物种代谢功能的日变化。与最近测序的大湖下游分离株基因组比对的转录本显示,在白天(10:00、16:00)和夜间(22:00、04:00)采集的样本之间,基因表达模式明显不同。白天的转录本在与光系统II(如……)、氮和磷获取、细胞分裂(……)、热休克反应(……)以及无机碳摄取(……)相关的功能中富集。夜间转录的基因包括参与藻胆体蛋白合成和光系统I核心亚基的基因。层次聚类和主成分分析(PCA)显示,夜间表达的基因紧密聚类,而白天的转录本在48小时内相互分离。白天转录本中缺乏统一聚类表明,该物种基因表达的划分既依赖于昼夜节律调节,也依赖于环境中的物理化学变化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/698c/6746948/345a56d0edc5/fmicb-10-02081-g001.jpg

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