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Denitrification characterization of dissolved oxygen microprofiles in lake surface sediment through analyzing abundance expression community composition and enzymatic activities of denitrifier functional genes

机译:通过分析反硝化功能基因的丰度表达群落组成和酶活性分析湖面沉积物中溶解氧的微观特征

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摘要

The responses of denitrifiers and denitrification ability to dissolved oxygen (DO) concent in different layers of surface lake sediments are still poorly understood. Here, the optimal denitrification condition was constructed based on response surface methodology (RSM) to analyze the denitrification characteristics of surface sediments. The aerobic zone (AEZ), hypoxic zone (HYZ), up-anoxic zone (ANZ-1) and sub-anoxic zone (ANZ-2) were partitioned based on the oxygen contents, and sediments were collected using a customized-designed sub-millimeter scale sampling device. Integrated real-time quantitative PCR, Illumina Miseq-based sequencing and denitrifying enzyme activities analysis revealed that denitrification characteristics varied among different DO layers. Among the four layers, the DNA abundance and RNA expression levels of norB, nirS and nosZ were the highest at the aerobic layer, hypoxic layer and up-axoic layer, respectively. The hypoxia and up-anaerobic layer were the active nitrogen removal layers, since these two layers displayed the highest DNA abundance, RNA expression level and enzyme activities of denitrification functional genes. The abundance of major denitrifying bacteria showed significant differences among layers, with Azoarcus, Pseudogulbenkiania and Rhizobium identified as the main nirS, nirK and nosZ-based denitrifiers. Pearson’s correlation revealed that the response of denitrifiers to environmental factors differed greatly among DO layers. Furthermore, napA showed higher DNA abundance and RNA expression level in the aerobic and hypoxic layers than anaerobic layers, indicating that aerobic denitrifiers might play important roles at these layers.Electronic supplementary materialThe online version of this article (10.1186/s13568-019-0855-9) contains supplementary material, which is available to authorized users.
机译:仍然不太了解反硝化剂和反硝化能力对湖面沉积物不同层中溶解氧(DO)浓度的响应。在此,基于响应面法(RSM)构造了最佳反硝化条件,以分析地表沉积物的反硝化特性。根据氧气含量划分好氧区(AEZ),缺氧区(HYZ),上缺氧区(ANZ-1)和亚缺氧区(ANZ-2),并使用定制设计的子区收集沉积物毫米刻度采样装置。集成的实时定量PCR,基于Illumina Miseq的测序和反硝化酶活性分析表明,不同DO层之间的反硝化特性有所不同。在这四个层中,norB,nirS和nosZ的DNA丰度和RNA表达水平分别在需氧层,低氧层和高轴层中最高。缺氧层和上厌氧层是活性氮去除层,因为这两个层显示了最高的DNA丰度,RNA表达水平和反硝化功能基因的酶活性。主要反硝化细菌的丰度在各层之间显示出显着差异,其中固氮菌,假单胞菌和根瘤菌被确定为主要的基于nirS,nirK和nosZ的反硝化剂。皮尔森(Pearson)的相关性表明,反硝化剂对DO层之间环境因素的响应差异很大。此外,napA在需氧层和低氧层中显示出比厌氧层更高的DNA丰度和RNA表达水平,表明需氧反硝化剂可能在这些层上发挥重要作用。电子补充材料本文的在线版本(10.1186 / s13568-019-0855- 9)包含补充材料,授权用户可以使用。

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