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通过微宇宙实验研究水层和间隙水中细胞外酶介导的营养物质再生。

Nutrient regeneration mediated by extracellular enzymes in water column and interstitial water through a microcosm experiment.

机构信息

Key Laboratory of Algal Biology, State Key Laboratory of Freshwater Ecology and Biotechnology, Institute of Hydrobiology, the Chinese Academy of Sciences, 7# Donghu South Road, Wuhan 430072, China.

Institute for Biological Resources and Marine Biotechnologies (IRBIM-CNR), Italian National Research Council, 98122 Messina, Italy.

出版信息

Sci Total Environ. 2019 Jun 20;670:982-992. doi: 10.1016/j.scitotenv.2019.03.297. Epub 2019 Mar 20.

Abstract

In coastal lakes the role of microorganisms in driving nutrients regeneration at different water depths and in sediments is not yet fully understood. The dynamics of microbial (algal and bacterial) abundance and bacterial activities involved in organic matter transformation were measured, together with nutrient concentrations, through a microcosm experiment set up using the oligotrophic Faro lake as a study model over a total period of 15 days and with a four-day frequency. Water column at different depths (surface, middle and bottom) and interstitial water obtained by sediment centrifugation were used in appropriate ratios (mixed 1:1 with surface waters) to fill 21-Litre plastic aquaria in order to simulate processes occurring in natural conditions. At early experimental period, the sharp decrease of dissolved organic nutrients and the abundant production of leucine aminopeptidase (LAP) and alkaline phosphatase (AP) in correspondence with high phytoplankton abundance in bottom and interstitial water reflected the relevance of organic nutrients for inorganic nutrients regeneration and phytoplankton growth. Size fractionation of LAP and AP as well as the positive relationship between microbial compartments suggested that bacteria and phytoplankton worked in close reciprocal synergy, and coupling of nitrogen and phosphorus regeneration, especially in bottom and interstitial waters, was observed. At later experimental period, the change in bacterial community, especially the increase of filamentous shaped cells, together with a simultaneous increase of protozoan abundance indicated that nutrient replenishment made the microbial loop structure more competitive. In oligotrophic conditions, such as those in Faro lake, organic nutrient enrichment of bottom and interstitial waters was associated with changes in the bacterial community, with consequent stimulation of extracellular enzymes to support phytoplankton growth. Nutrient availability from microbial regeneration resulted in an increased complexity of the microbial loop structure, with bacteria and phytoplankton adopting specific strategies to respond to the changing environment.

摘要

在沿海湖泊中,微生物在不同水深和沉积物中驱动营养物质再生的作用尚未完全了解。本研究通过微宇宙实验,以寡营养的法罗湖为研究模型,共进行了 15 天,每 4 天测量一次,测量了微生物(藻类和细菌)丰度和参与有机质转化的细菌活性的动态变化,以及营养物质浓度。通过使用湖水和沉积物离心获得的中间水按适当比例(与表层水 1:1 混合)填充 21 升塑料水族箱,以模拟自然条件下发生的过程。在实验早期,溶解有机营养物质的急剧减少和亮氨酸氨肽酶(LAP)和碱性磷酸酶(AP)的大量产生,与底层和中间水中高浮游植物丰度相对应,反映了有机营养物质对无机营养物质再生和浮游植物生长的重要性。LAP 和 AP 的大小分级以及微生物区室之间的正相关关系表明,细菌和浮游植物密切互惠协同作用,特别是在底层和中间水中,观察到氮磷再生的耦合。在实验后期,细菌群落发生变化,特别是丝状细胞的增加,同时原生动物丰度增加,表明营养物质的补充使微生物环结构更具竞争力。在法罗湖等寡营养条件下,底层和中间水的有机营养物质富集与细菌群落的变化有关,继而刺激细胞外酶以支持浮游植物的生长。微生物再生带来的营养物质可用性增加了微生物环结构的复杂性,细菌和浮游植物采用特定策略来应对不断变化的环境。

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