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热带水库中的微生物食物网驱动因素

Microbial Food-Web Drivers in Tropical Reservoirs.

作者信息

Domingues Carolina Davila, da Silva Lucia Helena Sampaio, Rangel Luciana Machado, de Magalhães Leonardo, de Melo Rocha Adriana, Lobão Lúcia Meirelles, Paiva Rafael, Roland Fábio, Sarmento Hugo

机构信息

Museu Nacional, Laboratório de Ficologia, Universidade Federal do Rio de Janeiro, Rio de Janeiro, 20940-040, Brazil.

Laboratório de Limnologia, Universidade Federal do Rio de Janeiro, Rio de Janeiro, 21940-590, Brazil.

出版信息

Microb Ecol. 2017 Apr;73(3):505-520. doi: 10.1007/s00248-016-0899-1. Epub 2016 Nov 29.

Abstract

Element cycling in aquatic systems is driven chiefly by planktonic processes, and the structure of the planktonic food web determines the efficiency of carbon transfer through trophic levels. However, few studies have comprehensively evaluated all planktonic food-web components in tropical regions. The aim of this study was to unravel the top-down controls (metazooplankton community structure), bottom-up controls (resource availability), and hydrologic (water residence time) and physical (temperature) variables that affect different components of the microbial food web (MFW) carbon stock in tropical reservoirs, through structural equation models (SEM). We conducted a field study in four deep Brazilian reservoirs (Balbina, Tucuruí, Três Marias, and Funil) with different trophic states (oligo-, meso-, and eutrophic). We found evidence of a high contribution of the MFW (up to 50% of total planktonic carbon), especially in the less-eutrophic reservoirs (Balbina and Tucuruí). Bottom-up and top-down effects assessed through SEM indicated negative interactions between soluble reactive phosphorus and phototrophic picoplankton (PPP), dissolved inorganic nitrogen, and heterotrophic nanoflagellates (HNF). Copepods positively affected ciliates, and cladocerans positively affected heterotrophic bacteria (HB) and PPP. Higher copepod/cladoceran ratios and an indirect positive effect of copepods on HB might strengthen HB-HNF coupling. We also found low values for the degree of uncoupling (D) and a low HNF/HB ratio compared with literature data (mostly from temperate regions). This study demonstrates the importance of evaluating the whole size spectrum (including microbial compartments) of the different planktonic compartments, in order to capture the complex carbon dynamics of tropical aquatic ecosystems.

摘要

水生系统中的元素循环主要由浮游过程驱动,浮游食物网的结构决定了碳在营养级之间转移的效率。然而,很少有研究全面评估热带地区浮游食物网的所有组成部分。本研究的目的是通过结构方程模型(SEM),揭示影响热带水库中微生物食物网(MFW)碳储量不同组成部分的自上而下控制(后生浮游动物群落结构)、自下而上控制(资源可用性)、水文(水停留时间)和物理(温度)变量。我们在巴西四个不同营养状态(贫营养、中营养和富营养)的深水水库(巴尔比纳、图库鲁伊、三玛丽亚和富尼尔)进行了实地研究。我们发现微生物食物网贡献很大(高达浮游总碳的50%),特别是在营养程度较低的水库(巴尔比纳和图库鲁伊)。通过结构方程模型评估的自下而上和自上而下的影响表明,可溶性活性磷与光合自养微微型浮游生物(PPP)、溶解无机氮和异养纳米鞭毛虫(HNF)之间存在负相互作用。桡足类对纤毛虫有正向影响,枝角类对异养细菌(HB)和光合自养微微型浮游生物有正向影响。较高的桡足类/枝角类比例以及桡足类对异养细菌的间接正向影响可能会加强异养细菌 - 异养纳米鞭毛虫的耦合。与文献数据(大多来自温带地区)相比我们还发现解耦程度(D)值较低以及异养纳米鞭毛虫/异养细菌比例较低。本研究表明,评估不同浮游生物区室的整个大小谱(包括微生物区室)对于了解热带水生生态系统复杂的碳动态至关重要。

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