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Response of aquatic macrophyte biomass to limnological changes under water level fluctuation in tropical reservoirs.

作者信息

Moura Júnior E G, Pott A, Severi W, Zickel C S

机构信息

Núcleo de Ecologia e Monitoramento Ambiental, Universidade Federal do Vale do São Francisco - UNIVASF, CEP 56300-000, Petrolina, PE, Brasil.

Instituto de Biociências, Universidade Federal do Mato Grosso do Sul - UFMS, CEP 79070-900, Campo Grande, MS, Brasil.

出版信息

Braz J Biol. 2019 Jan-Mar;79(1):120-126. doi: 10.1590/1519-6984.179656. Epub 2018 Mar 12.

DOI:10.1590/1519-6984.179656
PMID:29538484
Abstract

We evaluated the response of the biomass of aquatic macrophytes under limnological changes after water level fluctuation (WLF) of two tropical reservoirs (R1 and R2), located in northeastern Brazil. Initially we tested the hypothesis that post-WLF limnological conditions and biomass of macrophytes increase or decrease, depending on the variable or species. We monitored a 4 × 50 m permanent plot, in four expeditions per period (pre- or post-WLF), assessing species biomass and 10 limnological variables. We utilized 0.25 × 0.25 m quadrats for biomass. Once the effect of WLF in limnological variables and species biomass was confirmed, we utilized Canonical Correspondence Analysis to understand the relationship between limnological variables and species biomass. The abundant and/or dominant species in pre-WLF of R1 ( Pistia stratiotes, Eichhornia crassipes and Salvinia auriculata) and R2 (Paspalidium geminatum and S. auriculata) reduced their biomass post-WLF and were correlated with temperature, total phosphorous and nitrate. The reduced biomass of P. stratiotes, E. crassipes and S. auriculata in post-WLF widened resource availability, allowing coexistence of species. Therefore, we suggest that the change of limnological conditions in post-WLF in artificial lakes acts only as a moderator factor of the interspecific interaction (especially coexistence), without direct relation between these conditions and species biomass.

摘要

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