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Mercury accumulation in largemouth bass (Micropterus salmoides Lac,pSde) within marsh ecosystems of the Florida Everglades, USA

机译:美国佛罗里达沼泽地沼泽生态系统中的大嘴巴(MicroPterus Salmoides Lac,PSDE)中的汞累积

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摘要

This study evaluates factors, particularly water quality related, that may influence mercury (Hg) bioaccumulation in largemouth bass (LMB, Micropterus salmoides Lac,pSde) within the Everglades marshes of South Florida. The investigation is an empirical analysis of ambient data from both long-term fish monitoring and marsh water quality monitoring sites across the Everglades Protection Area. Previous Hg studies of Everglade's marsh biota have focused on the role that sulfate plays in Hg bioaccumulation. While sulfate can be important under some environmental conditions, this empirical analysis in Everglades marshes showed that sulfate has little association with Hg concentrations in LMB. It is suggested that other water quality variables including water pH, alkalinity and specific conductance may have as much or more influence in the accumulation of Hg in LMB. Furthermore, tissue Hg concentration normalized to body-weight and age-specific growth rates were significantly correlated with Water Conservation Area (WCA)-1, WCA-2 and Everglades National Park (ENP) but not WCA-3. However, body condition was correlated negatively with Hg concentration only within WCA-2, WCA-3 and ENP; the relationship was not significant within WCA-1. This disparity between Hg concentration and body condition could be attributed to ecological effects including water quality and quantity conditions within each compartment of the system that are significant driving forces for biota abundance, trophic structure and distribution within the Everglades ecosystem. While water quality and quantity are important, trophic position of LMB has the potential to influence Hg accumulation dynamics. In spite of documented biogeochemical linkages to Hg accumulation, this empirical analysis did not demonstrate enough quantitative interaction to be useful for Hg management in the Everglades ecosystem.
机译:本研究评估了因素,特别是水质相关的因素,可能影响南佛罗里达州南部沼泽沼泽内的大虫汤(LMB,MicroPerus Salmoides Lac,PSDE)中的汞(Hg)生物累积。该调查是对大沼泽地保护区的长期鱼类监测和沼泽水质监测网站的环境数据的实证分析。以前的沼泽地沼泽生物群的HG研究专注于硫酸盐在Hg生物累积中的作用。虽然硫酸盐在某些环境条件下可能是重要的,但沼泽地沼泽的这种实证分析表明,硫酸盐与LMB中的Hg浓度几乎没有关联。建议,包括水pH,碱度和特定电导的其他水质变量可能在LMB中Hg的积累具有多大或多次影响。此外,与体重和年龄特异性生长速率标准化的组织Hg浓度与水保护区(WCA)-1,WCA-2和大沼泽地国家公园(ENP)显着相关,但不是WCA-3。然而,仅在WCA-2,WCA-3和ENP内,Hg浓度与Hg浓度负相关; WCA-1内的关系并不重要。 Hg浓度和身体状况之间的这种差异可能归因于生态效应,包括系统中每个隔间内的水质和数量条件,这对于生物群丰富,营养性结构和沼泽地区内的分布是显着的驱动力。虽然水质和数量很重要,但LMB的营养位置有可能影响HG累积动态。尽管有记录的生物地球化学联系到HG累积,但该实证分析并未表现出足够的定量相互作用,以便在大沼泽地生态系统中对HG管理有用。

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