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沉降大气颗粒物对哨兵红树林蟹的能量代谢、生化过程和行为的影响。

The impact of settleable atmospheric particulate on the energy metabolism, biochemical processes, and behavior of a sentinel mangrove crab.

机构信息

Department of Physiological Sciences, Federal University of São Carlos, Rod Washington Luis km 235, 13565-905 São Carlos, SP, Brazil.

Posgrado en Ciencias del Mar y Limnología, Universidad Nacional Autónoma de México, Av. Ciudad Universitaria 3000, C.P. 04510 Coyoacán, Ciudad de México, Mexico.

出版信息

J Hazard Mater. 2024 Sep 15;477:135316. doi: 10.1016/j.jhazmat.2024.135316. Epub 2024 Jul 25.

Abstract

We use the sentinel mangrove crab, Minuca rapax, as a model to investigate the effects of metallic settleable particulate matter (SePM) on wetland. Multiple levels of energetic responses, including (i) metabolic rate and energy budget, (ii) oxidative stress, and (iii) behavioral response by righting time, were assessed as well as the metal and metalloid content in crabs exposed to 0, 0.1 and 1 g.L of SePM, under emerged and submerged conditions over five days, simulating the rigors of the intertidal habitat. Al, Fe, Mn, Cr, and Y exhibited a concentration-dependent increase. Metal concentrations were higher in submerged crabs due to the continuous ingestion of SePM and direct exposure through gills. Exposure concentration up to 1 g.L decreased metabolic rate and enzymatic activities, reduced assimilation efficiency and energy for maintenance, and induces a slower response to righting time, probably by metal effects on nervous system and energy deficits. In conclusion, SePM exposure affects the redox status and physiology of M. rapax depending on he submersion regime and SePM concentration. The disruption to the energy budget and the lethargic behavior in M. rapax exposed to SePM implies potential ecological alterations in the mangrove ecosystem with unknown consequences for the local population.

摘要

我们使用哨兵招潮蟹(Minuca rapax)作为模型,研究了金属可沉降颗粒物(SePM)对湿地的影响。评估了多种能量响应水平,包括(i)代谢率和能量预算,(ii)氧化应激,以及(iii)通过翻身时间的行为反应,以及暴露于 0、0.1 和 1 g.L 的 SePM 下的螃蟹中的金属和类金属含量,在模拟潮间带栖息地严酷条件的 5 天内,处于露出和淹没两种条件下。Al、Fe、Mn、Cr 和 Y 表现出浓度依赖性增加。由于连续摄入 SePM 和通过鳃直接暴露,淹没状态下的螃蟹中的金属浓度更高。暴露浓度高达 1 g.L 会降低代谢率和酶活性,降低同化效率和维持能量,并导致翻身时间的反应更慢,这可能是由于金属对神经系统和能量不足的影响。总之,SePM 暴露会根据淹没状态和 SePM 浓度影响 M. rapax 的氧化还原状态和生理机能。暴露于 SePM 的 M. rapax 的能量预算中断和嗜睡行为表明,红树林生态系统可能发生潜在的生态变化,对当地种群可能产生未知后果。

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