Alterations to unionid transformation during agricultural and urban contaminants of emerging concern exposures.

IF 2.4 4区 环境科学与生态学 Q2 ECOLOGY Ecotoxicology Pub Date : 2023-05-01 DOI:10.1007/s10646-023-02645-8
Lacey D Rzodkiewicz, Mandy L Annis, Daelyn A Woolnough
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Abstract

Highly imperiled unionids have a complex life cycle including the metamorphosis of an obligate parasite life stage, larval glochidia, to the juvenile stage. Despite the known vulnerabilities of both glochidia and juveniles to pollutants, little is known on how metamorphosis success may be affected by chemical stress. Disruption of the transformation process in which glochidia encyst on the gills of a host fish, could lead to lowered recruitment and population declines. Transformation rates of Lampsilis cardium on host fish Micropterus salmoides were empirically derived from experimental exposures to low, medium, or high concentrations of an agricultural or urban mixture of contaminants of emerging concern (CECs) over two exposure durations. Transformation was characterized by: (1) a zero-inflated Poisson general linear mixed effects model to compare difference in transformation between exposure durations and (2) time response curves to describe the transformation curve using long-term exposure data. Lampsilis cardium transformation was similar between exposure durations. When compared to controls, CEC stress significantly reduced juvenile production (p « 0.05) except for the agricultural medium treatment and tended to increased encapsulation duration which while statistically insignificant (p = 0.16) may have ecological relevancy. Combining the empirically derived reduction of transformation rates with parameters values from the literature, a Lefkovich stage-based population model predicted strong declines in population size of L. cardium for all treatments if these results hold in nature. Management focus on urban CECs may lead to best conservation efforts though agricultural CECs may also have a concentration dependent impact on transformation and therefore overall recruitment and conservation success.

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新出现的农业和城市污染物暴露中工会转化的变化。
高度危险的联虫有一个复杂的生命周期,包括专性寄生虫生命阶段的蜕变,幼虫glochidia,到幼虫阶段。尽管已知glochidia和幼虫对污染物的脆弱性,但很少有人知道化学应激如何影响变态成功。glochidia在宿主鱼鳃上的转化过程被破坏,可能导致招募减少和种群下降。在两个暴露时间内,实验暴露于低、中、高浓度的新兴关注污染物(CECs)的农业或城市混合物中,得出了寄主小鱼小鱼上心灯虱的转化率。转换的特点是:(1)采用零膨胀Poisson一般线性混合效应模型来比较暴露时间之间的转换差异;(2)采用时间响应曲线来描述长期暴露数据的转换曲线。在不同的暴露时间内,兰氏菌的心肌转化相似。与对照相比,除农业培养基处理外,CEC胁迫显著降低了幼鱼产量(p < 0.05),并有增加包封时间的趋势,但统计学上不显著(p = 0.16),可能具有生态相关性。结合经验推导的转化率降低与文献中的参数值,一个基于Lefkovich阶段的种群模型预测,如果这些结果在自然界中成立,那么所有处理的l.b odium种群大小都会出现强烈的下降。将管理重点放在城市生态环境中心可能会带来最佳的保护工作,但农业生态环境中心也可能对转型产生依赖于集中程度的影响,从而对总体招聘和保护的成功产生影响。
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来源期刊
Ecotoxicology
Ecotoxicology 环境科学-毒理学
CiteScore
5.30
自引率
3.70%
发文量
107
审稿时长
4.7 months
期刊介绍: Ecotoxicology is an international journal devoted to the publication of fundamental research on the effects of toxic chemicals on populations, communities and terrestrial, freshwater and marine ecosystems. It aims to elucidate mechanisms and processes whereby chemicals exert their effects on ecosystems and the impact caused at the population or community level. The journal is not biased with respect to taxon or biome, and papers that indicate possible new approaches to regulation and control of toxic chemicals and those aiding in formulating ways of conserving threatened species are particularly welcome. Studies on individuals should demonstrate linkage to population effects in clear and quantitative ways. Laboratory studies must show a clear linkage to specific field situations. The journal includes not only original research papers but technical notes and review articles, both invited and submitted. A strong, broadly based editorial board ensures as wide an international coverage as possible.
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