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Organic contaminants in bats: Trends and new issues

机译:蝙蝠中的有机污染物:趋势和新问题

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摘要

Exposure to contaminants, often pesticides, has been implicated as a major factor contributing to decreases in bat populations. Bats provide essential ecosystem services and a sustained, thriving population is vital for ecosystem health. Understanding issues threatening their survival is crucial for their protection and conservation. This paper provides the first review for 12 years on organic pollutants in bats and aims to investigate trends and any new issues impacting bat resilience. Organochlorine (OC) pesticides have been reported most often, especially in the older literature, with the dichlorodiphenyltrichloroethane (DDT) metabolite, dichlorodiphenyldichloroethyiene (DDE), present at highest concentrations in tissues analyzed. The OC pesticide concentrations reported in bat tissues have declined significantly since the late 1970s, presumably as a result of restrictions in use. For example, DDE study mean concentrations over time periods 1970-1980, 1981-1999 and 2000-2013 ranged from 2.6-62, 0.05-2.31, 0.08-0.19 ppm wet weight, respectively. Exposure, however, still occurs from remaining residues, many years after the compounds have been actively used. In recent years (2000-2013), a range of other organic chemicals have been reported in bat tissues including brominated flame retardants (polybrominated diphenyl ether at a mean concentration of 2.9 ppm lipid weight) and perfluorinated compounds (perfluorooctanyl sulfonate at a mean concentration 0.09 ppm wet weight). The persistent organic compounds concentrate in tissues with higher fat content notably back-depot fat Numerous factors influence exposure, residues detected and concentrations in different individuals, species and tissues which must be understood to provide meaningful assessment of the impacts of exposure. Exposure can lead to not only acute and lethal impacts, but also physiological sub-lethal and chronic effects, often linked to the annual cycle of fat deposition and withdrawal. Current challenges for bat conservation include collation of a more extensive and standardized database of bat exposure, especially to current use pesticides and emerging contaminants, and better prediction and definition of toxicity end points notably for the sub-lethal effects. Understanding sub-lethal effects will be of greater importance for sustaining populations in the longer-term.
机译:与污染物(通常是农药)的接触是导致蝙蝠种群减少的主要因素。蝙蝠提供基本的生态系统服务,持续不断的繁衍人口对于生态系统健康至关重要。了解威胁其生存的问题对其保护和保存至关重要。本文提供了有关蝙蝠中有机污染物的12年来的首次综述,旨在调查趋势和影响蝙蝠弹性的任何新问题。有机氯(OC)农药最常被报道,尤其是在较早的文献中,二氯二苯基三氯乙烷(DDT)代谢产物二氯二苯基二氯乙二烯(DDE)在分析的组织中含量最高。自1970年代后期以来,蝙蝠组织中报告的OC农药浓度已显着下降,这可能是由于使用限制所致。例如,DDE研究在1970-1980年,1981-1999年和2000-2013年期间的平均湿重分别为2.6-62、0.05-2.31、0.08-0.19 ppm。但是,在积极使用该化合物多年之后,仍然会因残留的残留物而发生接触。近年来(2000-2013年),蝙蝠组织中还报道了一系列其他有机化学物质,包括溴化阻燃剂(脂质重量平均浓度为2.9 ppm的多溴二苯醚)和全氟化合物(平均浓度为0.09的全氟辛基磺酸盐) ppm湿重)。持久性有机化合物集中在脂肪含量较高的组织中,尤其是后积脂肪。许多因素会影响暴露,检测到的残留物以及不同个体,物种和组织中的浓度,必须理解这些因素才能对暴露的影响进行有意义的评估。暴露不仅会导致急性和致命影响,而且还会导致生理上的亚致死和慢性影响,通常与脂肪沉积和戒断的年度周期有关。蝙蝠保存方面的当前挑战包括整理一个更为广泛和标准化的蝙蝠接触数据库,尤其是对当前使用的农药和新兴污染物的接触,以及更好地预测和定义毒性终点,尤其是对于亚致死作用。从长远来看,了解亚致死作用对于维持人口更加重要。

著录项

  • 来源
    《Environment international》 |2014年第2期|40-52|共13页
  • 作者单位

    School of Environmental and Rural Sciences, University of New England, Armidale, NSW 2351, Australia;

    Centre for Behavioral and Physiological Ecology, Zoology, University of New England, Armidale, NSW 2351, Australia;

    School of Environmental and Rural Sciences, University of New England, Armidale, NSW 2351, Australia;

    School of Environmental and Rural Sciences, University of New England, Armidale, NSW 2351, Australia;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Organic contaminants; Pesticides; Mortality; Bats;

    机译:有机污染物;农药;死亡;蝙蝠;

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