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斯洛伐克西南部一家水泥厂周边地衣暴露于粉尘污染下的生理生态及超微结构效应

Ecophysiological and ultrastructural effects of dust pollution in lichens exposed around a cement plant (SW Slovakia).

作者信息

Paoli Luca, Guttová Anna, Grassi Alice, Lackovičová Anna, Senko Dušan, Sorbo Sergio, Basile Adriana, Loppi Stefano

机构信息

Department of Life Sciences, University of Siena, Via P.A. Mattioli 4, 53100, Siena, Italy.

Institute of Botany, Slovak Academy of Sciences, Dúbravská cesta 9, 84523, Bratislava, Slovakia.

出版信息

Environ Sci Pollut Res Int. 2015 Oct;22(20):15891-902. doi: 10.1007/s11356-015-4807-x. Epub 2015 Jun 6.

Abstract

The study investigated the ecophysiological and ultrastructural effects of dust pollution from a cement industry in the lichen species Evernia prunastri and Xanthoria parietina, which were exposed for 30, 90 and 180 days around a cement mill, two quarries, and inhabited and agricultural sites in SW Slovakia. The results showed that dust deposition from quarrying activities and cement works at the cement mill (mainly enriched in Ca, Fe and Ti) significantly affected the photosynthetic apparatus of E. prunastri (sensitive to dust and habitat eutrophication), while X. parietina (tolerant to dust and habitat eutrophication) adapted to the new environment. The length of the exposure strongly affected the vitality of the mycobiont (measured as dehydrogenase activity) in transplanted lichens. Dust deposition led to ultrastructural alterations, including lipid droplets increase, swelling of cellular components, thylakoid degeneration and sometimes plasmolysis, which, on the whole, gave the cells an aged appearance. Photosynthetic parameters deserve further attention as potential indicators for monitoring early biological symptoms of the air pollution caused during cement production.

摘要

该研究调查了斯洛伐克西南部一家水泥厂的粉尘污染对地衣物种扁枝衣(Evernia prunastri)和橙黄网衣(Xanthoria parietina)的生理生态及超微结构的影响,这些地衣在水泥厂周围、两个采石场以及居民区和农业区分别暴露了30天、90天和180天。结果表明,采石活动和水泥厂(主要富含钙、铁和钛)产生的粉尘沉降显著影响了扁枝衣(对粉尘和生境富营养化敏感)的光合机构,而橙黄网衣(对粉尘和生境富营养化有耐受性)则适应了新环境。暴露时间长短强烈影响了移植地衣中菌共生体的活力(以脱氢酶活性衡量)。粉尘沉降导致超微结构改变,包括脂滴增加、细胞成分肿胀、类囊体退化,有时还会出现质壁分离,总体上使细胞呈现衰老外观。光合参数作为监测水泥生产过程中空气污染早期生物症状的潜在指标值得进一步关注。

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