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土壤化学对若虫和成年周期蝉(魔蝉属)体内金属及生物必需元素浓度的影响。

Influence of soil chemistry on metal and bioessential element concentrations in nymphal and adult periodical cicadas (Magicicada spp.).

作者信息

Robinson G R, Sibrell P L, Boughton C J, Yang L H

机构信息

US Geological Survey, 954 National Center, Reston, Virginia 20192, USA.

出版信息

Sci Total Environ. 2007 Mar 15;374(2-3):367-78. doi: 10.1016/j.scitotenv.2006.12.031. Epub 2007 Jan 25.

Abstract

Metal and bioessential element concentrations were measured in three species of 17-year periodical cicadas (Magicicada spp.) to determine how cicada tissue chemistry is affected by soil chemistry, measure the bioavailability of metals from both uncontaminated and lead-arsenate-pesticide contaminated soils, and assess the potential risks of observed metal contamination for wildlife. Periodical cicada nymphs feed on root xylem fluids for 13 or 17 years of underground development. The nymphs then emerge synchronously at high densities, before leaving their nymphal keratin exoskeleton and molting into their adult form. Cicadas are an important food source for birds and animals during emergence events, and influence nutrient cycles in woodland ecosystems. Nymphal exoskeletons and whole adult cicadas were sampled in Clarke and Frederick Counties, Virginia and Berkeley and Jefferson Counties, West Virginia during the Brood X emergence in May and June, 2004. Elements, such as Al, Fe, and Pb, are strongly enriched in the nymphal exoskeleton relative to the adult body; Cu and Zn are enriched in bodies. Concentrations of Fe and Pb, when normalized to relatively inert soil constituents such as Al and Ce, are similar in both the molt exoskeleton and their host soil, implying that passive assimilation through prolonged soil contact (adhesion or adsorption) might control these metal concentrations. Normalized concentrations of bioessential elements, such as S, P, K, Ca, Mn, Cu, Zn, and Mo, and chalcophile (sulfur-loving) elements, such as As, Se, and Au, indicate strong enrichment in cicada tissues relative to soil, implying selective absorption and retention by xylem fluids, the cicada nymphs themselves, or both. Element enrichment patterns in cicada tissues are similar to enrichment patterns observed in xylem fluids from tree roots. Chalcophile elements and heavy metals accumulate in keratin-rich tissues and may bind to sulfhydryl groups. Metal concentrations in the nymphal exoskeleton show a positive correlation with soil metal concentrations, with Au exhibiting particularly strong enrichment in the exoskeleton relative to soil concentrations. Metal concentrations in adult bodies do not correlate with soil chemistry. Bioessential elements S, Ca, Mn, Fe, and Zn differed by sex in adults, whereas Na, Mg, K, Ca, Mn, Fe, Zn, and As differed by species. Body concentrations of Ca differed by site conditions (orchard or reference setting). The high Pb contents of orchard soils contaminated by arsenical pesticide residues might inhibit Ca uptake by cicada nymphs. The adult cicadas contain concentrations of metals similar to, or less than, other invertebrates, such as earthworms. There does not appear to be a dietary threat to birds or other consumers of adult cicadas based on Maximum Tolerable Dietary Level (MTDL) Guidelines developed for agricultural animals.

摘要

对三种17年周期性蝉(魔蝉属)体内的金属和生物必需元素浓度进行了测量,以确定蝉的组织化学如何受土壤化学影响,测量来自未受污染土壤和砷酸铅农药污染土壤中金属的生物有效性,并评估观察到的金属污染对野生动物的潜在风险。周期性蝉若虫在地下发育13年或17年,以根部木质部汁液为食。然后若虫高密度同步出现,之后蜕去若虫角质外骨骼,羽化为成虫。在若虫出现期间,蝉是鸟类和动物的重要食物来源,并影响林地生态系统中的养分循环。在2004年5月和6月X代若虫出现期间,于弗吉尼亚州的克拉克县和弗雷德里克县以及西弗吉尼亚州的伯克利县和杰斐逊县采集了若虫外骨骼和完整的成年蝉样本。相对于成虫身体,铝、铁和铅等元素在若虫外骨骼中强烈富集;铜和锌在成虫身体中富集。将铁和铅的浓度相对于铝和铈等相对惰性的土壤成分进行归一化处理后,蜕皮外骨骼及其寄主土壤中的浓度相似,这意味着通过长时间与土壤接触(粘附或吸附)的被动同化作用可能控制这些金属的浓度。生物必需元素如硫、磷、钾、钙、锰、铜、锌和钼以及亲硫元素如砷、硒和金的归一化浓度表明,相对于土壤,蝉组织中强烈富集,这意味着木质部汁液、蝉若虫自身或两者都有选择性吸收和保留作用。蝉组织中的元素富集模式与从树根木质部汁液中观察到的富集模式相似。亲硫元素和重金属在富含角蛋白的组织中积累,并可能与巯基结合。若虫外骨骼中的金属浓度与土壤金属浓度呈正相关,相对于土壤浓度,金在其外骨骼中的富集尤为强烈。成虫体内的金属浓度与土壤化学无关。成虫体内的生物必需元素硫、钙、锰、铁和锌在性别上存在差异,而钠、镁、钾、钙、锰、铁、锌和砷在物种间存在差异。钙的身体浓度因场地条件(果园或对照环境)而异。被砷农药残留污染的果园土壤中高含量的铅可能会抑制蝉若虫对钙的吸收。成年蝉体内金属的浓度与其他无脊椎动物(如蚯蚓)相似或更低。根据为农业动物制定的最大可耐受膳食水平(MTDL)指南,成年蝉对鸟类或其他消费者似乎不存在饮食威胁。

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