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沿土壤-植物-蚜虫-瓢虫食物链的铅的营养传递和生物积累。

Trophic transfer and bioaccumulation of lead along soil-plant-aphid-ladybird food chain.

机构信息

Plant Ecology and Environment Laboratory, Department of Botany, Aligarh Muslim University, Aligarh, Uttar Pradesh, 202002, India.

Biological Sciences Department, California Polytechnic State University, San Luis Obispo, CA, 93407, USA.

出版信息

Environ Sci Pollut Res Int. 2019 Aug;26(23):23460-23470. doi: 10.1007/s11356-019-05624-x. Epub 2019 Jun 14.

Abstract

Lead (Pb) contamination of agroecosystems is a serious issue as Pb is a persistent pollutant that is retained in soil for long, causing toxicities to organisms. This study examines biotransfer of Pb from soils treated with different concentrations of Pb through a broad bean (Vicia faba L.)-aphid (Aphis fabae Scop.)-ladybird (Coccinella transversalis Fabricius) food chain and its consequent inference for natural biological control, the ladybird. The soil was amended with Pb at the rates of 0, 25, 50, 75 and 100 mg kg (w/w). The amount of Pb in plant, aphid and ladybird increased in a dose-dependent manner to Pb contents in the soil. The results showed that Pb biomagnified from soil to root with transfer coefficient always > 1. Biominimization of Pb occurred at the second trophic level in aphids and at the third trophic level in ladybirds as their respective transfer coefficients from shoot to aphid and aphid to ladybird were always < 1. The increased elimination of Pb via aphid excreta (honeydew) and pupal exuviae in a dose-dependent manner suggests that these are possible detoxification mechanisms at two different trophic levels which control Pb bioaccumulation along the food chain. The statistically significant (p ≤ 0.05) decreases in biomass and predation rate of predatory ladybirds at 100 mg kg Pb indicate that high dose of Pb in soil may have sub-lethal effects on ladybirds. Further studies at cellular and sub-cellular levels are needed to further document the potential mechanisms of achieving Pb homeostasis in ladybirds under Pb stress.

摘要

农田系统中铅(Pb)污染是一个严重的问题,因为 Pb 是一种持久性污染物,会在土壤中长期存在,对生物造成毒害。本研究通过宽叶野豌豆(Vicia faba L.)-蚜虫(Aphis fabae Scop.)-瓢虫(Coccinella transversalis Fabricius)食物链,研究了不同浓度 Pb 处理的土壤中 Pb 的生物传递及其对自然生物防治的影响,即瓢虫。土壤中添加了 0、25、50、75 和 100 mg kg(w/w)的 Pb。植物、蚜虫和瓢虫体内的 Pb 含量随土壤中 Pb 含量呈剂量依赖性增加。结果表明,Pb 从土壤到根的生物放大系数始终>1。在蚜虫的第二营养级和瓢虫的第三营养级发生了最小生物放大作用,因为它们从茎叶到蚜虫和蚜虫到瓢虫的传递系数始终<1。蚜虫排泄物(蜜露)和蛹蜕的 Pb 排出量随剂量的增加而增加,这表明这两种不同营养级的生物解毒机制可能控制着食物链中 Pb 的生物积累。在 100 mg kg Pb 时,捕食性瓢虫的生物量和捕食率呈统计学显著(p≤0.05)下降,这表明土壤中高浓度 Pb 可能对瓢虫产生亚致死效应。需要在细胞和亚细胞水平上进一步研究,以进一步记录在 Pb 胁迫下瓢虫实现 Pb 体内平衡的潜在机制。

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