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蜕皮作为招潮蟹(学名:Uca pugnax)体内金属净化的一种机制。

Molting as a mechanism of depuration of metals in the fiddler crab, Uca pugnax.

作者信息

Bergey Lauren L, Weis Judith S

机构信息

Rutgers, The State University of New Jersey, Department of Biological Sciences, 195 University Avenue, Newark, NJ 07102, USA.

出版信息

Mar Environ Res. 2007 Dec;64(5):556-62. doi: 10.1016/j.marenvres.2007.04.009. Epub 2007 May 18.

Abstract

Metal distributions in the exoskeleton and soft tissues of the fiddler crab, Uca pugnax, were examined during intermolt and immediate postmolt to determine if distribution of the metals changed prior to molting and to determine if molting is a feasible mechanism to depurate metals. Fiddler crabs were collected from two locations in New Jersey, a highly contaminated site and a relatively clean environment. The crabs from the contaminated site had higher concentrations of metals in their soft tissues for Cu, significantly higher concentrations of Pb in their soft tissues and carapace, but did not have any significant differences in concentrations of Zn in comparison to their conspecifics from the relatively clean site during intermolt. Crabs from the contaminated site has significantly higher levels of Cu, Pb, and Zn in both their soft tissues and exuvia immediately after molting. Crabs from both sites shifted copper and zinc from the carapace into the soft tissues prior to molting. Lead distribution shifted from the soft tissues to the exoskeleton prior to molting in the population from the contaminated site but shifted from the exoskeleton into the soft tissues for the relatively clean site. Average percent of the total body burden eliminated during the molting process for the highly contaminated site varied with each metal, 12% Cu, 76% Pb, and 22% Zn. Average percent of the total body burden eliminated during molting process for the relatively clean site also varied with each metal and was significantly lower than the conspecifics from the contaminated site, 3% Cu, 56% Pb, and 8% Zn. Molting can reduce overall body burdens significantly and is a feasible mechanism to depurate lead.

摘要

在间 molt 期和 molt 后即刻,对招潮蟹(Uca pugnax)的外骨骼和软组织中的金属分布进行了检查,以确定金属分布在 molt 前是否发生变化,并确定 molt 是否是一种可行的去除金属的机制。从新泽西州的两个地点收集招潮蟹,一个是高度污染的地点,一个是相对清洁的环境。来自污染地点的螃蟹软组织中的铜浓度较高,软组织和甲壳中的铅浓度显著更高,但在间 molt 期,与来自相对清洁地点的同种螃蟹相比,锌浓度没有任何显著差异。来自污染地点的螃蟹在 molt 后即刻,其软组织和蜕壳中的铜、铅和锌水平均显著更高。来自两个地点的螃蟹在 molt 前都将铜和锌从甲壳转移到软组织中。来自污染地点的种群在 molt 前,铅的分布从软组织转移到外骨骼,但对于相对清洁的地点,铅的分布从外骨骼转移到软组织中。高度污染地点在 molt 过程中消除的总体内负担的平均百分比因每种金属而异,铜为 12%,铅为 76%,锌为 22%。相对清洁地点在 molt 过程中消除的总体内负担的平均百分比也因每种金属而异,且显著低于来自污染地点的同种螃蟹,铜为 3%,铅为 56%,锌为 8%。Molt 可以显著降低总体内负担,并且是一种可行的去除铅的机制。

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