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中华绒螯蟹对痕量金属的摄取:渗透调节的作用。

Trace metal uptake by the Chinese mitten crab Eriocheir sinensis: the role of osmoregulation.

作者信息

Roast S D, Rainbow P S, Smith B D, Nimmo M, Jones M B

机构信息

Plymouth Environmental Research Centre, Department of Biological Sciences, University of Plymouth, Devon, UK.

出版信息

Mar Environ Res. 2002 Jun;53(5):453-64. doi: 10.1016/s0141-1136(02)00090-9.

Abstract

Changes in salinity affect the bioavailability and consequent uptake of trace metals by euryhaline invertebrates. In many cases, salinity-related effects on metal uptake can be explained by changes in chemical speciation but salinity may also influence uptake indirectly through its action on osmoregulatory mechanisms. Specifically, it can be hypothesised that trace metal uptake may be reduced at salinities approaching the isosmotic point of a species because, at this point, there is reduced activity of ionic exchange pumps. The present study tested this hypothesis using the Chinese mitten crab, Eriocheir sinensis, a hyper-hypoosmoregulator with an isosmotic point around 33 per thousand. Crabs were exposed to radio-labelled cadmium and zinc at 23, 33 and 43 per thousand for 4 days. To eradicate speciation effects, crabs were exposed to the same concentration of the radio-labelled free metal ion (estimated using MineQL computer software) at each salinity. Haemolymph samples were taken daily and radio-labelled metal concentrations were estimated from radioactivity counts and used to provide relative measures of metal uptake. Neither cadmium nor zinc uptake was lowest at the isosmotic point. The uptake of cadmium increased significantly with increase in salinity, while the uptake of zinc showed no significant change with increased salinity. Thus changes in trace metal uptake rates in E. sinensis do not appear to be controlled only by changes in free metal ion concentrations. The different effects of salinity change on the uptake of cadmium and zinc (in the absence of free metal ion change) also indicate that physiological responses to osmotic change alone do not control metal uptake rates for this species.

摘要

盐度变化会影响广盐性无脊椎动物对痕量金属的生物可利用性及随后的摄取。在许多情况下,盐度对金属摄取的相关影响可以通过化学形态的变化来解释,但盐度也可能通过其对渗透调节机制的作用间接影响摄取。具体而言,可以假设在接近某一物种等渗点的盐度下,痕量金属的摄取可能会减少,因为在这一点上,离子交换泵的活性降低。本研究使用中华绒螯蟹(一种等渗点约为千分之33的超-低渗调节者)对这一假设进行了测试。将蟹暴露于千分之23、33和43的放射性标记镉和锌中4天。为消除形态影响,在每个盐度下,蟹都暴露于相同浓度的放射性标记游离金属离子(使用MineQL计算机软件估算)。每天采集血淋巴样本,并根据放射性计数估算放射性标记金属浓度,用于提供金属摄取的相对测量值。镉和锌的摄取在等渗点时都不是最低的。镉的摄取随盐度增加而显著增加,而锌的摄取随盐度增加没有显著变化。因此,中华绒螯蟹中痕量金属摄取率的变化似乎并非仅由游离金属离子浓度的变化所控制。盐度变化对镉和锌摄取的不同影响(在游离金属离子无变化的情况下)也表明,仅对渗透变化的生理反应并不能控制该物种的金属摄取率。

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