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双壳贝类(椭圆海螂)的umbo基质是一个气候档案吗?

Is the umbo matrix of bivalve shells (Laternula elliptica) a climate archive?

作者信息

Dick D, Philipp E, Kriews M, Abele D

机构信息

Alfred Wegener Institute for Polar and Marine Research, Am Handelshafen 12, 27570 Bremerhaven, Germany.

出版信息

Aquat Toxicol. 2007 Oct 30;84(4):450-6. doi: 10.1016/j.aquatox.2007.07.005. Epub 2007 Jul 20.

Abstract

Heavy metal accumulation into bivalve soft tissues has received increasing interest in recent years with respect to biomonitoring of environmental change including pollution. To a lesser extent, accretion of elements from the environment into bivalve hard structures (shells) has been investigated, although the importance of the shells as environmental archives has been acknowledged. Here we report element distribution within consecutive growth bands in the shells of the Antarctic soft shell clam Laternula elliptica, which is currently exposed to vast environmental change in Antarctic Peninsula coastal environments that undergo rapid climate warming. We performed a high spatial resolution analysis for Al, Fe, Mn, Cu, Pb and U in the shell umbo, by means of laser ablation inductively coupled plasma mass spectrometry (LA-ICP-MS). Element ratios within the umbo did not resemble either the ratios in the surrounding seawater, the sedimenting material in Potter Cove, or even the Earth's crust basal composition. Mn and Cu were preferentially incorporated into the umbo. A strong decrease of element accretion with time could be related to lifetime respiration mass (R) of the animals. This indicates element accretion into the umbo and shell matrix to be largely a function of animal ecophysiology and life history, and these effects need to be considered in the context of potential usefulness of L. elliptica shells as environmental archives.

摘要

近年来,双壳类软体组织中的重金属积累在包括污染在内的环境变化生物监测方面受到了越来越多的关注。在较小程度上,人们也研究了环境中的元素在双壳类硬结构(贝壳)中的积累情况,尽管贝壳作为环境档案的重要性已得到认可。在此,我们报告了南极软壳蛤椭圆侧腕水母贝壳中连续生长带内的元素分布情况,该物种目前正面临南极半岛沿海环境中迅速的气候变暖所带来的巨大环境变化。我们通过激光烧蚀电感耦合等离子体质谱法(LA-ICP-MS)对贝壳脐部的铝、铁、锰、铜、铅和铀进行了高空间分辨率分析。脐部内的元素比率既不像周围海水中的比率,也不像波特湾的沉积物质中的比率,甚至与地壳的基础成分比率也不同。锰和铜优先被纳入脐部。元素积累随时间的强烈下降可能与动物的终生呼吸量(R)有关。这表明元素在脐部和贝壳基质中的积累在很大程度上是动物生态生理学和生活史的函数,并且在将椭圆侧腕水母贝壳作为环境档案的潜在用途的背景下,需要考虑这些影响。

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