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Monitoring with lichens - Conductivity methods assess salt and heavy metal damage more efficiently than chlorophyll fluorescence

机译:用地衣监测-电导率方法比叶绿素荧光更有效地评估盐和重金属的破坏

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摘要

In the lab, we exposed three foliose lichen species, Lobaria pulmonaria, Parmelia sulcata and Xanthoria aureola, to 0, 0.01, 0.2, and 0.6 M NaCl in combinations with copper and zinc (0,10, 100, 500 mu M). High salt concentrations adversely affected the lichen membrane integrity as measured by conductivity methods, whereas the potential photosystem II efficiency (Fv/Fm) was tolerant. High light was necessary to reduce Fv/Fm in thalli exposed to salt, whereas high light did not aggravate the conductivity. The seashore species X. aureola was much more resistant to salt than the old forest species L. pulmonaria. With respect to Cu and Zn, used concentrations had no (P. sulcata, X. aureola) or small (L pulmonaria) effects on Fv/Fm. However, both heavy metals substantially increased conductivity in all species, consistent with membrane damage. Thus, the conductivity method detected high salt, high copper and high zinc stress much more efficiently than did the chlorophyll fluorescence method. This suggests that membrane integrity of the mycobiont is more sensitive to salt and heavy metal stress than potential photosystem II efficiency of its autotrophic partners. (C) 2015 Elsevier Ltd. All rights reserved.
机译:在实验室中,我们将3种叶状地衣物种(肺叶小叶紫菜(Lobaria pulmonaria),苏木(Parmelia sulcata)和黄单胞菌(Xanthoria aureola))暴露于0、0.01、0.2和0.6 M NaCl与铜和锌(0,10,100,500μM)的组合。通过电导率方法测量,高盐浓度会对地衣膜的完整性产生不利影响,而潜在的光系统II效率(Fv / Fm)是可以忍受的。为了减少暴露在盐中的塔利中的Fv / Fm,必须使用强光,而强光不会加剧导电性。海滨物种金黄色葡萄球菌对盐的抵抗力比老森林物种肺炎克雷伯氏菌更强。关于铜和锌,所使用的浓度对Fv / Fm无影响(P. sulcata,X. aureola)或影响较小(L. pulmonaria)。然而,两种重金属在所有物种中均显着提高了电导率,这与膜的破坏是一致的。因此,电导率法比叶绿素荧光法更有效地检测到高盐,高铜和高锌胁迫。这表明,与自养伴侣的潜在光系统II效率相比,真菌生物素的膜完整性对盐和重金属胁迫更敏感。 (C)2015 Elsevier Ltd.保留所有权利。

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