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镉在硬粒小麦近等基因系中的积累:蒸腾作用的作用。

Accumulation of cadmium in near-isogenic lines of durum wheat (Triticum turgidum L. var durum): the role of transpiration.

机构信息

Department of Biology, University of Western Ontario, London, ON Canada N6A 5B7 ; Department of Biology, Trent University, Peterborough, ON Canada K9J 7B8.

出版信息

Physiol Mol Biol Plants. 2011 Oct;17(4):317-25. doi: 10.1007/s12298-011-0086-2. Epub 2011 Oct 5.

Abstract

Concentrations of cadmium in the grain of durum wheat (Triticum turgidum L. var durum) are often above the internationally acceptable limit of 0.2 mg kg(-1). Cultivars that vary in concentrations of cadmium in the grain have been identified but the physiology behind differential accumulation has not been determined. Three pairs of near-isogenic lines (isolines) of durum wheat that vary in aboveground cadmium accumulation (8982-TL 'high' and 'low', W9260-BC 'high' and 'low', and W9261-BG 'high' and 'low') were used to test the hypothesis that the greater amounts of cadmium in shoots of the 'high' isolines are correlated with greater volumes of water transpired. In general, cadmium content was positively correlated with transpiration only in the 'low' isolines. Although shoots of the 'high' isolines of W9260-BC and W9261-BG contained higher concentrations of cadmium than did their corresponding 'low' isolines, they did not transpire larger volumes of water. In addition, isolines of 8982-TL transpired less water than did the other pairs of isolines yet both 'high' and 'low' isolines of 8982-TL contained higher amounts of cadmium than did the other pairs. The difference between 'high' and 'low' isolines appears to be related to the relative contribution of transpiration to cadmium translocation to the shoot. Increased transpiration was associated with increased cadmium content in the 'low' isolines but in the 'high' isolines increased cadmium in the shoot occurred independently of the volume of water transpired.

摘要

硬质小麦(Triticum turgidum L. var durum)籽粒中的镉浓度通常高于国际可接受的 0.2mg/kg 限值。已经鉴定出了在籽粒中镉浓度不同的品种,但尚未确定差异积累的生理学基础。使用三对近等基因系(等位基因系)硬质小麦来测试假设,即“高”和“低”地上镉积累的 8982-TL、“高”和“低”W9260-BC 以及“高”和“低”W9261-BG 等位基因系中, shoots 中积累的镉量与蒸腾的水量之间存在正相关关系。一般来说,镉含量与蒸腾作用的相关性仅在“低”等位基因系中为正相关。尽管 W9260-BC 和 W9261-BG 的“高”等位基因系的 shoots 比其相应的“低”等位基因系含有更高浓度的镉,但它们没有蒸腾更大体积的水。此外,8982-TL 的等位基因系蒸腾的水量少于其他两对等位基因系,但 8982-TL 的“高”和“低”等位基因系的镉含量均高于其他两对。“高”和“低”等位基因系之间的差异似乎与蒸腾作用对镉向 shoots 转运的相对贡献有关。蒸腾作用的增加与“低”等位基因系中镉含量的增加有关,但在“高”等位基因系中,shoots 中镉的增加与蒸腾的水量无关。

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引用本文的文献

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Physiol Mol Biol Plants. 2016 Oct;22(4):461-472. doi: 10.1007/s12298-016-0383-x. Epub 2016 Oct 8.
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