首页> 外文期刊>Plant physiology >Tissue- and age-dependent differences in the complexation of cadmium and zinc in the cadmium/zinc hyperaccumulator Thlaspi caerulescens (Ganges ecotype) revealed by X-ray absorption spectroscopy
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Tissue- and age-dependent differences in the complexation of cadmium and zinc in the cadmium/zinc hyperaccumulator Thlaspi caerulescens (Ganges ecotype) revealed by X-ray absorption spectroscopy

机译:X射线吸收光谱法揭示镉/锌超富集性拟南芥(Ganges生态型)中镉和锌络合的组织和年龄依赖性差异

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Extended x-ray absorption fine structure measurements were performed on frozen hydrated samples of the cadmium (Cd)/zinc (Zn) hyperaccumulator Thlaspi caerulescens (Ganges ecotype) after 6 months of Zn2+ treatment with and without addition of Cd2+. Ligands depended on the metal and the function and age of the plant tissue. In mature and senescent leaves, oxygen ligands dominated. This result combined with earlier knowledge about metal compartmentation indicates that the plants prefer to detoxify hyperaccumulated metals by pumping them into vacuoles rather than to synthesize metal specific ligands. In young and mature tissues (leaves, petioles, and stems), a higher percentage of Cd was bound by sulfur (S) ligands (e.g. phytochelatins) than in senescent tissues. This may indicate that young tissues require strong ligands for metal detoxification in addition to the detoxification by sequestration in the epidermal vacuoles. Alternatively, it may reflect the known smaller proportion of epidermal metal sequestration in younger tissues, combined with a constant and high proportion of S ligands in the mesophyll. In stems, a higher proportion of Cd was coordinated by S ligands and of Zn by histidine, compared with leaves of the same age. This may suggest that metals are transported as stable complexes or that the vacuolar oxygen coordination of the metals is, like in leaves, mainly found in the epidermis. The epidermis constitutes a larger percentage of the total volume in leaves than in stems and petioles. Zn-S interaction was never observed, confirming earlier results that S ligands are not involved in Zn resistance of hyperaccumulator plants.
机译:在添加和不添加Cd2 +的Zn2 +处理6个月后,对镉(Cd)/锌(Zn)超富集性拟南芥(Ganges ecotype)的冷冻水合样品进行了扩展的X射线吸收精细结构测量。配体取决于金属以及植物组织的功能和年龄。在成熟和衰老的叶片中,氧配体占主导地位。该结果与有关金属隔离的较早知识相结合表明,植物更喜欢通过将超积累的金属泵入液泡中来解毒,而不是合成金属特异性配体。在年轻和成熟的组织(叶,叶柄和茎)中,Cd被硫(S)配体(例如植物螯合素)结合的比例高于衰老组织。这可能表明,年轻组织除了通过在表皮液泡中进行隔离而进行解毒之外,还需要强大的配体来进行金属解毒。或者,它可能反映了年轻组织中表皮金属螯合的已知较小比例,以及叶肉中恒定和较高比例的S配体。与相同年龄的叶片相比,茎中的Cd配比较高,C配体配位,而Zn则由组氨酸配位。这可能表明金属以稳定的络合物形式运输,或者金属的液泡氧配位像在叶片中一样主要在表皮中发现。表皮在叶片中占总体积的比例大于茎和叶柄中的比例。从未观察到Zn-S相互作用,这证实了较早的结果表明S配体不参与超蓄积植物的Zn抗性。

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