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首页> 外文期刊>Environmental and experimental botany >Expanding the information about the influence of cadmium on the metabolism of sunflowers: Evaluation of total, bioavailable, and bioaccessible content and metallobiomolecules in sunflower seeds
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Expanding the information about the influence of cadmium on the metabolism of sunflowers: Evaluation of total, bioavailable, and bioaccessible content and metallobiomolecules in sunflower seeds

机译:扩大有关镉对向日葵代谢的影响的信息:评估向日葵种子中总,生物利用度和生物利用度以及金属叶分子

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The present study evaluates the effects of different doses of cadmium (0, 50, 350 and 700 mg) on sunflower seeds, thus expanding the information available on this plant culture. For this task, the interaction between cadmium and key elements such as Cu, Fe, Mg, Mn, P, S and Zn is evaluated. An in vitro procedure is also performed to assess the cadmium bioavailability and bioaccessibility. Finally, metallobiomolecules are evaluated by SEC-ICP-MS in the seeds. The results indicated that cadmium is translocated to seeds such that the level of this element in the seeds was 130 times higher than the tolerable amount for the human body (0.1 mg kg(-1)). An imbalance of other metals is also detected. While 92%, 72% and 74% of cadmium is bioaccessible in the control, Cd-low (50 mg Cd) and Cd-high (700 mg Cd) groups, respectively, its bioavailability was markedly different, with only 6.5%, 2% and 1% bioavailable from the same groups, respectively. This behavior reflects on the bioaccessibility and bioavailability of other elements also evaluated. In terms of metallobiomolecules, cadmium greatly interferes with Fe-biomolecules synthesis. Finally, cadmium interferes with the seed germination (2nd generation of seeds), by increasing the dormancy time (ca. 50% higher) and by decreasing the germination rate (ca. 60% lower) compared with the control group. (C) 2016 Elsevier B.V. All rights reserved.
机译:本研究评估了不同剂量的镉(0、50、350和700 mg)对向日葵种子的影响,从而扩大了这种植物培养物中可获得的信息。为此,评估了镉与关键元素(如Cu,Fe,Mg,Mn,P,S和Zn)之间的相互作用。还进行了体外程序以评估镉的生物利用度和生物利用度。最后,通过SEC-ICP-MS评估种子中的金属大分子。结果表明,镉易位到种子中,使得该元素在种子中的含量比对人体的容许量(0.1 mg kg(-1))高130倍。还检测到其他金属不平衡。对照组,低Cd(50 mg Cd)和高Cd(700 mg Cd)组的生物可利用镉的比例分别为92%,72%和74%,但其生物利用度显着不同,只有6.5%,2同一组的生物利用度分别为%和1%。此行为反映了也评估了其他元素的生物可及性。就金属大分子而言,镉极大地干扰了铁生物分子的合成。最后,与对照组相比,镉通过延长休眠时间(高约50%)和降低发芽率(低约60%)来干扰种子发芽(第二代种子)。 (C)2016 Elsevier B.V.保留所有权利。

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