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Different responses of low grain-Cd-accumulating and high grain-Cd-accumulating rice cultivars to Cd stress

机译:低积累Cd和高积累Cd水稻品种对镉胁迫的不同响应

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Cadmium (Cd) is a major heavy metal pollutant which is highly toxic to plants and animals. The accumulation of Cd in rice grains is a major agricultural problem in regions with Cd pollution. A hydroponics experiment using low grain-Cd-accumulating rice (xiushui 11) and high grain-Cd-accumulating rice (xiushui 110) was carried out to characterize the different responses of rice cultivars to Cd stress. We found that xiushui 11 was more tolerant to Cd than xiushui 110, and xiushui 11 suffered less oxidative damage. Cell walls played an important role in limiting the amount of Cd that entered the protoplast, especially in xiushui 11. Cd stored in organelles as soluble fractions, leading to greater physiological stress of Cd detoxification. We found that Cd can disturb the ion homeostasis in rice roots because Cd2+ and Ca2+ may have a similar uptake route. Xiushui 11 had a faster root-to-shoot transport of Cd, and the expression level of OsPCR1 gene which was predicted related with Cd accumulation in rice was consist with the Cd transport of root-to-shoot in rice and maintain the greater Cd tolerance of xiushui 11. These results suggest there are different Cd detoxification and accumulation mechanisms in rice cultivars. (C) 2015 Elsevier Masson SAS. All rights reserved.
机译:镉(Cd)是一种主要的重金属污染物,对植物和动物有剧毒。水稻籽粒中镉的积累是镉污染地区的主要农业问题。进行了以低粒态Cd水稻(徐水11号)和高粒状Cd水稻(徐水110号)水培试验,以表征水稻品种对Cd胁迫的不同响应。我们发现,秀水11对Cd的耐受性比秀水110更强,而秀水11的氧化损伤较小。细胞壁在限制进入原生质体中的Cd的量中起着重要作用,尤其是在秀水11中。Cd以可溶级分的形式储存在细胞器中,导致Cd解毒的生理压力更大。我们发现Cd可以干扰水稻根部的离子稳态,因为Cd2 +和Ca2 +可能具有相似的吸收途径。秀水11的Cd根茎转运较快,预测与水稻镉积累相关的OsPCR1基因表达水平与水稻的Cd根茎转运保持一致。结果表明,水稻品种中镉的排毒和积累机制不同。 (C)2015 Elsevier Masson SAS。版权所有。

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