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镧系元素(Gadolinium)通过阻断水稻幼苗中的非选择性阳离子通道来抑制镉的运输。

Gadolinium inhibits cadmium transport by blocking non-selective cation channels in rice seedlings.

机构信息

Key Laboratory of Original Agro-Environmental Pollution Prevention and Control, Agro-Environmental Protection Institute, Ministry of Agriculture and Rural Affairs, PR China, Tianjin, 300191, China.

Key Laboratory of Original Agro-Environmental Pollution Prevention and Control, Agro-Environmental Protection Institute, Ministry of Agriculture and Rural Affairs, PR China, Tianjin, 300191, China.

出版信息

Ecotoxicol Environ Saf. 2019 Sep 15;179:160-166. doi: 10.1016/j.ecoenv.2019.04.057. Epub 2019 Apr 28.

Abstract

Non-selective cation channels (NSCCs) play important roles in uptake of heavy metals in plants. However, little information is available concerning the contribution of NSCCs to cadmium (Cd) transport in rice seedlings. Results from the hydroponic experiment showed that the inhibition of 2.7 μM Cd on the development of rice roots was alleviated by adding 0.1 mM gadolinium (Gd) in nutrient solution, companied by reduction of Cd content by 55.3% in roots and by 45.0% in shoots. Inhibition of Gd on Cd accumulation in cytoplasm fraction (F3) was much greater than that in cell walls (F1) and organelles (F2) in roots. After increasing concentrations of Mn and Zn in nutrient solution, adding 0.1 mM Gd resulted in reductions in Cd content by 89.1%, in micronutrients by 54.9% and in macronutrients by 5.4% in roots, respectively. Cd stress resulted in significant increase of PC and free amino acids, but decrease of V-ATPase activity by 32.3% in roots. These results indicate that NSCCs make a great contribution to uptake of Cd in rice seedlings and opportunities for Cd to be transported by NSCCs can be efficiently reduced by blocking NSCCs and/or increasing essential microelements like Mn and Zn.

摘要

非选择性阳离子通道 (NSCCs) 在植物摄取重金属方面发挥着重要作用。然而,关于 NSCCs 对水稻幼苗中镉 (Cd) 转运的贡献,相关信息却很少。水培实验结果表明,在营养液中添加 0.1mM 钆 (Gd) 可缓解 2.7µM Cd 对水稻根系发育的抑制作用,同时使根系中的 Cd 含量降低 55.3%,地上部分降低 45.0%。Gd 对 Cd 在根系细胞质部分(F3)的积累抑制作用远大于细胞壁(F1)和细胞器(F2)。当营养液中 Mn 和 Zn 的浓度增加时,添加 0.1mM Gd 分别使根中 Cd 含量降低 89.1%、微量元素降低 54.9%、大量元素降低 5.4%。Cd 胁迫导致 PC 和游离氨基酸显著增加,但根中 V-ATPase 活性降低 32.3%。这些结果表明,NSCCs 对水稻幼苗中 Cd 的吸收有很大的贡献,通过阻断 NSCCs 和/或增加必需的微量元素如 Mn 和 Zn,可以有效地减少 Cd 被 NSCCs 转运的机会。

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