State Key Laboratory of Urban and Regional Ecology, Research Centre for Eco-Environmental Sciences, Chinese Academy of Sciences, Beijing, 100085, China; University of Chinese Academy of Sciences, Beijing, 100049, China.
State Key Laboratory of Urban and Regional Ecology, Research Centre for Eco-Environmental Sciences, Chinese Academy of Sciences, Beijing, 100085, China.
Environ Pollut. 2020 May;260:113941. doi: 10.1016/j.envpol.2020.113941. Epub 2020 Jan 8.
Manganese (Mn) transporter OsNRAMP5 was widely reported to regulate cadmium (Cd) uptake in rice. However, the relationship between OsNRAMP5 expression level and Cd accumulation, impacts of external ion activities on OsNRAMP5 expression level and Cd accumulation are still unclear. Investigations of the relationship between OsNRAMP5 expression level and Cd accumulation in three indica rice genotypes were conducted under various external Mn activities ranging from Mn deficiency to toxicity in EGTA-buffered nutrient solution. Results in this work indicated that OsNRAMP5 expression level in roots significantly up-regulated at Mn phytotoxicity compared to that at Mn deficiency, which may stimulate by the increasing uptake of Mn. Our work also demonstrated that root Cd concentration of all the tested rice decreased notably when external Mn activity reached the level of toxicity. This may explain by the increasing competition between the excess Mn and Cd as well as the disorder of element absorption caused by root damage at Mn toxicity. Our work also revealed that the relationship between OsNRAMP5 expression level in roots and Cd accumulation in roots was insignificant for all the tested genotypes. Besides, OsNRAMP5 expression level in roots seemed more related to root Mn accumulation. The fact that function of OsNRAMP5 mainly focuses on Mn uptake, together with the fact that many transporter genes involved in Cd uptake might result in the insignificant correlation between OsNRAMP5 expression level and Cd accumulation in roots. At last, multi-level regulating and processing of the process from gene expression to protein translation might account for the inconsistent relationship between root OsNRAMP5 expression level and Cd accumulation in roots.
锰(Mn)转运蛋白 OsNRAMP5 被广泛报道可调节水稻中的镉(Cd)吸收。然而,OsNRAMP5 表达水平与 Cd 积累之间的关系、外部离子活性对 OsNRAMP5 表达水平和 Cd 积累的影响仍不清楚。在 EGTA 缓冲营养液中从锰缺乏到毒性的各种外部 Mn 活性下,对三个籼稻基因型的 OsNRAMP5 表达水平与 Cd 积累之间的关系进行了研究。本工作的结果表明,与 Mn 缺乏相比,根中 OsNRAMP5 的表达水平在 Mn 毒性下显著上调,这可能是由于 Mn 吸收增加而受到刺激。我们的工作还表明,当外部 Mn 活性达到毒性水平时,所有测试水稻的根 Cd 浓度都明显降低。这可以解释为过量 Mn 和 Cd 之间的竞争增加,以及 Mn 毒性导致根损伤引起的元素吸收紊乱。我们的工作还揭示了根中 OsNRAMP5 表达水平与根中 Cd 积累之间的关系对所有测试基因型都不重要。此外,根中 OsNRAMP5 的表达水平似乎与根 Mn 积累更为相关。OsNRAMP5 的功能主要集中在 Mn 吸收上,以及涉及 Cd 吸收的许多转运蛋白基因可能导致根中 OsNRAMP5 表达水平与 Cd 积累之间没有显著相关性。最后,从基因表达到蛋白质翻译的过程的多层次调节和处理可能解释了根中 OsNRAMP5 表达水平与 Cd 积累之间不一致的关系。