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The pathway of transmembrane cadmium influx via calcium-permeable channels and its spatial characteristics along rice root

机译:跨钙渗透途径通过钙渗透通道及其在水稻根系中的空间特征

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摘要

To develop elite crops with low cadmium (Cd), a fundamental understanding of the mechanism of Cd uptake by crop roots is necessary. Here, a new mechanism for Cd2+ entry into rice root cells was investigated. The results showed that Cd2+ influx in rice roots exhibited spatially and temporally dynamic patterns. There was a clear longitudinal variation in Cd uptake along rice roots, with the root tip showing much higher Cd2+ influx and concentration than the root mature zone, which might be due to the much higher expression of the well-known Cd transporter genes OsIRT1, OsNRAMP1, OsNRAMP5, and OsZIP1 in the root tip. Both the net Cd2+ influx and the uptake of Cd in rice roots were highly inhibited by ion channel blockers Gd3+ and TEA+, supplementation of Ca2+ and K+, and the plasma membrane H+-ATPase inhibitor vanadate, with Gd3+ and Ca2+ showing the most inhibitory effects. Furthermore, Ca2+- or Gd3+-induced reduction in Cd2+ influx and Cd uptake did not coincide with the expression of Cd transporter genes, but with that of two Ca channel genes, OsAAN4 and OsGLR3.4. These results indicate that Cd transporters are in part responsible for Cd2+ entry into rice root, and provide a new perspective that the Ca channels OsAAN4 and OsGLR3.4 might play an important role in rice root Cd uptake.
机译:要开发低镉(Cd)的优良作物,必须对作物根部吸收Cd的机理有基本的了解。在此,研究了Cd 2 + 进入水稻根细胞的新机制。结果表明,水稻根中Cd 2 + 的入渗表现出时空动态格局。水稻根部对Cd的吸收有明显的纵向变化,其根尖显示出比根部成熟区高得多的Cd 2 + 流入量和浓度,这可能是由于水稻根部表达量高得多。根尖中众所周知的Cd转运蛋白基因OsIRT1,OsNRAMP1,OsNRAMP5和OsZIP1。离子通道阻断剂Gd 3 + 和TEA + 均能显着抑制水稻根部净Cd 2 + 的流入和Cd的吸收,补充Ca 2 + 和K + ,质膜H + -ATPase抑制剂钒酸盐,Gd 3 + 和Ca 2 + 表现出最大的抑制作用。此外,Ca 2 + -或Gd 3 + 诱导的Cd 2 + 内流减少和Cd吸收与Cd的表达不一致转运蛋白基因,但具有两个Ca通道基因,即OsAAN4和OsGLR3.4。这些结果表明,Cd转运体部分负责Cd 2 + 进入水稻根部,并为Ca通道OsAAN4和OsGLR3.4可能在水稻根部Cd吸收中发挥重要作用提供了新的视角。 。

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