首页> 外文OA文献 >Chelation by histidine inhibits the vacuolar sequestration of nickel in roots of the hyperaccumulator Thlaspi caerulescens.
【2h】

Chelation by histidine inhibits the vacuolar sequestration of nickel in roots of the hyperaccumulator Thlaspi caerulescens.

机译:组氨酸螯合可抑制超积累性拟南芥根中液泡中的镍螯合。

摘要

* The mechanisms of enhanced root to shoot metal transport in heavy metal hyperaccumulators are incompletely understood. Here, we compared the distribution of nickel (Ni) over root segments and tissues in the hyperaccumulator Thlaspi caerulescens and the nonhyperaccumulator Thlaspi arvense, and investigated the role of free histidine in Ni xylem loading and Ni transport across the tonoplast. * Nickel accumulation in mature cortical root cells was apparent in T. arvense and in a high-Ni-accumulating T. caerulescens accession, but not in a low-accumulating T. caerulescens accession. * Compared with T. arvense, the concentration of free histidine in T. caerulescens was 10-fold enhanced in roots, but was only slightly higher in leaves, regardless of Ni exposure. Nickel uptake in MgATP-energized root- and shoot-derived tonoplast vesicles was almost completely blocked in T. caerulescens when Ni was supplied as a 1 : 1 Ni-histidine complex, but was uninhibited in T. arvense. Exogenous histidine supply enhanced Ni xylem loading in T. caerulescens but not in T. arvense. * The high rate of root to shoot translocation of Ni in T. caerulescens compared with T. arvense seems to depend on the combination of two distinct characters, that is, a greatly enhanced root histidine concentration and a strongly decreased ability to accumulate histidine-bound Ni in root cell vacuoles.
机译:*在重金属超富集植物中提高根向芽金属运输的机制尚未完全了解。在这里,我们比较了镍(Ni)在超级蓄积拟南芥和非超级蓄积拟南芥的根节和根组织中的分布,并研究了游离组氨酸在木质素载量和跨膜液运输中的作用。 *在a皮和高Ni积累的拟南芥属中,成熟皮层根细胞中的镍积累很明显,而在低积累的拟南芥中却没有。 *与拟南芥相比,无论根境如何暴露于镍,芥菜中游离组氨酸的浓度在根部均提高了10倍,但在叶片中仅略高。当以1:1 Ni-组氨酸复合物的形式提供Ni时,MgATP激发的根和芽来源的液泡膜囊泡中的镍吸收几乎完全被阻滞,而在T. arvense中则不受抑制。外源性组氨酸供应增加了淡色锥虫中木质部木质素的负载,但不增强了极尖锥虫中的木质素含量。 *相比拟南芥,根芥中Ni的高根向芽易位率似乎取决于两个不同特征的组合,即,根组氨酸浓度大大提高,而与组氨酸结合的能力大大降低根细胞液泡中的镍。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号