首页> 外文期刊>Frontiers in Plant Science >Proteomic Profiling of the Interactions of Cd/Zn in the Roots of Dwarf Polish Wheat ( Triticum polonicum L.)
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Proteomic Profiling of the Interactions of Cd/Zn in the Roots of Dwarf Polish Wheat ( Triticum polonicum L.)

机译:矮波兰小麦( Triticum polonicum L.)根系中Cd / Zn相互作用的蛋白质组学分析

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Cd and Zn have been shown to interact antagonistically or synergistically in various plants. In the present study of dwarf polish wheat (DPW)roots, Cd uptake was inhibited by Zn, and Zn uptake was inhibited by Cd, suggesting that Cd and Zn interact antagonistically in this plant. A study of proteomic changes showed that Cd, Zn, and Cd+Zn stresses altered the expression of 206, 303, and 190 proteins respectively. Among these, 53 proteins were altered significantly in response to all these stresses (Cd, Zn, and Cd+Zn), whereas 58, 131, and 47 proteins were altered in response to individual stresses (Cd, Zn, and Cd+Zn, respectively). Sixty-one differentially expressed proteins (DEPs) were induced in response to both Cd and Zn stresses; 33 proteins were induced in response to both Cd and Cd+Zn stresses; and 57 proteins were induced in response to both Zn and Cd+Zn stresses. These results indicate that Cd and Zn induce differential molecular responses, which result in differing interactions of Cd/Zn. A number of proteins that mainly participate in oxidation-reduction and GSH, SAM, and sucrose metabolisms were induced in response to Cd stress, but not Cd+Zn stress. This result indicates that these proteins participate in Zn inhibition of Cd uptake and ultimately cause Zn detoxification of Cd. Meanwhile, a number of proteins that mainly participate in sucrose and organic acid metabolisms and oxidation-reduction were induced in response to Zn stress but not Cd+Zn stress. This result indicates that these proteins participate in Cd inhibition of Zn uptake and ultimately cause the Cd detoxification of Zn. Other proteins induced in response to Cd, Zn, or Cd+Zn stress, participate in ribosome biogenesis, DNA metabolism, and protein folding/modification and may also participate in the differential defense mechanisms.
机译:镉和锌已显示出在各种植物中拮抗或协同作用。在本研究中,矮化小麦(DPW)根系中,Zn抑制了Cd的吸收,而Cd抑制了Zn的吸收,这表明Cd和Zn在该植物中拮抗相互作用。蛋白质组学研究表明,Cd,Zn和Cd + Zn胁迫分别改变206、303和190蛋白的表达。其中,有53种蛋白质响应所有这些压力(Cd,Zn和Cd + Zn)发生了显着变化,而58、131和47种蛋白质响应了单个应力(Cd,Zn和Cd + Zn,分别)。响应于Cd和Zn胁迫,诱导了61个差异表达蛋白(DEP)。 Cd和Cd + Zn胁迫均诱导了33种蛋白质; Zn和Cd + Zn胁迫均诱导了57种蛋白质的表达。这些结果表明,Cd和Zn诱导不同的分子反应,从而导致Cd / Zn的相互作用不同。响应于Cd胁迫而不是Cd + Zn胁迫,诱导了许多主要参与氧化还原和GSH,SAM和蔗糖代谢的蛋白质。该结果表明这些蛋白质参与锌对镉吸收的抑制并最终引起锌对镉的解毒。同时,响应于Zn胁迫而不是Cd + Zn胁迫诱导了许多主要参与蔗糖和有机酸代谢和氧化还原的蛋白质。该结果表明这些蛋白质参与镉对锌吸收的抑制并最终导致镉对锌的解毒。响应Cd,Zn或Cd + Zn胁迫而诱导产生的其他蛋白质,参与核糖体的生物发生,DNA代谢和蛋白质折叠/修饰,也可能参与差异防御机制。

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