...
首页> 外文期刊>Soil Science and Plant Nutrition >Effects of zinc activity in nutrient solution on uptake, translocation, and root export of cadmium and zinc in three wheat genotypes with different zinc efficiencies
【24h】

Effects of zinc activity in nutrient solution on uptake, translocation, and root export of cadmium and zinc in three wheat genotypes with different zinc efficiencies

机译:营养液中锌活性对三种锌效率不同的小麦基因型镉,锌吸收,转运和根系输出的影响

获取原文
获取原文并翻译 | 示例
           

摘要

The interactions of zinc (Zn) and cadmium (Cd) in uptake and translocation are common but not consistent. We hypothesized that Cd2+ and Zn2+ activity in the apoplasmic solution bathing root-cells could affect Zn accumulation in plants dependent on the wheat genotype. This hypothesis was tested using seedlings of two bread wheat genotypes (Triticum aestivum L. cvs. Rushan and Cross) and one durum wheat genotype (Triticum durum L. cv. Arya) with different Zn efficiencies grown in chelate-buffered nutrient solutions with three Zn2+ (10a??11.11, 10a??9.11, and 10a??8.81a???μM) and two Cd2+ (10a??11.21 and 10a??10.2a???μM) activity levels. Increasing Zn2+ activity in the nutrient solution significantly increased Zn concentration in root and shoots of all three wheat genotypes, although the magnitude of this increase was dependent on the genotype. Cadmium decreased Zn concentration in roots of a??Crossa?? while it had no significant effect on root Zn concentration in a??Rushan.a?? At Zn2+a??=a??10a??11.11a???μM, Cd decreased shoot Zn concentration in a??Aryaa?? whereas it increased shoot Zn concentration at Zn2+a??=a??10a??8.81a???μM. Cadmium increased shoot Zn concentration of a??Rushana?? and a??Crossa?? at Zn2+a??=a??10a??8.81a???μM but it had no significant effect on shoot Zn concentration of these genotypes at Zn2+a??=a??10a??11.11a???μM. The zinc-inefficient genotype a??Aryaa?? accumulated significantly more Cd in its root in comparison with a??Crossa?? and a??Rushan.a?? Cadmium concentration in roots of a??Aryaa?? was decreased significantly with increasing Zn activity. The effect of Zn on accumulation of Cd in roots of a??Crossa?? and a??Rushana?? was dependent on the dose provided, and therefore, both synergistic (at Zn2+a??=a??10a??9.11a???μM) and antagonistic (at Zn2+a??=a??10a??8.81a???μM) interactive effects were found in these genotypes. Zinc supply increased the Zn concentration of xylem sap in a??Crossa?? and a??Rushana?? whereas Zn content in xylem sap of a??Aryaa?? was decreased at Zn2+a??=a??10a??9.11a???μM and thereafter increased at Zn2+a??=a??10a??8.81a???μM. Cadmium treatment reduced Zn concentration in xylem sap of a??Arya,a?? while it tended to increase Zn content in xylem sap of a??Cross.a?? At Zn-deficient conditions, greater retention of Zn in root cell walls of Zn-inefficient a??Aryaa?? resulted in lower root-to-shoot transport of Zn in this genotype. Results revealed that the effect of Cd on the root-to-shoot translocation of Zn via the xylem is dependent on wheat genotype and Zn activity in the nutrient solution.View full textDownload full textKeywordsxylem sap, cell wall, Zn efficiency, Triticum aestivum , Triticum durum.Related var addthis_config = { ui_cobrand: "Taylor & Francis Online", services_compact: "citeulike,netvibes,twitter,technorati,delicious,linkedin,facebook,stumbleupon,digg,google,more", pubid: "ra-4dff56cd6bb1830b" }; Add to shortlist Link Permalink http://dx.doi.org/10.1080/00380768.2011.617290
机译:锌(Zn)和镉(Cd)在吸收和转运中的相互作用很普遍,但不一致。我们推测,无质子溶液浸润根细胞中的Cd 2 + 和Zn 2 + 活性可能影响依赖于小麦基因型的植物中锌的积累。使用两种面包小麦基因型(Ruticum aestivum L. cvs。Rushan和Cross)和一种硬质小麦基因型(Triticum durum L. cv。Arya)的幼苗在螯合缓冲的营养液中(含三种锌)生长,测试了这一假设。 2 + (10 a ?? 11.11 ,10 a ?? 9.11 和10 a ?? 8.81a ?? sup>?μM)和两个Cd 2 + (10 a ?? 11.21 和10 a ?? 10.2a ?? ?μM)活动水平。在营养液中增加Zn 2 + 活性可显着增加所有三种小麦基因型根和茎中的锌浓度,尽管这种增加的幅度取决于基因型。镉降低了十字花科植物根中锌的浓度而对芦山a的根系Zn含量无显着影响。当Zn 2 + a ?? = a ?? 10 a ?? 11.11a ?? ?μM时,Cd降低了a ?? Aryaa ??而在Zn 2 + a ?? = a ?? 10 a ?? 8.81a ?? ?μM时增加了芽中锌的浓度。镉增加了?? Rushana ??的枝条锌浓度。和一个? Zn 2 + a ?? = a ?? 10 a ?? 8.81a ?? ?μM时,对这些基因型的Zn浓度无显着影响 2 + a ?? = a ?? 10 a ?? 11.11a ?? ?μM。缺锌基因型a ?? Aryaa ??与“ Crossa”相比,其根部累积的镉含量明显更高。还有一个?Rushan.a? a ?? Aaaaa ??根中的镉浓度随着锌活性的增加,锌含量显着下降。锌对Crossaα根中Cd积累的影响还有一个?Rushana?取决于所提供的剂量,因此协同作用(在Zn 2 + a ?? = a ?? 10 10 a ?? 9.11a ?? ?μM)在这些基因型中发现了拮抗作用(在Zn 2 + a ?? = a ?? 10 a ?? 8.81a ?? ?μM)。锌的供应增加了“十字花”中木质部汁液的锌浓度。还有一个?Rushana?而a ?? Aryaa ??的木质部汁液中的Zn含量在Zn 2 + a ?? = a ?? 10 a ?? 9.11a ?? ?μM时降低,然后在Zn 2 + a ?? = a ?? 10 a ?? 8.81a ?? ?μM。镉处理降低了a ?? Arya,a ??的木质部汁液中的锌浓度。而倾向于增加a ?? Cross.a ??的木质部汁液中的Zn含量。在缺锌条件下,锌在低效锌缺乏的α?Aryaa ??根细胞壁中的保留更大。导致该基因型中较低的锌从根到茎的转运。结果表明,镉对木质部锌离子从根到茎的转运的影响取决于营养液中小麦的基因型和锌活性。查看全文下载全文关键词木质部汁液,细胞壁,锌效率,普通小麦,普通小麦durum.Related var addthis_config = {ui_cobrand:“泰勒和弗朗西斯在线”,servicescompact:“ citeulike,netvibes,twitter,technorati,delicious,linkedin,facebook,stumbleupon,digg,google,更多”,发布日期:“ ra-4dff56cd6bb1830b”} ;添加到候选列表链接永久链接http://dx.doi.org/10.1080/00380768.2011.617290

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

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