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盐分和镉胁迫对四种大麦基因型中矿质养分、钠和镉积累的交互作用。

Interaction of salinity and cadmium stresses on mineral nutrients, sodium, and cadmium accumulation in four barley genotypes.

作者信息

Huang You-zong, Wei Kang, Yang Juan, Dai Fei, Zhang Guo-ping

机构信息

Agronomy Department, Zhejiang University, Hangzhou 310029, China.

出版信息

J Zhejiang Univ Sci B. 2007 Jul;8(7):476-85. doi: 10.1631/jzus.2007.B0476.

Abstract

Interaction of salinity (NaCl) and cadmium (Cd) on growth, mineral nutrients, Na and Cd accumulation in four barley genotypes differing in salt tolerance was studied in a hydroponic experiment. Cd, NaCl and their combined stresses reduced Ca and Mg concentrations in roots and shoots, K concentration in shoots, increased K and Cu concentrations in roots relative to control, but had non-significant effect on micronutrients Cu, Fe and Mn concentrations in shoot. The three stresses reduced accumulation of most tested nutrients in both roots and shoots, except NaCl and NaCl+Cd stresses for root K and shoot Cu accumulation in salt tolerant genotypes. The salt tolerant genotypes did not have higher nutrient concentration and accumulation than the sensitive ones when exposed to Cd and NaCl stresses. In conclusion, the affecting mechanism of Cd stress on nutrients was to some extent different from salinity stress, and the NaCl+Cd stress was not equal to additional Cd and NaCl stresses, probably due to the different valence and competitive site of Na(+) and Cd(2+). NaCl addition in the Cd-containing medium caused remarkable reductions in both Cd concentration and accumulation, with the extent of reduction being also dependent on genotypes. The salt-tolerant genotypes had lower Na concentration than sensitive ones.

摘要

在水培实验中,研究了盐度(NaCl)和镉(Cd)对四种耐盐性不同的大麦基因型生长、矿质营养、钠和镉积累的相互作用。与对照相比,镉、氯化钠及其复合胁迫降低了根和地上部的钙和镁浓度、地上部的钾浓度,增加了根中的钾和铜浓度,但对地上部的微量营养元素铜、铁和锰浓度没有显著影响。这三种胁迫降低了根和地上部大多数测试养分的积累,但耐盐基因型中,除了根中钾的积累和地上部铜的积累在氯化钠和氯化钠 + 镉胁迫下外。在镉和氯化钠胁迫下,耐盐基因型的养分浓度和积累并不高于敏感基因型。总之,镉胁迫对养分的影响机制在一定程度上不同于盐度胁迫,氯化钠 + 镉胁迫并不等同于额外的镉和氯化钠胁迫,这可能是由于Na(+)和Cd(2+)的价态和竞争位点不同。在含镉培养基中添加氯化钠会导致镉浓度和积累显著降低,降低程度也因基因型而异。耐盐基因型的钠浓度低于敏感基因型。

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