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首页> 外文期刊>Biological trace element research >Inhibition of root growth and polyamine metabolism in sunflower (Helianthus annuus) seedlings under cadmium and copper stress.
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Inhibition of root growth and polyamine metabolism in sunflower (Helianthus annuus) seedlings under cadmium and copper stress.

机译:镉和铜胁迫对向日葵(向日葵)幼苗根系生长和多胺代谢的抑制作用

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摘要

Although sunflower is usually regarded as a highly tolerant crop, impairment of root growth at initial stages of plant development may result in poor crop establishment and higher susceptibility to pathogen attack. In order to evaluate if Cd2+ and Cu2+ may impact on sunflower germination and initial root development, a pot experiment under controlled conditions was carried out. Possible involvement of polyamine metabolism in sunflower response to these stressors was also investigated. Although Cd2+ and Cu2+ treatments affect neither seed germination nor radical emergence, sunflower seedlings grown in the presence of these heavy metals showed significant inhibition of root growth, being this inhibition greater for Cd2+. Both metals caused significant increases in proline contents at the highest concentrations tested (0.5 and 1 mM), and these increments were more pronounced for Cd2+ treatments, especially between days 3 and 10. Metals also increased putrescine (Put) contents at all concentrations assayedfrom the seventh day onward, causing no variations on this polyamine time-course pattern. Spermine and spermidine contents, however, were increased only by 1 mM Cd2+. Arginine decarboxylase seems to have been the enzyme responsible for Put increases under both metal treatments. This work demonstrates that initial root growth of sunflower seedlings may be significantly impaired in Cd2+ or Cu2+ contaminated soils. It also shows that polyamines are key biological compounds, which are probably involved in signaling pathways triggered under stress environmental conditions.
机译:尽管向日葵通常被认为是高度耐受的作物,但植物发育初期根系生长的损害可能会导致作物生长欠佳和对病原体侵袭的敏感性更高。为了评估Cd2 +和Cu2 +是否可能影响向日葵发芽和初始根发育,在受控条件下进行了盆栽试验。还研究了多胺代谢可能参与了向日葵对这些胁迫的响应。尽管Cd2 +和Cu2 +处理既不影响种子发芽,也不影响自由基的出现,但在这些重金属存在下生长的向日葵幼苗对根系的生长具有显着的抑制作用,对Cd2 +的抑制作用更大。在最高测试浓度(0.5和1 mM)下,两种金属均导致脯氨酸含量显着增加,尤其是在第3天至第10天之间,Cd2 +处理尤其明显地增加了腐胺(Put)含量。从第七天开始,这种多胺时间过程模式不会发生变化。但是,精胺和亚精胺的含量仅增加了1 mM Cd2 +。在两种金属处理下,精氨酸脱羧酶似乎都是引起Put增加的酶。这项工作表明,在Cd2 +或Cu2 +污染的土壤中,向日葵幼苗的初始根系生长可能会受到严重损害。它还表明,多胺是关键的生物化合物,可能参与了在压力环境条件下触发的信号传导途径。

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