文章摘要
洪晓曦,袁静,郑现明,夏梦,丁爱中,豆俊峰.油菜对Cs胁迫的响应及其对Cs富集规律的研究[J].农业环境科学学报,2017,36(12):2394-2400.
油菜对Cs胁迫的响应及其对Cs富集规律的研究
Accumulation and physio-biochemical responses of Brassia campestris L. to Cs stress
投稿时间:2017-05-11  
DOI:10.11654/jaes.2017-0688
中文关键词: 油菜  Cs 胁迫  生理生化响应  富集规律
英文关键词: Brassia campestris L.  Cs stress  physio-biochemical responses  characteristics of enrichment
基金项目:环保公益性行业科研专项(201509074)
作者单位E-mail
洪晓曦 北京师范大学水科学研究院, 北京 100875  
袁静 北京师范大学水科学研究院, 北京 100875  
郑现明 北京师范大学水科学研究院, 北京 100875  
夏梦 北京师范大学水科学研究院, 北京 100875  
丁爱中 北京师范大学水科学研究院, 北京 100875  
豆俊峰 北京师范大学水科学研究院, 北京 100875 doujf@bnu.edu.cn 
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中文摘要:
      以油菜为受试植物,采用盆栽法将其置于植物管理系统中进行培育,90 d后测定不同浓度Cs水平下油菜的生理生化指标和各个器官的Cs富集量,分析油菜对土壤Cs的胁迫响应及富集规律。结果表明:低浓度的Cs(≤ 100 mg·kg-1)对油菜的生长发育有促进作用,使株高、生物量、叶绿素含量、POD活性都有所增加,表明油菜对Cs有一定的抗胁迫机制;但随着土壤中Cs浓度的升高,这种协调机制被打破,油菜生长受到抑制,株高、生物量、叶绿素含量、POD活性都呈现下降趋势。此外,随着土壤中Cs浓度的提高,油菜的Cs富集量也增大。当土壤中Cs浓度 ≤ 100 mg·kg-1时,富集情况为茎部 > 叶片 > 根系;当100 mg·kg-1 < 土壤中Cs浓度 ≤ 600 mg·kg-1时,富集情况为叶片 > 茎部 > 根系,表明油菜具有良好的Cs转运能力和富集能力,其在Cs污染土壤修复方面具有一定的应用潜能。
英文摘要:
      Herein we planted Brassia campestris L. in a plant management system via the potting method. After 90 days, we examined the physiological indices of Brassia campestris L. and the enrichment of each organ under different Cs stresses in order to discuss the response and accumulations. Our results showed that low Cs concentrations (Cs ≤ 100 mg·kg-1) had certain promotional effects on plant height, biomass, chlorophyll content, and POD activity, thus Brassia campestris L. had certain stress resistance. However, increasing Cs concentrations caused a decline in height, biomass, chlorophyll content, and POD activity. The adjustment mechanism was broken, and plant growth was inhibited. With an increase of Cs content in the soil, the accumulation in every organ also increased. In addition, Brassia campestris L. presented the following accumulation order:stem > leaf > root at Cs ≤ 100 mg·kg-1 in the soil and stem > leaf > root at 100 mg·kg-1 ≤ Cs ≤ 600 mg·kg-1 in the soil. These findings indicated that Brassia campestris L. had strong transportation capacity and great potential for phytoremediation of Cs polluted soils.
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