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首页> 外文期刊>Ecotoxicology and Environmental Safety >Physiological responses of biomass allocation, root architecture, and invertase activity to copper stress in young seedlings from two populations of Kummerowia stipulacea (maxim.) Makino
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Physiological responses of biomass allocation, root architecture, and invertase activity to copper stress in young seedlings from two populations of Kummerowia stipulacea (maxim.) Makino

机译:牧草(Kummerowia stipulacea)两个种群(最大)的幼苗中生物量分配,根系结构和转化酶活性对铜胁迫的生理响应

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摘要

In the current study, we hypothesize that mine (metallicolous) populations of metallophytes form a trade-off between the roots and shoots when under copper (Cu) stress to adapt themselves to heavy metal contaminated habitats, and thus, differ from normal (non-metallicolous) populations in biomass allocation. To test the hypothesis, two populations of the metallophyte Kummerowia stipulacea, one from an ancient Cu mine (MP) and the other from a non-contaminated site (NMP), were treated with Cu~(2+) in hydroponic conditions. The results showed that MP plants had higher root/shoot biomass allocation and more complicated root system architecture compared to those of the NMP plants when under Cu stress. The net photosynthetic capacity was more inhibited in the NMP plants than in the MP plants when under Cu stress. The sugar (sucrose and hexose) contents and acid invertase activities of MP plants were elevated while those in NMP plants were inhibited after Cu treatment. The neutral/alkaline invertase activities and sucrose synthase level showed no significant differences between the two populations when under Cu stress. The results showed that acid invertase played an important role in biomass allocation and that the physiological responses were beneficial for the high root/shoot biomass allocation, which were advantageous during adaptive evolution to Cu-enriched mine soils.
机译:在当前的研究中,我们假设,在铜(Cu)胁迫下,矿物质(金属)种群在根和芽之间形成了权衡,以适应重金属污染的生境,因此与正常(非生物质)种群中的生物量分配。为了验证该假设,在水培条件下,用Cu〜(2+)处理了两种金属植物Kummerowia stipulacea种群,一个种群来自一个古老的铜矿(MP),另一个种群来自一个非污染点(NMP)。结果表明,在铜胁迫下,MP植物比NMP植物具有更高的根/茎生物量分配和更复杂的根系结构。在铜胁迫下,NMP植物的净光合能力比MP植物受到的抑制更大。铜处理后,MP植物的糖(蔗糖和己糖)含量和酸性转化酶活性升高,而NMP植物中的糖(蔗糖和己糖)含量升高。在铜胁迫下,两个种群之间的中性/碱性转化酶活性和蔗糖合酶水平没有显着差异。结果表明,酸转化酶在生物量分配中起着重要作用,并且生理响应对高根/茎生物量分配有利,这在富铜矿土壤适应性进化中是有利的。

著录项

  • 来源
    《Ecotoxicology and Environmental Safety》 |2014年第6期|278-284|共7页
  • 作者单位

    School of Resource and Environmental Sciences, Wuhan University, Wuhan, Hubei 430079, Peovle's Republic of China;

    School of Resource and Environmental Sciences, Wuhan University, Wuhan, Hubei 430079, Peovle's Republic of China;

    School of Resource and Environmental Sciences, Wuhan University, Wuhan, Hubei 430079, Peovle's Republic of China;

    School of Resource and Environmental Sciences, Wuhan University, Wuhan, Hubei 430079, Peovle's Republic of China;

  • 收录信息 美国《科学引文索引》(SCI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Kummerowia stipulacea; Biomass allocation; Photosynthesis; Sugar; Acid invertase; Root architecture;

    机译:s草生物量分配;光合作用;糖;酸性转化酶根架构;

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