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Changes in stomatal behaviour in the calcicole Leontodon hispidus due to the disruption by ozone of the regulation of apoplastic Ca2+ by trichomes

机译:臭氧破坏了毛线体对质外体Ca2 + 的调节,从而导致了小结石Leontodon hispidus气孔行为的变化。

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摘要

Regulation of the concentration of Ca2+ in the apoplast of plants is essential in order to allow Ca2+-dependent processes, such as Ca2+-mediated signal transduction in stomatal guard cells, to function correctly. This is particularly important for plants growing with high levels of Ca2+ in the rhizosphere. Recently, we have shown that in two calcicoles, Leontodon hispidus L. and Centaurea scabiosa L., trichomes play a key role in this regulatory process. Ozone is known to have a marked effect on plant Ca2+ homeostasis. Therefore, we have examined the effect of this pollutant on the regulation by trichomes of apoplastic Ca2+ in the calcicole L. hispidus. Treatment with 100 nl l–1 ozone resulted in a reduction in stomatal conductance of approximately 25% in plants grown with 15 mM Ca2+ in the rhizosphere. Analysis of total Ca2+ levels revealed that these changes in stomatal behaviour reflect a decrease in the ability of trichomes to sequester Ca2+. The amount of Ca2+ present in the trichome tip cell was reduced by approximately 38%. This was accompanied by an increase in the levels of Ca2+ in the guard cells and other tissues of the leaf. These data suggest that ozone has a detrimental effect on the ability of trichomes to regulate the concentration of apoplastic Ca2+ in L. hispidus, resulting in altered stomatal behaviour, and hence gaseous exchange, possibly due to the disruption of guard-cell Ca2+-mediated signal transduction. This has important implications for the growth and survival of plants growing in Ca2+-rich soils.
机译:为了使依赖Ca2 +的过程(如Ca2 +介导的信号转导)在气孔保卫细胞中正常运转,调节植物的质外体中Ca2 +的浓度至关重要。这对于在根际中生长高水平的Ca2 + 的植物尤其重要。最近,我们已经表明,在两个小穗,Leontodon hispidus L.和Centaurea scabiosa L.中,毛状体在该调节过程中起关键作用。众所周知,臭氧对植物体内的Ca2 +稳态具有显着影响。因此,我们研究了该污染物对钙化小球藻中质外性Ca 2+的毛状体的调节作用的影响。用100 nl-1 臭氧处理后,在根际中生长有15 mM Ca2 + 的植物的气孔导度降低了约25%。对总Ca2 + 水平的分析表明,气孔行为的这些变化反映了毛状体螯合Ca2 + 的能力下降。毛状体尖端细胞中存在的Ca2 + 减少了约38%。这伴随着保卫细胞和叶片其他组织中Ca2 + 含量的增加。这些数据表明,臭氧对毛状线虫调节毛状线虫中质外体Ca2 + 浓度的能力有不利影响,可能导致气孔行为发生变化,从而导致气态交换,这可能是由于保卫细胞的破坏所致。 Ca2 + 介导的信号转导。这对于富含Ca2 + 的土壤中植物的生长和存活具有重要意义。

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  • 来源
    《Planta》 |2001年第1期|158-162|共5页
  • 作者单位

    Institute of Environmental and Natural Sciences Department of Biological Sciences Lancaster University Lancaster LA1 4YQ UK;

    Institute of Environmental and Natural Sciences Department of Biological Sciences Lancaster University Lancaster LA1 4YQ UK;

    Institute of Environmental and Natural Sciences Department of Biological Sciences Lancaster University Lancaster LA1 4YQ UK;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Apoplastic Ca2+ Calcicole Leontodon (calcicole) Ozone Stomate Trichome;

    机译:质外性Ca2 + Calcicole Leontodon(calcicole)臭氧stomate richome;

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