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pH值强烈影响铀对拟南芥植物光合机构的诱导效应。

The pH strongly influences the uranium-induced effects on the photosynthetic apparatus of Arabidopsis thaliana plants.

作者信息

Saenen Eline, Horemans Nele, Vanhoudt Nathalie, Vandenhove Hildegarde, Biermans Geert, Van Hees May, Wannijn Jean, Vangronsveld Jaco, Cuypers Ann

机构信息

Belgian Nuclear Research Centre (SCK•CEN), Biosphere Impact Studies, Boeretang 200, 2400 Mol, Belgium; Hasselt University, Centre for Environmental Sciences, Agoralaan Building D, 3590 Diepenbeek, Belgium.

Belgian Nuclear Research Centre (SCK•CEN), Biosphere Impact Studies, Boeretang 200, 2400 Mol, Belgium.

出版信息

Plant Physiol Biochem. 2014 Sep;82:254-61. doi: 10.1016/j.plaphy.2014.06.012. Epub 2014 Jun 27.

DOI:10.1016/j.plaphy.2014.06.012
PMID:25014646
Abstract

To study the impact of environmental uranium (U) contamination, effects should be analysed at different environmentally relevant pH levels as the speciation of U, and hence its toxicity, is strongly dependent on the pH. As photosynthesis is a major energy producing process in plants intimately connected to plant growth and known to be susceptible to metal stress, the effects of different U concentrations on photosynthesis in 18-day-old Arabidopsis thaliana (Columbia ecotype) are investigated at two contrasting pH levels, pH 4.5 and pH 7.5. At pH 4.5, U is highly taken up by the roots but is poorly translocated to the shoots, while at pH 7.5, less U is taken up but the translocation is higher. The lower U concentrations in the shoots at pH 4.5 are accompanied by a more reduced leaf growth as compared to pH 7.5. In addition, U does not influence the photosynthetic machinery at pH 7.5, while an optimization of the photosynthesis takes place after U exposure at pH 4.5. As such, more of the absorbed quanta are effectively used for photosynthesis accompanied by a decreased non-photochemical quenching and an increased electron transport rate. Since the enhanced photosynthesis at pH 4.5 is accompanied by a decreased growth, we suggest that the energy produced during photosynthesis is used for defence reactions against U-induced oxidative stress rather than for growth. As such, a high discrepancy was observed between the two pH levels, with an optimized photosynthetic apparatus at pH 4.5 and almost no effects at pH 7.5.

摘要

为了研究环境中铀(U)污染的影响,应在不同的与环境相关的pH水平下分析其影响,因为铀的形态,进而其毒性,强烈依赖于pH值。由于光合作用是植物中与植物生长密切相关的主要能量产生过程,并且已知易受金属胁迫影响,因此在两个对比的pH水平,即pH 4.5和pH 7.5下,研究了不同铀浓度对18日龄拟南芥(哥伦比亚生态型)光合作用的影响。在pH 4.5时,根部大量吸收铀,但向地上部的转运较差,而在pH 7.5时,吸收的铀较少,但转运率较高。与pH 7.5相比,pH 4.5时地上部较低的铀浓度伴随着叶片生长的更多减少。此外,在pH 7.5时铀不影响光合机制,而在pH 4.5时铀暴露后光合作用发生优化。因此,更多吸收的量子有效地用于光合作用,伴随着非光化学猝灭的降低和电子传递速率的增加。由于pH 4.5时光合作用增强伴随着生长减少,我们认为光合作用产生的能量用于对抗铀诱导的氧化应激的防御反应而不是用于生长。因此,在两个pH水平之间观察到很大差异,在pH 4.5时光合装置得到优化,而在pH 7.5时几乎没有影响。

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