首页> 外文期刊>Proceedings of the Latvian Academy of Sciences, Section B. Natural, exact, and applied sciences, B dala. Dabaszinatnes >Physiological Responses of Wetland Species Rumex Hydrolapathum to Increased Concentration of Biogenous Heavy Metals Zn and Mn in Substrate
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Physiological Responses of Wetland Species Rumex Hydrolapathum to Increased Concentration of Biogenous Heavy Metals Zn and Mn in Substrate

机译:湿地物种Rumex Hydrolapathum对底物中生物源重金属Zn和Mn浓度增加的生理响应

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The aim of the present study was to determine if individuals of Rumex hydrolapathum Huds native to saline wetlands are able to tolerate high concentration of biogenous heavy metals Zn and Mn in substrate and to accumulate high concentration of these metals in aboveground parts. Plant physiological status was monitored by using non-destructive analysis of chlorophyll and chlorophyll a fluorescence. R. hydrolapathum plants accumulated up to 1840 mg·kg~(?1) Zn and 6400 mg·kg~(?1) Mn in older leaves. The usefulness of monitoring changes in chlorophyll concentration and chlorophyll a fluorescence parameters to predict physiological response of R. hydrolapathum plants to excess Zn and Mn was not supported, as the lack of significant changes indicated that the model species showed adaptation to increased amount of metals in actively photosynthesizing tissues. It appears that Zn and Mn tolerance of R. hydrolapathum is based primarily at the physiological level where metal accumulation in younger leaves and roots is restricted, and development of new leaves is promoted together with induction of senescence in older leaves that have accumulated the majority of Zn and Mn. R. hydrolapathum can be characterised as a very promising model species for further studies for practical phytoremediation needs.
机译:本研究的目的是确定盐渍湿地原生的Rumex hydrolapathum Huds个体是否能够耐受基质中高浓度的生物重金属Zn和Mn,并能在地上部分中高浓度地积累这些金属。通过使用叶绿素和叶绿素a荧光的非破坏性分析来监测植物的生理状态。水生罗非鱼植物在老叶中积累的锌高达1840 mg·kg〜(?1)和6400 mg·kg〜(?1)Mn。不支持监测叶绿素浓度和叶绿素a荧光参数的变化以预测水生罗勒植物对过量锌和锰的生理反应的有用性,因为缺乏重大变化表明该模型物种显示出对增加的金属量的适应性。积极地光合作用组织。似乎,水青枯菌对锌和锰的耐受性主要是基于生理水平,在该水平上,年轻叶片和根中的金属积累受到限制,新叶片的发育与衰老的诱导一起促进了衰老,而老龄叶片中积累了大部分的叶片。锌和锰。 R. hydrolapathum可以被描述为非常有前途的模型物种,可以进一步研究其实际的植物修复需求。

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