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菌根化毛桦中的金属积累与解毒机制

Metal accumulation and detoxification mechanisms in mycorrhizal Betula pubescens.

作者信息

Fernández-Fuego D, Bertrand A, González A

机构信息

Departamento de Biología de Organismos y Sistemas, Universidad de Oviedo, Catedrático Rodrigo Uría s/n, 33071 Oviedo, Spain; Instituto Universitario de Biotecnología de Asturias, Spain.

Departamento de Biología de Organismos y Sistemas, Universidad de Oviedo, Catedrático Rodrigo Uría s/n, 33071 Oviedo, Spain; Instituto Universitario de Biotecnología de Asturias, Spain.

出版信息

Environ Pollut. 2017 Dec;231(Pt 1):1153-1162. doi: 10.1016/j.envpol.2017.07.072. Epub 2017 Sep 21.

Abstract

Metal detoxification in plants is a complex process that involves different mechanisms, such as the retention of metals to the cell wall and their chelation and subsequent compartmentalization in plant vacuoles. In order to identify the mechanisms involved in metal accumulation and tolerance in Betula pubescens, as well as the role of mycorrhization in these processes, mycorrhizal and non-mycorrhizal plants were grown in two industrial soils with contrasting concentrations of heavy metals. Mycorrhization increased metal uptake at low metal concentrations in the soil and reduced it at high metal concentrations, which led to an enhanced growth and biomass production of the host when growing in the most polluted soil. Our results suggest that the sequestration on the cell wall is the main detoxification mechanism in white birch exposed to acute chronic metal-stress, while phytochelatins play a role mitigating metal toxicity inside the cells. Given its high Mn and Zn root-to-shoot translocation rate, Betula pubescens is a very promising species for the phytoremediation of soils polluted with these metals.

摘要

植物中的金属解毒是一个复杂的过程,涉及不同的机制,如金属在细胞壁上的保留、螯合以及随后在植物液泡中的区室化。为了确定欧洲白桦中金属积累和耐受的机制,以及菌根形成在这些过程中的作用,将菌根植物和非菌根植物种植在两种重金属浓度不同的工业土壤中。菌根形成在土壤中金属浓度较低时增加了金属吸收,而在金属浓度较高时降低了金属吸收,这导致宿主植物在污染最严重的土壤中生长时生长和生物量增加。我们的结果表明,细胞壁上的螯合作用是白桦在急性慢性金属胁迫下的主要解毒机制,而植物螯合肽在减轻细胞内金属毒性方面发挥作用。鉴于欧洲白桦具有较高的锰和锌从根到茎的转运率,它是用于这些金属污染土壤植物修复的非常有前景的物种。

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