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本文引用的文献

1
Copper tolerance and copper uptake of Lotus purshianus (Benth.) Clem. & Clem. and its symbiotic Rhizobium loti derived from a copper mine waste population.源自铜矿尾矿种群的普氏百脉根(Benth.)Clem. & Clem. 及其共生的百脉根根瘤菌的耐铜性和铜吸收
New Phytol. 1990 Nov;116(3):531-539. doi: 10.1111/j.1469-8137.1990.tb00537.x.
2
AFLP-based assessment of the effects of environmental heavy metal pollution on the genetic structure of pioneer populations of Suillus luteus.基于扩增片段长度多态性(AFLP)技术评估环境重金属污染对黄斑拟牛肝菌先锋种群遗传结构的影响。
New Phytol. 2004 Nov;164(2):297-303. doi: 10.1111/j.1469-8137.2004.01190.x.
3
A zinc-adapted fungus protects pines from zinc stress.一种适应锌的真菌可保护松树免受锌胁迫。
New Phytol. 2004 Feb;161(2):549-555. doi: 10.1046/j.1469-8137.2003.00941.x. Epub 2003 Dec 1.
4
Molecular diversity and phylogenetic affinities of symbiotic root-associated ascomycetes of the Helotiales in burnt and metal polluted habitats.火烧及金属污染生境中柔膜菌目共生根际子囊菌的分子多样性及系统发育亲缘关系
New Phytol. 2002 Jul;155(1):131-148. doi: 10.1046/j.1469-8137.2002.00444.x.
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Differential tolerance to copper and zinc of micropropagated birches tested in hydroponics.水培条件下微繁殖桦树对铜和锌的差异耐受性测试
New Phytol. 1997 Nov;137(3):543-549. doi: 10.1046/j.1469-8137.1997.00840.x.
6
Multiple tolerance and co-tolerance to heavy metals in Silene vulgaris: a co-segregation analysis.麦瓶草对重金属的多重耐受性和共耐受性:共分离分析
New Phytol. 1997 Jul;136(3):489-496. doi: 10.1046/j.1469-8137.1997.00756.x.
7
Short-term phosphorus uptake rates in mycorrhizal and non-mycorrhizal roots of intact Pinus sylvestris seedlings.完整欧洲赤松幼苗菌根和非菌根根系的短期磷吸收速率
New Phytol. 1999 Sep;143(3):589-597. doi: 10.1046/j.1469-8137.1999.00471.x.
8
Metal toxicity affects fungal and bacterial activities in soil differently.金属毒性对土壤中真菌和细菌活动的影响有所不同。
Appl Environ Microbiol. 2004 May;70(5):2966-73. doi: 10.1128/AEM.70.5.2966-2973.2004.
9
Patterns of soil copper contamination and temporal changes in vegetation in the vicinity of a copper rod rolling factory.铜棒轧制厂附近土壤铜污染模式及植被的时间变化
Environ Pollut. 1997;95(3):363-9. doi: 10.1016/s0269-7491(96)00130-3.
10
Determination of chemical availability of cadmium and zinc in soils using inert soil moisture samplers.使用惰性土壤水分采样器测定土壤中镉和锌的化学有效性
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适应铜的褐环乳牛肝菌,一种松树在铜矿尾矿上定殖的共生解决方案。

Copper-adapted Suillus luteus, a symbiotic solution for pines colonizing Cu mine spoils.

作者信息

Adriaensen K, Vrålstad T, Noben J-P, Vangronsveld J, Colpaert J V

机构信息

Hasselt University, Environmental Biology Group, Agoralaan, Gebouw D, 3590 Diepenbeek, Belgium.

出版信息

Appl Environ Microbiol. 2005 Nov;71(11):7279-84. doi: 10.1128/AEM.71.11.7279-7284.2005.

DOI:10.1128/AEM.71.11.7279-7284.2005
PMID:16269769
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1287625/
Abstract

Natural populations thriving in heavy-metal-contaminated ecosystems are often subjected to selective pressures for increased resistance to toxic metals. In the present study we describe a population of the ectomycorrhizal fungus Suillus luteus that colonized a toxic Cu mine spoil in Norway. We hypothesized that this population had developed adaptive Cu tolerance and was able to protect pine trees against Cu toxicity. We also tested for the existence of cotolerance to Cu and Zn in S. luteus. Isolates from Cu-polluted, Zn-polluted, and nonpolluted sites were grown in vitro on Cu- or Zn-supplemented medium. The Cu mine isolates exhibited high Cu tolerance, whereas the Zn-tolerant isolates were shown to be Cu sensitive, and vice versa. This indicates the evolution of metal-specific tolerance mechanisms is strongly triggered by the pollution in the local environment. Cotolerance does not occur in the S. luteus isolates studied. In a dose-response experiment, the Cu sensitivity of nonmycorrhizal Pinus sylvestris seedlings was compared to the sensitivity of mycorrhizal seedlings colonized either by a Cu-sensitive or Cu-tolerant S. luteus isolate. In nonmycorrhizal plants and plants colonized by the Cu-sensitive isolate, root growth and nutrient uptake were strongly inhibited under Cu stress conditions. In contrast, plants colonized by the Cu-tolerant isolate were hardly affected. The Cu-adapted S. luteus isolate provided excellent insurance against Cu toxicity in pine seedlings exposed to elevated Cu levels. Such a metal-adapted Suillus-Pinus combination might be suitable for large-scale land reclamation at phytotoxic metalliferous and industrial sites.

摘要

在重金属污染的生态系统中蓬勃发展的自然种群,常常面临着增强对有毒金属抗性的选择压力。在本研究中,我们描述了一种外生菌根真菌——褐环乳牛肝菌(Suillus luteus)的种群,它定殖于挪威一个有毒的铜矿废石堆中。我们假设这个种群已经形成了适应性的铜耐受性,并且能够保护松树免受铜毒性的影响。我们还测试了褐环乳牛肝菌对铜和锌的共耐受性。从铜污染、锌污染和未污染地点分离得到的菌株,在添加了铜或锌的培养基上进行体外培养。来自铜矿的分离菌株表现出高铜耐受性,而耐锌分离菌株对铜敏感,反之亦然。这表明特定金属耐受性机制的进化受到当地环境污染的强烈触发。在所研究的褐环乳牛肝菌分离菌株中不存在共耐受性。在剂量反应实验中,将非菌根的欧洲赤松(Pinus sylvestris)幼苗的铜敏感性与接种了对铜敏感或耐铜的褐环乳牛肝菌分离菌株的菌根幼苗的敏感性进行了比较。在非菌根植物和接种了对铜敏感分离菌株的植物中,在铜胁迫条件下,根系生长和养分吸收受到强烈抑制。相比之下,接种了耐铜分离菌株的植物几乎没有受到影响。适应铜的褐环乳牛肝菌分离菌株为暴露于高铜水平的松树幼苗提供了极好的抵御铜毒性的保护。这样一种适应金属的乳牛肝菌 - 松树组合可能适用于对具有植物毒性的金属矿和工业场地进行大规模土地复垦。