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丛枝菌根定植对污染田间土壤中植物重金属吸收的影响很小。

Arbuscular mycorrhizal colonization has little consequence for plant heavy metal uptake in contaminated field soils.

机构信息

Department of Biology, University of Pennsylvania, 433 South University Avenue, 321 Leidy Labs, Philadelphia, Pennsylvania, 19104, USA.

出版信息

Ecol Appl. 2017 Sep;27(6):1862-1875. doi: 10.1002/eap.1573. Epub 2017 Jul 12.

DOI:10.1002/eap.1573
PMID:28482132
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC5581990/
Abstract

The factors affecting plant uptake of heavy metals from metalliferous soils are deeply important to the remediation of polluted areas. Arbuscular mycorrhizal fungi (AMF), soil-dwelling fungi that engage in an intimate exchange of nutrients with plant roots, are thought to be involved in plant metal uptake as well. Here, we used a novel field-based approach to investigate the effects of AMF on plant metal uptake from soils in Palmerton, Pennsylvania, USA contaminated with heavy metals from a nearby zinc smelter. Previous studies often focus on one or two plant species or metals, tend to use highly artificial growing conditions and metal applications, and rarely consider metals' effects on plants and AMF together. In contrast, we examined both direct and AMF-mediated effects of soil concentrations on plant concentrations of 8-13 metals in five wild plant species sampled across a field site with continuous variation in Zn, Pb, Cd, and Cu contamination. Plant and soil metal concentration profiles were closely matched despite high variability in soil metal concentrations even at small spatial scales. However, we observed few effects of soil metals on AMF colonization, and no effects of AMF colonization on plant metal uptake. Manipulating soil chemistry or plant community composition directly may control landscape-level plant metal uptake more effectively than altering AMF communities. Plant species identities may serve as highly local indicators of soil chemical characteristics.

摘要

影响植物从含金属土壤中吸收重金属的因素对于污染地区的修复至关重要。丛枝菌根真菌(AMF)是一种与植物根系进行密切养分交换的土壤真菌,被认为也参与了植物对金属的吸收。在这里,我们使用一种新颖的基于现场的方法来研究宾夕法尼亚州棕榈顿(Palmerton)地区的 AMF 对受附近锌冶炼厂重金属污染土壤中植物金属吸收的影响。先前的研究通常集中在一两种植物物种或金属上,往往使用高度人为的生长条件和金属应用,并且很少考虑金属对植物和 AMF 的共同影响。相比之下,我们在一个 Zn、Pb、Cd 和 Cu 污染连续变化的野外地点,检查了五种野生植物物种中土壤浓度对 8-13 种金属的直接和 AMF 介导的植物浓度的影响。尽管在小空间尺度上土壤金属浓度的变化很大,但植物和土壤金属浓度曲线非常吻合。然而,我们观察到土壤金属对 AMF 定植的影响很小,AMF 定植对植物金属吸收的影响也很小。直接操纵土壤化学或植物群落组成可能比改变 AMF 群落更有效地控制景观水平的植物金属吸收。植物物种身份可能是土壤化学特征的高度局部指示因子。

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本文引用的文献

1
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New Phytol. 1990 Jul;115(3):495-501. doi: 10.1111/j.1469-8137.1990.tb00476.x.
2
The heavy metal paradox in arbuscular mycorrhizas: from mechanisms to biotechnological applications.丛枝菌根中的重金属悖论:从机制到生物技术应用
J Exp Bot. 2016 Dec;67(22):6253-6265. doi: 10.1093/jxb/erw403. Epub 2016 Oct 31.
3
Can arbuscular mycorrhizal fungi reduce Cd uptake and alleviate Cd toxicity of Lonicera japonica grown in Cd-added soils?
与生长在废弃铅冶炼厂的三种金属积累植物相关的菌根真菌群落。
Braz J Microbiol. 2023 Dec;54(4):2979-2990. doi: 10.1007/s42770-023-01147-3. Epub 2023 Oct 21.
4
Effects of Arbuscular Mycorrhizal Fungi on the Growth and Root Cell Ultrastructure of under Cadmium Stress.丛枝菌根真菌对镉胁迫下[植物名称缺失]生长及根细胞超微结构的影响
J Fungi (Basel). 2023 Jan 19;9(2):140. doi: 10.3390/jof9020140.
5
Functional Trait-Based Screening of Zn-Pb Tolerant Wild Plant Species at an Abandoned Mine Site in Gard (France) for Rehabilitation of Mediterranean Metal-Contaminated Soils.废弃矿区 Zn-Pb 耐受野生植物功能性状筛选及其在治理地中海受金属污染土壤中的应用。
Int J Environ Res Public Health. 2020 Jul 30;17(15):5506. doi: 10.3390/ijerph17155506.
6
Dual Role of Metallic Trace Elements in Stress Biology-From Negative to Beneficial Impact on Plants.金属微量元素在应激生物学中的双重作用——从对植物的负面影响到有益影响。
Int J Mol Sci. 2019 Jun 26;20(13):3117. doi: 10.3390/ijms20133117.
7
Beneficial Root Endophytic Fungi Increase Growth and Quality Parameters of Sweet Basil in Heavy Metal Contaminated Soil.有益的根部内生真菌提高了重金属污染土壤中甜罗勒的生长和品质参数。
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PeerJ. 2018 Mar 6;6:e4425. doi: 10.7717/peerj.4425. eCollection 2018.
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4
Effect of heavy metals on seed germination and seedling growth of common ragweed and roadside ground cover legumes.重金属对普通豚草和路边地被豆科植物种子萌发及幼苗生长的影响。
Environ Pollut. 2016 Jun;213:112-118. doi: 10.1016/j.envpol.2015.11.041. Epub 2016 Feb 13.
5
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World J Microbiol Biotechnol. 2015 Nov;31(11):1655-64. doi: 10.1007/s11274-015-1918-y. Epub 2015 Aug 7.
6
Pervasive and strong effects of plants on soil chemistry: a meta-analysis of individual plant 'Zinke' effects.植物对土壤化学具有普遍且强烈的影响:对个体植物“津克”效应的荟萃分析
Proc Biol Sci. 2015 Aug 7;282(1812):20151001. doi: 10.1098/rspb.2015.1001.
7
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8
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Mol Microbiol. 2014 Jul;93(1):10-23. doi: 10.1111/mmi.12653. Epub 2014 Jun 9.
9
Mycorrhizal status of Cyperaceae from New Caledonian ultramafic soils: effects of phosphorus availability on arbuscular mycorrhizal colonization of Costularia comosa under field conditions.新喀里多尼亚超镁铁质土壤中莎草科植物的菌根状况:田间条件下磷有效性对 Costularia comosa 丛枝菌根定殖的影响。
Mycorrhiza. 2013 Nov;23(8):655-61. doi: 10.1007/s00572-013-0503-1. Epub 2013 May 2.
10
Mycorrhizal colonization affects the elemental distribution in roots of Ni-hyperaccumulator Berkheya coddii Roessler.菌根定植影响镍超富集植物伯乐树根系元素分布。
Environ Pollut. 2013 Apr;175:100-9. doi: 10.1016/j.envpol.2012.12.028. Epub 2013 Jan 24.