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利用阿勒颇松树种进行半干旱矿山尾矿植物修复时种内和种间植物相互作用的重要性

Importance of intra- and interspecific plant interactions for the phytomanagement of semiarid mine tailings using the tree species Pinus halepensis.

作者信息

Martinez-Oró Duli, Parraga-Aguado Isabel, Querejeta Jose Ignacio, Conesa Héctor M

机构信息

Departamento de Ciencia y Tecnología Agraria, Escuela Técnica Superior de Ingeniería Agronómica, Universidad Politécnica de Cartagena, Paseo Alfonso XIII, 48, E-30203, Cartagena, Spain.

Department of Soil and Water Conservation, Spanish National Research Council (CEBAS-CSIC), PO Box 164, Campus Universitario de Espinardo, Espinardo, Murcia E-30100, Spain.

出版信息

Chemosphere. 2017 Nov;186:405-413. doi: 10.1016/j.chemosphere.2017.08.010. Epub 2017 Aug 7.

Abstract

The objective of this work was to evaluate the effects of plant interactions (intra- and interspecific) on the growth and metal(loid) uptake of the tree species Pinus halepensis to determine its suitability for the phytomanagement of semiarid mine tailings. The pioneer tailings colonizer grass Piptatherum miliaceum was selected for assessing interspecific interactions. The experiment was conducted following a pot experimental design employing mine tailings soil. Pots containing single individuals of P. halepensis or P. miliaceum and pots containing combinations with pines (two pines per pot, or one pine and one grass per pot) were used. The analyses included the determination of plant biomass, foliar element status and stable isotope composition, metal(loid) uptake and its translocation to different plant organs. P. halepensis strongly favoured the growth of P. miliaceum by increasing 9-fold the latter's biomass and alleviating its P limitation. In this interspecific treatment P. halepensis showed a strong N limitation (N/P = 7), which negatively affected its growth, (to about half the biomass of that obtained for the other treatments) and exhibited a significant increase in some metals translocation (especially Cd) into aerial parts. Interestingly, P. miliaceum showed a decrease in the root to leaves translocation factor for most of metals when growing together with pines. The effects of the intraespecific combination on growth and metal uptake in P. halepensis were less relevant than those obtained for the interspecific one. Further research should be focused on testing the behaviour of plant co-cultures under the addition of N or P amendments which could alleviate the negative effects of plant competition.

摘要

这项工作的目的是评估植物间相互作用(种内和种间)对阿勒颇松生长及金属(类金属)吸收的影响,以确定其对半干旱矿山尾矿进行植物修复管理的适用性。选择先锋尾矿定居植物小米草来评估种间相互作用。实验采用盆栽实验设计,使用矿山尾矿土壤。使用装有单株阿勒颇松或小米草的花盆,以及装有松树组合(每盆两棵松树,或每盆一棵松树和一棵草)的花盆。分析内容包括植物生物量的测定、叶片元素状况和稳定同位素组成、金属(类金属)吸收及其向不同植物器官的转运。阿勒颇松通过使小米草的生物量增加9倍并缓解其磷限制,极大地促进了小米草的生长。在这种种间处理中,阿勒颇松表现出强烈的氮限制(氮/磷 = 7),这对其生长产生了负面影响(生物量约为其他处理的一半),并且一些金属(特别是镉)向地上部分的转运显著增加。有趣的是,与松树一起生长时,小米草对大多数金属的根到叶转运因子有所下降。种内组合对阿勒颇松生长和金属吸收的影响不如种间组合显著。进一步的研究应集中在测试添加氮或磷改良剂后植物共培养的行为,这可能会减轻植物竞争的负面影响。

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