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Metal response of Douglas-fir: a comparison of foliar metals and phytochelatin production in trees planted in soils amended with biosolids or metal salts.

机译:道格拉斯冷杉的金属响应:比较土壤中种植的生物固体或金属盐中的树木中叶片金属和植物螯合素产量的比较。

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摘要

This study was designed to explore the relationship between metals in soil, foliar metal concentrations and phytochelatin (PC) production in Douglas-fir trees planted in soils amended with biosolids or metal salts. Both a greenhouse and field study were conducted to determine whether PC production could be correlated with increased foliar metal or soil metal concentrations. Two seedlings per pot were planted in one of seven greenhouse treatments. The control soil, a sandy loam forest soil, was amended with modern biosolids at rates of 20 Mg ha-1 or 40 Mg ha-1 or metal salts added to similar metal concentrations as biosolids treatments to represent low to moderate metal application rates. Two additional treatments using 100% historic biosolids and the control soil amended with metal salts represented a high metal application rate. The field study included trees amended with modern biosolids at a rate of 21 Mg ha-1 or 16 Mg ha -1 and corresponding trees of the same age that had not received biosolids applications. Soils in both studies were tested for total and NH4NO 3- extractable Cd, Cu, Pb and Zn, as well as pH, C, N, C:N and electrical conductivity. Tree foliage was analyzed for total foliar Cd, Cu, Pb and Zn, as well as phytochelatin, glutathione and cysteine content.;Metal concentrations in greenhouse soils ranged from 2.2-38.0 mg kg -1 Cd, 11-833 mg kg-1 Cu, 49-1361 mg kg-1 Pb and 33-726 mg kg-1 Zn depending on metal application rate. Total metal concentrations in field soils ranged from 3-4.8 mg kg-1 Cd, 15.0-41.0 mg kg-1 Cu, 65.0-79.5 mg kg-1 Pb and 40.0-99.0 mg kg-1 Zn. Greenhouse foliar metal concentrations were not significantly different among low and moderate metal application rates, however, foliar concentrations in high metal treatments were significantly higher than control with the exception of Pb. This followed a similar pattern as total soil metals, which varied only slightly among low and medium metal treatments, however, were significantly higher at high metal rates. No differences in foliar metal concentrations were observed in field samples. Foliar metal concentrations in either study were below toxic levels suggested by existing literature. PC production was not significant by any of the factors tested in the greenhouse study. In the field study, PC production was significantly higher in treatments without biosolids applications. In addition, no correlation was found between PC production and total soil metals or foliar metals in either the greenhouse of field study. These results indicate that foliar PC production in Douglas-fir should not be used as an indicator of metal-stress in trees exposed to similar concentrations of metals as those used in this study.
机译:这项研究旨在探讨在土壤中添加生物固体或金属盐后种植的花旗松树中土壤金属,叶面金属浓度与植物螯合素(PC)产量之间的关系。进行了温室和田间研究,以确定PC产量是否与增加的叶面金属或土壤金属浓度相关。在七种温室处理之一中,每盆种植两棵幼苗。将对照土壤(一种沙壤土森林土壤)用现代生物固体(以20 Mg ha-1或40 Mg ha-1的比率)或金属盐添加到与生物固体处理相似的金属浓度下进行修正,以代表低至中等的金属施用量。使用100%历史性生物固体和用金属盐改良的对照土壤进行的另外两种处理代表了较高的金属施用率。现场研究包括以21 Mg ha-1或16 Mg ha -1的比率用现代生物固体改良的树木,以及尚未接受生物固体应用的相同年龄的相应树木。两项研究均对土壤的总和NH4NO 3可萃取的Cd,Cu,Pb和Zn以及pH,C,N,C:N和电导率进行了测试。分析了树叶的总叶中Cd,Cu,Pb和Zn以及植物螯合素,谷胱甘肽和半胱氨酸的含量;温室土壤中的金属浓度范围为2.2-38.0 mg kg -1 Cd,11-833 mg kg-1 Cu ,49-1361 mg kg-1 Pb和33-726 mg kg-1 Zn取决于金属的施用量。田间土壤中的总金属浓度范围为3-4.8 mg kg-1 Cd,15.0-41.0 mg kg-1 Cu,65.0-79.5 mg kg-1 Pb和40.0-99.0 mg kg-1 Zn。在低和中度金属施用量之间,温室叶片金属浓度没有显着差异,但是,在高金属处理中,叶片中的铅浓度明显高于对照(Pb除外)。这与土壤金属总量相似,在中,低金属处理之间仅略有不同,但是在高金属处理量下明显更高。在野外样品中未观察到叶金属浓度的差异。两项研究中的叶面金属浓度均低于现有文献所建议的毒性水平。通过温室研究中测试的任何因素,PC产量均不显着。在现场研究中,在不使用生物固体的处理中,PC的产量明显更高。此外,在两个田间研究温室中,均未发现PC生产与土壤金属或叶面金属总量之间存在相关性。这些结果表明,道格拉斯冷杉的叶面PC产量不应用作暴露于与本研究中所使用的相似金属浓度的树木中金属胁迫的指标。

著录项

  • 作者

    Mendrey, Katrina J.;

  • 作者单位

    University of Washington.;

  • 授予单位 University of Washington.;
  • 学科 Agriculture Forestry and Wildlife.;Environmental Sciences.;Agriculture Soil Science.
  • 学位 Masters
  • 年度 2013
  • 页码 188 p.
  • 总页数 188
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:41:41

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