Rhizosphere bacteria affect growth and metal uptake of heavy metal accumulating willows

被引:17
|
作者
Melanie Kuffner
Markus Puschenreiter
Gerlinde Wieshammer
Markus Gorfer
Angela Sessitsch
机构
[1] Austrian Research Centers GmbH,Department of Bioresources
[2] University of Natural Resources and Applied Life Sciences,Department of Forest and Soil Sciences
[3] Vienna,Fungal Genomics Unit
[4] University of Natural Resources and Applied Life Sciences,undefined
来源
Plant and Soil | 2008年 / 304卷
关键词
Metal mobilization; Plant growth promotion; Phytoextraction; Rhizosphere bacteria; Siderophores; ACC deaminase; IAA;
D O I
暂无
中图分类号
学科分类号
摘要
A variety of plants growing on metalliferous soils accumulate metals in their harvestable parts and have the potential to be used for phytoremediation of heavy metal polluted land. There is increasing evidence that rhizosphere bacteria contribute to the metal extraction process, but the mechanisms of this plant–microbe interaction are not yet understood. In this study ten rhizosphere isolates obtained from heavy metal accumulating willows affiliating with Pseudomonas, Janthinobacterium, Serratia, Flavobacterium, Streptomyces and Agromyces were analysed for their effect on plant growth, Zn and Cd uptake. In plate assays Zn, Cd and Pb resistances and the ability of the bacteria to produce indole-3-acetic acid (IAA), 1-amino-cyclopropane-1-carboxylic acid deaminase (ACC deaminase) and siderophores were determined. The isolates showed resistance to high Zn concentrations, indicating an adaptation to high concentrations of mobile Zn in the rhizosphere of Salix caprea. Four siderophore producers, two IAA producers and one strain producing both siderophores and IAA were identified. None of the analysed strains produced ACC deaminase. Metal mobilization by bacterial metabolites was assessed by extracting Zn and Cd from soil with supernatants of liquid cultures. Strain Agromyces AR33 almost doubled Zn and Cd extractability, probably by the relase of Zn and Cd specific ligands. The remaining strains, immobilized both metals. When Salix caprea plantlets were grown in γ-sterilized, Zn/Cd/Pb contaminated soil and inoculated with the Zn resistant isolates, Streptomyces AR17 enhanced Zn and Cd uptake. Agromyces AR33 tendentiously promoted plant growth and thereby increased the total amount of Zn and Cd extracted from soil. The IAA producing strains did not affect plant growth, and the siderophore producers did not enhance Zn and Cd accumulation. Apparently other mechanisms than the production of IAA, ACC deaminase and siderophores were involved in the observed plant–microbe interactions.
引用
收藏
页码:35 / 44
页数:9
相关论文
共 50 条
  • [41] Interaction of Cd/Zn hyperaccumulating plant (Sedum alfredii) and rhizosphere bacteria on metal uptake and removal of phenanthrene
    Li, W. C.
    Wong, M. H.
    JOURNAL OF HAZARDOUS MATERIALS, 2012, 209 : 421 - 433
  • [42] Isolation of Heavy Metal Immobilizing and Plant Growth-Promoting Bacteria and Its Effects on Reducing Heavy Metal Accumulation in Wheat
    Han H.
    Wang X.-Y.
    Cai H.
    Yao L.-G.
    Cai Q.-D.
    Wang Y.-X.
    Chen Z.-J.
    Huanjing Kexue/Environmental Science, 2019, 40 (07): : 3339 - 3346
  • [43] Effect of pH on growth and precipitation of lead-resistant bacteria - a strategy for removal of bacteria from the waste water after heavy metal uptake
    Shakoori, FR
    Chodary, FS
    Shakoori, AR
    PROCEEDINGS OF THE PAKISTAN CONGRESS OF ZOOLOGY, VOL 22, 2002, 2002, 22 : 205 - 221
  • [44] Heavy metal uptake and chemical changes in the rhizosphere of Thlaspi caerulescens and Thlaspi ochroleucum grown in contaminated soils
    S.P. McGrath
    Z.G. Shen
    F.J. Zhao
    Plant and Soil, 1997, 188 : 153 - 159
  • [45] Naturally selected dominant weeds as heavy metal accumulators and excluders assisted by rhizosphere bacteria in a mining area
    Wang, Jiaxin
    Xiong, Yue
    Zhang, Jiaen
    Lu, Xuening
    Wei, Guangchang
    CHEMOSPHERE, 2020, 243 (243)
  • [46] Heavy metal uptake and chemical changes in the rhizosphere of Thlaspi caerulescens and Thlaspi ochroleucum grown in contaminated soils
    McGrath, SP
    Shen, ZG
    Zhao, FJ
    PLANT AND SOIL, 1997, 188 (01) : 153 - 159
  • [47] Community Structure of Heavy Metal Immobilized Bacteria in the Lettuce (Lactuca sativa L.) Rhizosphere in Soil Polluted by Heavy Metals and Its Effects on Reducing Heavy Metal Accumulation in Lettuce
    Wang T.-J.
    Su N.-N.
    Lei P.
    Qiu M.-Y.
    Chen Z.-J.
    Yao L.-G.
    Han H.
    Huanjing Kexue/Environmental Science, 2019, 40 (11): : 5133 - 5141
  • [48] Bacteria as workers in the living factory: metal-accumulating bacteria and their potential for materials science
    Klaus-Joerger, T
    Joerger, R
    Olsson, E
    Granqvist, CG
    TRENDS IN BIOTECHNOLOGY, 2001, 19 (01) : 15 - 20
  • [49] GROWTH, PROTEIN EXPRESSION AND HEAVY METAL UPTAKE BY TOBACCO UNDER HEAVY METALS CONTAMINATED SOIL
    Shafiq, Mohammad
    Bakht, Jehan
    Iqbal, Arshad
    Shaft, Mohammad
    PAKISTAN JOURNAL OF BOTANY, 2020, 52 (05) : 1569 - 1576
  • [50] COLONIZATION AND MODULATION OF HOST GROWTH AND METAL UPTAKE BY ENDOPHYTIC BACTERIA OF SEDUM ALFREDII
    Zhang, Xincheng
    Lin, Li
    Zhu, Zhiqiang
    Yang, Xiaoe
    Wang, Yuyan
    An, Qianli
    INTERNATIONAL JOURNAL OF PHYTOREMEDIATION, 2013, 15 (01) : 51 - 64