نتایج جستجو برای: hyperaccumulator plants

تعداد نتایج: 198348  

Journal: :Current Biology 2011
Ali F. El Mehdawi Colin F. Quinn Elizabeth A.H. Pilon-Smits

BACKGROUND Soil surrounding selenium (Se) hyperaccumulator plants was shown earlier to be enriched in Se, impairing the growth of Se-sensitive plant species. Because Se levels in neighbors of hyperaccumulators were higher and Se has been shown to protect plants from herbivory, we investigate here the potential facilitating effect of Se hyperaccumulators on Se-tolerant neighboring species in the...

2006
C. E. Moss

The high levels of some metals in metal hyperaccumulator plants may be transferred to insect associates. We surveyed insects collected from the South African Ni hyperaccumulator Berkheya coddii to document whole-body metal concentrations (Co, Cr, Cu, Mg, Mn, Ni, Pb, Zn). We also documented the concentrations of these metals in leaves, stems and inflorescences, finding extremely elevated levels ...

Journal: :Plant and Soil 2021

Rhizosphere processes are known to modify uptake of elements from soil, but limited information is available for hyperaccumulators. We investigated labile Ni fractions and their kinetics replenishment in the rhizospheres Ni-hyperaccumulator Odontarrhena serpyliffolia, Ni-excluder Holcus lanatus bulk soils collected at same serpentine outcrop. Labile rhizosphere soil were evaluated using convent...

Journal: :Anais da Academia Brasileira de Ciencias 2014
Naiara V Campos Tiago A R Pereira Mariana F Machado Marcelo B B Guerra Gláucia S Tolentino Josiane S Araújo Maíra Q Rezende Maria Carolina N A da Silva Carlos E G R Schaefer

The soils developed under High Altitude Rocky Complexes in Brazil are generally of very low chemical fertility, with low base saturation and high exchangeable aluminium concentration. This stressful condition imposes evolutionary pressures that lead to ecological success of plant species that are able to tolerate or accumulate high amounts of aluminium. Several analytical methods are currently ...

Journal: :Plant physiology 2009
Aleel K Grennan

Plants obtain mineral nutrients from the soil. If they are growing in soil with high levels of metals, they will take up an excess of what is needed for growth. Depending on the species, this can be detrimental to growth—or lethal—and can greatly limit the growth range of plants and the productivity of agricultural species. However, some plants have adapted to living in soil containing excess m...

Journal: :International journal of phytoremediation 2015
Ali F El Mehdawi Stormy D Lindblom Jennifer J Cappa Sirine C Fakra Elizabeth A H Pilon-Smits

Neighbors of Se hyperaccumulators Stanleya pinnata and Astragalus bisulcatus were found earlier to have elevated Se levels. Here we investigate whether Se hyperaccumulators affect Se localization and speciation in surrounding soil and neighboring plants. X-ray fluorescence mapping and X-ray absorption near-edge structure spectroscopy were used to analyze Se localization and speciation in leaves...

Journal: :Environmental pollution 2006
Maria I Silva Gonzaga Jorge A G Santos Lena Q Ma

This greenhouse experiment evaluated the influence of arsenic uptake by arsenic hyperaccumulator Pteris vittata L. and non-arsenic hyperaccumulator Nephrolepis exaltata L. on arsenic chemistry in bulk and rhizosphere soil. The plants were grown for 8 weeks in a rhizopot with a soil containing 105 mg kg(-1) arsenic. The soil arsenic was fractionated into five fractions with decreasing availabili...

Journal: :Journal of hazardous materials 2008
Jia-nv Liu Qi-xing Zhou Ting Sun Lena Q Ma Song Wang

Up to now, there was no document on ornamental plants that had been applied to phytoremediation, which can remedy contaminated environment and beautify it at the same time. Thus, the growth responses and possible phytoremediation ability of three ornamental plants selected from the previous preliminary experiments were further examined under single Cd or combined Cd-Pb stress. The results showe...

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