Selenium uptake, transformation and inter-element interactions by selected wildlife plant species after foliar selenate application
-
Add time:09/04/2019 Source:sciencedirect.com
Plants are characterized by differing capabilities to accumulate selenium. A model small-scale field experiment was set up to investigate the selenium (Se) uptake by twelve different plant species growing at an uncultivated meadow, as well as the effect of Se foliar application on the uptake of essential elements for plants calcium (Ca), copper (Cu), iron (Fe), potassium (K), magnesium (Mg), manganese (Mn), phosphorus (P), sulfur (S), and zinc (Zn). Foliar application of sodium selenate (Na2SeO4) was carried out in two rates (25 and 50 g Se/ha), and an untreated control variant was included and the element contents in the aboveground biomass were determined. The results showed that selenium levels actually increased due to application of selenium where confirmed the hypothesis, that foliar application of selenium will lead to an increase of this element content, depending on the plant species. The highest Se contents were determined in Veronica chamaedrys (1.052 ± 0.024 mg Se/kg), Stellaria holostea (0.775 ± 0.064 mg Se/kg), Gallium aparine (0.745 ± 0.027 mg Se/kg) and Urtica dioica (0.720 ± 0.011 mg Se/kg) biomass whereas Cirsium arvense and Carex vesicaria showed the lowest Se uptake. No symptoms of potential Se phytotoxicity were observed at these concentration levels. Among the selenium compounds, selenate and selenomethionine (SeMet) were the predominant ones regardless of the plant species documenting relative low ability of plants to transform the applied selenate to the organoselenium compounds. Regarding the minor organoselenium compounds such as selenocystine (SeCys2) and Se-methylselenocysteine (Se-MeSeCys) the results suggested differences in Se transformation between monocotyledoneous and dicotyledoneous plants where Se-MeSeCys exceeded SeCys2 in monocotyledoneous and opposite pattern was observed in dicotyledoneous plants. These findings as well as the ambiguous changes in other essential element contents in the plant biomass needs to be investigated in further research.
We also recommend Trading Suppliers and Manufacturers of Zinc selenate (cas 13597-54-1). Pls Click Website Link as below: cas 13597-54-1 suppliers
Prev:Difference of selenium uptake and distribution in the plant and selenium form in the grains of rice with foliar spray of selenite or selenate at different stages
Next:The field of solid solutions in ternary system of synthetic apatite-type alkaline earth element-yttrium-silicate oxybritholite phases of the composition: AEEδY10−δ[SiO4]6O3−0.5δ, where AEE=Ca, Sr and Ba) - 【Back】【Close 】【Print】【Add to favorite 】
- Related Information
- Difference of selenium uptake and distribution in the plant and selenium form in the grains of rice with foliar spray of selenite or selenate at different stages09/03/2019
- Syntheses, characterizations and crystal structures of three new organically templated or organically bonded Zinc selenate (cas 13597-54-1)s09/02/2019
- Regular ArticlesSelenate sensitivity of a laeA mutant is restored by overexpression of the bZIP protein MetR in Aspergillus fumigatus09/01/2019
- Simultaneous selenate reduction and denitrification by a consortium of enriched mine site bacteria08/31/2019
- Regular articleContinuous biological removal of selenate in the presence of cadmium and zinc in UASB reactors at psychrophilic and mesophilic conditions08/30/2019
- Bioreduction of selenate in an anaerobic biotrickling filter using methanol as electron donor08/29/2019
- Research articleRemoval of selenate from brine using anaerobic bacteria and zero valent iron08/28/2019
- Original research articleA systematic approach to physico-chemical analysis of tris (thiourea) Zinc selenate (cas 13597-54-1) — A semi-organic nonlinear optical crystal08/27/2019
- Selenate precursor for synthesis of CZTSSe: Performance as thinfilm solar cell08/26/2019
-
Health and Chemical more >


