Gold Uptake And Tolerance In Arabidopsis

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Gold uptake and tolerance in Arabidopsis - White Rose

Abstract Gold is a precious metal with a variety of industrial uses The gold mining process is often incomplete, and discarded mine tailings contain quantities of gold …

gold uptake and tolerance in arabidopsis - recuerdosnl

A number of approaches were used to investigate the gold tolerance and uptake by Arabidopsis Gold uptake and tolerance in Arabidopsis CORE Gold uptake and tolerance in Arabidopsis By Andrew Taylor Download PDF (25 MB) Abstract Gold is a precious metal with a variety of industrial uses The gold mining process is often incomplete, and discarded mine tailings contain quantities of gold …

gold uptake and tolerance in arabidopsis - moulindemembrebe

Cadmium Uptake, Translocation, and Tolerance in AHA1OX Abstract Information on cadmium (Cd) uptake and transport is essential to understand better the physiology of Cd tolerance in plants

Title: Gold uptake and tolerance in Arabidopsis - ethosbluk

A putative Arabidopsis COPT2 knockout mutant was obtained and tested for increased gold tolerance No obvious phenotypic differences were observed when copt2-1 and wild-type seedlings were compared, suggesting that COPT2 is not involved in plant gold tolerance This work is the first investigation of the transcriptional response of plants to gold and indicates targets to further study for involvement in gold …

gold uptake and tolerance in arabidopsis - santhosanl

Manganese is essential to iron and steel production by virtue of its sulfur-fixing,…

Gold uptake and tolerance in Arabidopsis - CORE Reader

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gold uptake and tolerance in arabidopsis - langebaandashcoza

Gold uptake and tolerance in Arabidopsis Title: Gold uptake and tolerance in Arabidopsis Author: Taylor, Andrew Awarding Body: University of York Current Institution: University of York Date

NIP1;2 is a plasma membrane-localized transporter

NIP1;2 is a plasma membrane-localized transporter mediating aluminum uptake, translocation, and tolerance in Arabidopsis Yuqi Wanga, Ruihong Lia,b, Demou Lia,c

WRKY6 Transcription Factor Restricts Arsenate Uptake and

12/08/2013 · The Arabidopsis thaliana PHOSPHATE TRANSPORTER TRAFFIC FACILITATOR1 mutant, in which general Pi transporter trafficking to the plasma membrane is altered and As(V) uptake is impaired, shows remarkable As(V) tolerance (González et al, 2005)

Platinum uptake, distribution and toxicity in Arabidopsis

In this study an attempt was made to evaluate Pt(II) uptake, distribution and toxicity in Arabidopsis thaliana L plants Arabidopsis thaliana plants were hydroponically grown with increasing Pt(II) concentrations in the range of 0025–100 µM

Platinum uptake, distribution and toxicity in Arabidopsis

In this study an attempt was made to evaluate Pt(II) uptake, distribution and toxicity in Arabidopsis thaliana L plants Arabidopsis thaliana plants were hydroponically grown with increasing Pt(II) concentrations in the range of 0025–100 µM

Cadmium Uptake, Translocation, and Tolerance AHA1OX

uptake, translocation, and tolerance in Arabidopsis However, the evidence is still lacking However, the evidence is still lacking In this study, AHA1OX and its wild-type Arabidopsis have been

NIP1;2 is a plasma membrane-localized transporter

NIP1;2 is a plasma membrane-localized transporter mediating aluminum uptake, translocation, and tolerance in Arabidopsis Yuqi Wanga, Ruihong Lia,b, Demou Lia,c

WRKY6 Transcription Factor Restricts Arsenate Uptake and

12/08/2013 · The Arabidopsis thaliana PHOSPHATE TRANSPORTER TRAFFIC FACILITATOR1 mutant, in which general Pi transporter trafficking to the plasma membrane is altered and As(V) uptake is impaired, shows remarkable As(V) tolerance (González et al, 2005)

Genetic Analysis of Salt Tolerance in Arabidopsis

Based on these results, a genetic model for salt tolerance mechanisms in Arabidopsis is presented in which SOS1, SOS2, and SOS3 are postulated to encode regulatory components controlling plant K + nutrition that in turn is essential for salt tolerance

Cadmium Uptake, Translocation, and Tolerance in AHA1OX

In this study, Cd uptake, translocation, and tolerance were investigated in AHA1 (Arabidopsis plasma membrane H +-ATPase gene) overexpressed plants Exposed to 10 µM CdCl 2 , AHA1OX showed a higher root elongation, accumulated more Cd, and maintained better integrity of nucleus membrane of root tips in comparison to the control plant (WT), suggesting that AHA1OX was more Cd tolerant than WT

Investigating the Toxicity, Uptake, Nanoparticle Formation

transporters to reduce gold uptake Citation: Taylor AF, Rylott EL, Anderson CWN, Bruce NC (2014) Investigating the Toxicity, Uptake, Nanoparticle Formation and Genetic Response of Plants to Gold

Polyploids Exhibit Higher Potassium Uptake and Salinity

Polyploids Exhibit Higher Potassium Uptake and Salinity Tolerance in Arabidopsis Dai-Yin Chao, Brian Dilkes, Hongbing Luo, Alex Douglas, Elena Yakubova, Brett Lahner and David E Salt

Ectopic expression of Vicia sativa Caffeoyl-CoA O

Arabidopsis seedlings were grown on 1/2 strength MS medium or 1/2 MS medium supplemented with 70 μM CdCl 2 for two weeks Data represent mean ± SD (n = 3, the different letters indicate the difference of P value < 005 by LSD test)

Polyploids Exhibit Higher Potassium Uptake and Salinity

Chao et al (p 658, published online 25 July) identified accessions of the model plant Arabidopsis thaliana with naturally doubled genomes and found that the cytotype of the root, but not shoot, in these natural, as well as in artificially induced, polyploid plants appears to confer increased salt tolerance by regulating leaf potassium levels

GmGRP-like gene confers Al tolerance in Arabidopsis

Arabidopsis AtGRP2 or AtGRP7 could enhance seed germination and seedling growth under cold stress, and even confer freezing tolerance in Arabidopsis, as well as improve the stone yield of rice

Investigating the Toxicity, Uptake, Nanoparticle Formation

transporters to reduce gold uptake Citation: Taylor AF, Rylott EL, Anderson CWN, Bruce NC (2014) Investigating the Toxicity, Uptake, Nanoparticle Formation and Genetic Response of Plants to Gold

Publication Detail - arabidopsisorg

Title: Sulfate influx transporters in Arabidopsis thaliana are not involved in arsenate uptake but critical for tissue nutrient status and arsenate tolerance Authors El …

Genetic Analysis of Salt Tolerance in Arabidopsis

Based on these results, a genetic model for salt tolerance mechanisms in Arabidopsis is presented in which SOS1, SOS2, and SOS3 are postulated to encode regulatory components controlling plant K + nutrition that in turn is essential for salt tolerance

Ectopic expression of Vicia sativa Caffeoyl-CoA O

Arabidopsis seedlings were grown on 1/2 strength MS medium or 1/2 MS medium supplemented with 70 μM CdCl 2 for two weeks Data represent mean ± SD (n = 3, the different letters indicate the difference of P value < 005 by LSD test)

RD20, a Stress-Inducible Caleosin, Participates in

RD20, a Stress-Inducible Caleosin, Participates in Stomatal Control, Transpiration and Drought Tolerance in Arabidopsis thaliana

Cadmium uptake, translocation and tolerance in the

Arabidopsis halleri is a Zn hyperaccumulator, occurring mainly in the Galmei (zinc) floras of central and western Europe (Ernst, 1974) In hydroponic experiments, A halleri was able to accumulate 32 000 mg Zn kg −1 in shoot dry weight (DW) without suffering from phytotoxicity (Zhao et al, 2000)

Selenium tolerance of an Arabidopsis drought-resistant

Abstract We isolated the Arabidopsis drought-resistant mutant csm1-1 and cloned the CSM1 gene (previously called RCI3) which encodes a kind of peroxidase

Polyploids Exhibit Higher Potassium Uptake and Salinity

Chao et al (p 658, published online 25 July) identified accessions of the model plant Arabidopsis thaliana with naturally doubled genomes and found that the cytotype of the root, but not shoot, in these natural, as well as in artificially induced, polyploid plants appears to confer increased salt tolerance by regulating leaf potassium levels

A role for the AtMTP11 gene of Arabidopsis in manganese

In Arabidopsis halleri, two genes that encode CDF proteins co‐segregate with Zn 2+ tolerance, suggesting that they are responsible for the natural variation in Zn 2+ tolerance found in A halleri and related species (Dräger et al, 2004)

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