Microbial Arsenic Resistance: A New Perspective of Arsenic Remediation: Incidence of arsenite oxidase and arsenate reductase among bacteria isolated from arsenic contaminated environment
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Microbial Arsenic Resistance: A New Perspective of Arsenic Remediation
DE PB NW
ISBN: 9783659121302 bzw. 3659121304, in Deutsch, LAP LAMBERT Academic Publishing, Taschenbuch, neu.
Von Händler/Antiquariat, BuySomeBooks [52360437], Las Vegas, NV, U.S.A.
Paperback. 136 pages. Dimensions: 8.7in. x 5.9in. x 0.3in.Arsenic compounds have been abundant at near toxic level in the environment since the origin of life. In response, microbes have evolved mechanism for arsenic resistance and produce enzyme that oxidizes As(III) to As(V) or reduces As (V) to As(III). Living cells specially microbes carry out redox and covalent bond chemistry and are important players in the arsenic geocycle. Bacteria overcome the toxic effects of arsenite and arsenate by decreasing the intracellular concentration of these ions either by preventing intake or actively exporting the arsenicals or by chemical modification to reactively less toxic form. Now it is generally believed that arsenite oxidizing bacteria can harbor both of the enzyme, i. e. arsenite oxidase as well as arsenate reductase. Occurrences of the both of enzyme system in isolate have been found analyzing whole genome sequence of arsenic resistant bacteria. If expression of this enzyme is differential, and can be controlled physically, it would give us a entirely new idea and a different perspective of bioremediation of arsenic using whole cell bacterial mass. This item ships from multiple locations. Your book may arrive from Roseburg,OR, La Vergne,TN.
Paperback. 136 pages. Dimensions: 8.7in. x 5.9in. x 0.3in.Arsenic compounds have been abundant at near toxic level in the environment since the origin of life. In response, microbes have evolved mechanism for arsenic resistance and produce enzyme that oxidizes As(III) to As(V) or reduces As (V) to As(III). Living cells specially microbes carry out redox and covalent bond chemistry and are important players in the arsenic geocycle. Bacteria overcome the toxic effects of arsenite and arsenate by decreasing the intracellular concentration of these ions either by preventing intake or actively exporting the arsenicals or by chemical modification to reactively less toxic form. Now it is generally believed that arsenite oxidizing bacteria can harbor both of the enzyme, i. e. arsenite oxidase as well as arsenate reductase. Occurrences of the both of enzyme system in isolate have been found analyzing whole genome sequence of arsenic resistant bacteria. If expression of this enzyme is differential, and can be controlled physically, it would give us a entirely new idea and a different perspective of bioremediation of arsenic using whole cell bacterial mass. This item ships from multiple locations. Your book may arrive from Roseburg,OR, La Vergne,TN.
2
Microbial Arsenic Resistance: A New Perspective of Arsenic Remediation: Incidence of arsenite oxidase and arsenate reductase among bacteria isolated from arsenic contaminated environment (2012)
EN PB US
ISBN: 9783659121302 bzw. 3659121304, in Englisch, 136 Seiten, LAP LAMBERT Academic Publishing, Taschenbuch, gebraucht.
Neu ab: $68.00 (6 Angebote)
Gebraucht ab: $82.06 (2 Angebote)
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Lieferung aus: Vereinigte Staaten von Amerika, Usually ships in 1-2 business days.
Von Händler/Antiquariat, super_star_seller.
Arsenic compounds have been abundant at near toxic level in the environment since the origin of life. In response, microbes have evolved mechanism for arsenic resistance and produce enzyme that oxidizes As(III) to As(V) or reduces As (V) to As(III). Living cells specially microbes carry out redox and covalent bond chemistry and are important players in the arsenic geocycle. Bacteria overcome the toxic effects of arsenite and arsenate by decreasing the intracellular concentration of these ions either by preventing intake or actively exporting the arsenicals or by chemical modification to reactively less toxic form. Now it is generally believed that arsenite oxidizing bacteria can harbor both of the enzyme, i.e. arsenite oxidase as well as arsenate reductase. Occurrences of the both of enzyme system in isolate have been found analyzing whole genome sequence of arsenic resistant bacteria. If expression of this enzyme is differential, and can be controlled physically, it would give us a entirely new idea and a different perspective of bioremediation of arsenic using whole cell bacterial mass. Paperback, Label: LAP LAMBERT Academic Publishing, LAP LAMBERT Academic Publishing, Produktgruppe: Book, Publiziert: 2012-08-01, Studio: LAP LAMBERT Academic Publishing.
Von Händler/Antiquariat, super_star_seller.
Arsenic compounds have been abundant at near toxic level in the environment since the origin of life. In response, microbes have evolved mechanism for arsenic resistance and produce enzyme that oxidizes As(III) to As(V) or reduces As (V) to As(III). Living cells specially microbes carry out redox and covalent bond chemistry and are important players in the arsenic geocycle. Bacteria overcome the toxic effects of arsenite and arsenate by decreasing the intracellular concentration of these ions either by preventing intake or actively exporting the arsenicals or by chemical modification to reactively less toxic form. Now it is generally believed that arsenite oxidizing bacteria can harbor both of the enzyme, i.e. arsenite oxidase as well as arsenate reductase. Occurrences of the both of enzyme system in isolate have been found analyzing whole genome sequence of arsenic resistant bacteria. If expression of this enzyme is differential, and can be controlled physically, it would give us a entirely new idea and a different perspective of bioremediation of arsenic using whole cell bacterial mass. Paperback, Label: LAP LAMBERT Academic Publishing, LAP LAMBERT Academic Publishing, Produktgruppe: Book, Publiziert: 2012-08-01, Studio: LAP LAMBERT Academic Publishing.
3
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Microbial Arsenic Resistance: A New Perspective of Arsenic Remediation (2014)
DE PB NW
ISBN: 9783659121302 bzw. 3659121304, in Deutsch, LAP LAMBERT ACADEMIC PUB 01/11/2014, Taschenbuch, neu.
Von Händler/Antiquariat, Paperbackshop-US [8408184], Secaucus, NJ, U.S.A.
New Book. This item is printed on demand. Shipped from US This item is printed on demand.
New Book. This item is printed on demand. Shipped from US This item is printed on demand.
4
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Microbial Arsenic Resistance: A New Perspective of Arsenic Remediation (2012)
DE PB NW RP
ISBN: 9783659121302 bzw. 3659121304, in Deutsch, LAP Lambert Academic Publishing, Taschenbuch, neu, Nachdruck.
Von Händler/Antiquariat, English-Book-Service - A Fine Choice [1048135], Waldshut-Tiengen, Germany.
This item is printed on demand for shipment within 3 working days.
This item is printed on demand for shipment within 3 working days.
5
NEW Microbial Arsenic Resistance: A New Perspective of Arsenic Remediation by Ku
EN NW
ISBN: 9783659121302 bzw. 3659121304, in Englisch, neu.
Lieferung aus: Vereinigte Staaten von Amerika, Lieferart: Free, Lieferung: Weltweit, Artikelstandort: USA, Versandkostenfrei.
Von Händler/Antiquariat, grandeagleretail.
Festpreisangebot.
Von Händler/Antiquariat, grandeagleretail.
Festpreisangebot.
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