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Cadmium Toxicity and Tolerance in Plants

From Physiology to Remediation

Specificaties
Paperback, blz. | Engels
Elsevier Science | e druk, 2018
ISBN13: 9780128148648
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Elsevier Science e druk, 2018 9780128148648
€ 241,00
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Samenvatting

Cadmium Toxicity and Tolerance in Plants: From Physiology to Remediation presents a single research resource on the latest in cadmium toxicity and tolerance in plants. The book covers many important areas, including means of Cd reduction, from plant adaptation, including antioxidant defense, active excretion and chelation, to phytoextraction, rhizo filtration, phytodegradation, and much more. In addition, it explores important insights into the physiological and molecular mechanisms of Cd uptake and transport and presents options for improving resistance to Cd stresses. It will be ideal for both researchers and students working on cadmium pollution, plant responses and related fields of environmental contamination and toxicology.

Specificaties

ISBN13:9780128148648
Taal:Engels
Bindwijze:Paperback

Inhoudsopgave

<p>1. Cadmium toxicity and tolerance in plants – An Overview<br>2. Cadmium toxicity and tolerance in vascular plants - Micro- and phytobiome approach<br>3. Morphological and physiological responses of plants to cadmium toxicity<br>4. Adaptive and tolerance mechanisms in herbaceous plants exposed to cadmium<br>5. Cadmium-induced anatomical abnormalities in plants<br>6. Cadmium contamination in water and soil<br>7. Environmental hazards of cadmium: Past, present and future<br>8. Role of phytochelatins in cadmium stress tolerance<br>9. Cadmium-induced oxidative stress in plants<br>10. Cadmium-induced oxidative and nitrosative stress in plants<br>11. Damage and protection of the photosynthetic apparatus under cadmium stress<br>12. Cadmium-induced imbalance in nutrient and water uptake in plants<br>13. The effect of Cd stress in mineral nutrient and water uptake<br>14. Role of Salicylic acid in mitigating cadmium toxicity in plants<br>15. Mitigating cadmium toxicity in plants by phytohormones<br>16. Use of fungi in mitigating cadmium toxicity in plants<br>17. Microbe-mediated mitigation of cadmium toxicity in plants<br>18. Use of Solanum nigrum as a potential hyper-accumulator to remediate cadmium contaminated soils<br>19. Phytoremediation of cadmium contaminated soils by using Sulla coronaria inoculated by efficient and cadmium resistant plant growth promoting bacteria<br>20. Phytoremediation of cadmium polluted water/sediment by aquatic macrophytes; role of plant-induced pH changes<br>21. Phytoremediation of cadmium contaminated soils and water<br>22. Aquatic macrophytes for the remediation of cadmium contaminated sites</p>

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        Cadmium Toxicity and Tolerance in Plants