HYDROGEN PEROXIDE SIGNALING MECHANISMS AND CROSSTALK IN PLANT DEVELOPMENT AND STRESS RESPONSES (HB 2025)
Idioma: inglés
Editorial: TAYLOR & FRANCIS NP, 2025
- Tapa dura
- Nuevo

Librería: UK BOOKS STORE, London, London, Reino UnidoUK BOOKS STORE
Vendedor de AbeBooks desde el 11 de marzo de 2024
Condición: Nuevo
EUR 321,09
Cantidad disponible: 1 disponible
Añadir al carritoDescripción del artículo del vendedor
Brand New ! Fast Delivery This is an International Edition and ship within 24-48 hours. Deliver by FedEx and Dhl, & Aramex, UPS, & USPS and we do accept APO and PO BOX Addresses. Order can be delivered worldwide within 6-10 days and we do have flat rate for up to 2LB. Extra shipping charges will be requested if the Book weight is more than 5 LB. This Item May be shipped from India, United states & United Kingdom. Depending on your location and availability.
N° de ref. del artículo Cvs 9781032610443
- Título
- HYDROGEN PEROXIDE SIGNALING MECHANISMS AND CROSSTALK IN PLANT DEVELOPMENT AND STRESS RESPONSES (HB 2025)
- Autor
- ALAM KHAN MOHD TANVEER
- Editorial
- TAYLOR & FRANCIS NP
- Año de publicación
- 2025
- Estado
- New
- Encuadernación
- Encuadernación de tapa dura
- Idioma
- inglés
- ISBN 10
- 1032610441
- ISBN 13
- 9781032610443
- Edición
- Edición Internacional
Hydrogen peroxide (H2O2) is recognized as a crucial signaling molecule that mediates physiological and biochemical processes in plants, regulating various development and stress responses. Hydrogen Peroxide: Signalling Mechanisms and Crosstalk in Plant Development and Stress Responses presents a comprehensive overview of hydrogen peroxide’s modes of action in plants demonstrating the important role played in plant stress signaling and communication. It introduces key topics in H2O2 research such as plant signaling, molecular responses, and interaction with other hormones.
Features
- Discusses experiments interrelated to H2O2 signaling pathway in plants under various environmental conditions
- Addresses important concerns in H2O2 research from a wide range of organisms, including plants and prokaryotes such as bacteria and archaea
- Collects, summarizes, and presents developments in plant signaling and communication
- Aids scientists and breeders in developing strategies to enhance plant growth and stress tolerance
Environmental stress is destructively disturbing plant growth and efficiency resulting in concerns to improve food crop yield, and H2O2 has immense field implications as it is vital in regulating plant growth and stress responses. Hydrogen Peroxide: Signalling Mechanisms and Crosstalk in Plant Development and Stress Responses is an invaluable resource for researchers and scientists to use as a guide to conduct studies on environmental conditions of the plant hydrogen peroxide signaling systems.
“Sinopsis” puede pertenecer a otra edición de este título.
Acerca del autor
Dr. Mohd Tanveer Alam Khan is a Leibniz-DAAD Post-doctoral Fellow at the Leibniz Institute of Plant Genetics and Crop Plant Research (IPK) in Gatersleben, Germany. His research focuses on understanding the integrative analysis of low-temperature stress defense responses in Arabidopsis thaliana, particularly in relation to brassinosteroids signaling and metabolite patterns. He earned his BSc, MSc, and PhD from the Department of Botany at Aligarh Muslim University in Aligarh, India. Prior to joining the Leibniz Institute, Dr. Khan worked as a post-doctoral fellow at the National Key Laboratory of Crop Genetic Improvement at Huazhong Agricultural University in Wuhan, P.R. China. His research aims to dissect the mechanisms of abiotic stress tolerance in plants through engineered signaling, proteomics, metabolomics, and biochemical traits, both in the presence and absence of phytohormones. Over his twelve years as a researcher, Dr. Khan has published more than 34 research articles in internationally reputed journals, with a total impact factor exceeding 50 and 1374 citations. He holds an h-index of 19 and has contributed six book chapters to editions published by Springer. He has received various research fellowships during his PhD and post-doctoral tenure, including the CST-UP-RA, SERB-NPDF, and international PDF at Huazhong Agricultural University, Wuhan, China, and the Leibniz Institute of Plant Genetics and Crop Plant Research (IPK) in Gatersleben, Germany.
Dr. Taiba Saeed is Assistant Professor in Department of Biosciences at Integral University, Lucknow, India. Dr. Saeed is a young and active academician and researcher working in the field of biotechnology, plant physiology and molecular sciences. She earned her Ph.D. degree from the Aligarh Muslim University, Aligarh, India. She extensively studied plant tissues culture, medicinal plants, plant signaling pathways, proteomics and metabolomics. After obtaining her Ph.D. degree, Dr. Saeed joined Research Associate position at Biotech Park, Lucknow under DBT sponsored partnership project with IBSD, Imphal for a period of one year. Later, she moved to Germany to work as a visiting scientist at Leibniz Institute of Plant Genetics and Crop Plant Research (IPK), Germany. She has published more than 18 research articles in world-renown journals. She has been conferred several research fellowships during her Ph.D. and post Ph.D. tenure such as CST-UP-RA, DBT-RA and international PDF in Leibniz Institute of Plant Genetics and Crop Plant Research (IPK), Gatersleben, Germany.
Dr. Aqeel Ahmad is a young and energetic researcher, working in the field of stress physiology. He earned his doctoral degree (Ph.D.) from the University of the Punjab, Lahore, Pakistan, and performed his research work at the University of Florida, USA. Then, he joined Huazhong Agricultural University as a Postdoctoral Fellow, and now he is serving Guangdong Academy of Agricultural Sciences as Postdoctoral Fellow. He extensively studied plant defense responses (i.e., defense genes, hormones, PR proteins, and biochemicals) against the plant pathogens. His core skills are proteomics (profiling, characterization, and supramolecular kinetics) and metabolomics, by using which he elucidated cell signaling to understand plant defenses, based on oxidative enzymes of the phenylpropanoid pathway. Transcriptomics further strengthened his scientific findings concerning cell responses towards pathogenic invasions and abiotic stresses. He has devised bioactive metabolites (e.g., benzimidazole and bezenedicarboxylic acid) to control plant pathogens and to augment the nutritional quality of our plant-based foods. He has developed techniques to make edible plants tolerant against environmental stressors by reharmonizing their osmoregulatory systems, oxidative machinery, and physiological responses. He has published 59 research manuscripts in world-renown journals and won three research grants and one research honor award at such a young age of 32 years. A wide spectrum of publication platforms is evident from his scientific articles including the leading journals of Food Chemistry, and Chemosphere, etc. His editorial activities in multiple Impact Factor journals have made him a distinctive and progressive figure in the researchers’ pool.
Qazi Fariduddin is Professor of Botany at Aligarh Muslim University, Aligarh, India where he has been serving as faculty since 2006. He has been extensively working in the field of agricultural biotechnology to explore the abiotic stress tolerance mechanism in plants through physiological and molecular approaches. The findings of his work have revealed that brassinosteroids (BRs) and salicylic acid improved the yield and quality of plants under low temperatures, salt, water and heavy metal stress and could be exploited as a farmer friendly tool to overcome the menace of crop losses due to various abiotic stresses. Moreover, his findings have also revealed the potential role of hydrogen peroxide and polyamines in conferring tolerance to abiotic stresses in crop plants. His lab is extensively using proteomic approaches to reveal the novel pathway protein expressed under various abiotic stresses in plants. He had Visited Göttingen University, Göttingen, Germany for six months under BOYSCAST Fellowship and conducted experiments related to the topic “Molecular studies of salt tolerance in Arabidopsis thaliana". He has visited Michigan State University, Michigan, USA on an International Research Project with a specific objective to generate information on "Host target modification as a strategy to counter pathogen hijacking of the jasmonate hormone receptor" (Published in PNAS, 2015). He has published more than 80 research papers in the international journal of high impact factor such as Proceeding of National Academy of Sciences, USA, Food Chemistry, Plant Physiology and Biochemistry, Chemosphere, Journal of Integrative Plant Biology, Environmental and Experimental Botany, Ecotoxicology and Environmental Safety, and many more with total citation of 4925 and h-index of 32. He had presented his findings in various conferences held in USA, Germany, China, and Malaysia etc. He has successfully completed various funded research project from reputed funding agencies. He has also supervised six doctoral students and three MPhil students and a number of Master students and presently five students are enrolled under his supervision for PhD degree.
Dr. Mohammad Yusuf is a Lecturer in the Department of Biology at United Arab Emirates University, Al Ain, UAE. He earned his Ph.D. in Plant Physiology from the Department of Botany at Aligarh Muslim University in India. Dr. Yusuf has received several prestigious awards and fellowships, including the Dr. D.S. Kothari Postdoctoral Fellowship from the Government of India and the CST-UP Young Scientist Award from the State Government of Uttar Pradesh, India. He worked as a SERB-DST Young Scientist on a Government of India funded project. He has also presented his work at Huazhong Agricultural University in Wuhan, China, and the Gordon Research Conference in Switzerland. In addition to editing three books with international publishers, including Springer Nature, Dr. Yusuf has co-authored several book chapters and has published over 60 research papers in peer-reviewed international journals. His work has garnered more than 5000 Google Scholar Citations with a 37 h-index. Dr. Yusuf's research focuses on exploring phytohormones-mediated abiotic stress tolerance mechanisms in plants through physiological, proteomic, and molecular studies, specifically on proline metabolism.
“Acerca de” puede pertenecer a otra edición de este título.
UK BOOKS STORE
London, London, Reino Unido
Vendedor de AbeBooks desde el 11 de marzo de 2024
Tarifas de envío de Reino Unido a Estados Unidos de America
| Artículo | De 5 a 10 días hábiles | De 4 a 7 días hábiles |
|---|---|---|
| Primer artículo | EUR 11,63 | EUR 17,46 |
Métodos de pago
Información empresarial del vendedor
URBAN BOOK LIMITED
71-75 Shelton Street, Covent Garden
London, Reino Unido WC2H 9JQ
Derecho al desistimiento
Si es un consumidor, puede rescindir el contrato de acuerdo con lo siguiente. Por consumidor se entiende cualquier persona física que actúe con fines ajenos a su actividad comercial, empresarial, oficio o profesión.
Información sobre el derecho de desistimiento
Derecho legal de desistimiento
Tiene derecho a rescindir este contrato en un plazo de 14 días sin dar ningún motivo.
El periodo de desistimiento vencerá a los 14 días desde que usted, o un tercero que no sea el transportista e indicado por usted, adquiera la posesión física del último bien o del último lote o pieza.
Para ejercer el derecho de desistimiento, complete de forma electrónica y envíe una declaración clara en nuestro sitio web, desde "Mis compras" en "Mi cuenta". Le enviaremos sin demora un acuse de recibo de dicho desistimiento a través de un soporte duradero (por ejemplo, por correo electrónico).
Para cumplir con el plazo de desistimiento, basta con que envíe su comunicación relativa al ejercicio del derecho de desistimiento antes de que venza el periodo de desistimiento.
Efectos del desistimiento
Si rescinde este contrato, le reembolsaremos todos los pagos que hayamos recibido de usted, incluidos los gastos de envío (excepto los gastos adicionales que surjan si elige un tipo de envío que no sea el tipo de envío estándar más económico que ofrecemos).
Podemos hacer una deducción del reembolso por la pérdida de valor de cualquier bien suministrado, si la pérdida es el resultado de una manipulación innecesaria por su parte.
Efectuaremos el reembolso sin demoras indebidas y, a más tardar, 14 días después de que se nos informe de su decisión de rescindir este contrato.
Efectuaremos el reembolso utilizando el mismo medio de pago que utilizó para la transacción inicial, a menos que haya acordado expresamente lo contrario; en cualquier caso, no incurrirá en ningún cargo como resultado de dicho reembolso.
Podremos retener el reembolso hasta que hayamos recibido los bienes o hasta que nos haya presentado una prueba de que los ha devuelto, lo que ocurra primero.
Deberá devolver los bienes o entregarlos a UK BOOKS STORE, London, United Kingdom, sin demoras indebidas y, en cualquier caso, en un plazo máximo de 14 días a partir del día en que nos comunique su desistimiento del presente contrato. El plazo se cumple si devuelve la mercancía antes de que venza el periodo de 14 días. Tendrá que asumir los gastos directos de devolución de los bienes. Usted solo es responsable de la disminución del valor de los bienes como resultado de una manipulación distinta a la necesaria para establecer la naturaleza, las características y el funcionamiento de los bienes.
Excepciones al derecho de desistimiento
El derecho de desistimiento no se aplica a lo siguiente:
- La entrega de periódicos, diarios o revistas, con la excepción de los contratos de suscripción; y
- El suministro de contenido digital que no se proporcione en un soporte tangible (por ejemplo, en un CD o DVD) si, al hacer el pedido, aceptó que podíamos empezar a entregarlo y que no podría desistir una vez iniciada la entrega.