Abiotic Stresses in Plants

  • Luigi Sanità di Toppi
  • Barbara Pawlik-Skowrońska

Table of contents

  1. Front Matter
    Pages i-xviii
  2. A. Maggio, R. A. Bressan, C. Ruggiero, L. Xiong, S. Grillo
    Pages 53-69
  3. R. Tuberosa, S. Grillo, R. P. Ellis
    Pages 71-122
  4. E. Loreti, A. Alpi, P. Perata
    Pages 123-131
  5. L. Sanità Di Toppi, P. Gremigni, B. Pawlik-Skowrońska, M. N. V. Prasad, C. S. Cobbett
    Pages 133-156
  6. Z. Tuba, A. Raschi, G. M. Lanini, Z. Nagy, L. Helyes, D. Vodnik et al.
    Pages 157-204
  7. G. Lorenzini, C. Saitanis
    Pages 205-229
  8. Back Matter
    Pages 231-233

About this book


Much of Europe has been complaining recently of unseasonal weathe- disastrous floods in Eastern Europe, temperatures reaching over 40"C in Central Europe, no decent rain for months in parts of the Balkans, coupled with unusually long and severe frosts in winter. Indeed, wheat yields in Serbia for 2003 are expected to be reduced by over 30% because of the combination of a long frost during winter with insufficient protective snow cover, very low rainfall in the spring months and sudden high temperatures reaching over 30·C at the time of flowering. So, with this background, it is very timely that this volume on Abiotic Stresses in Plants has been put together. Each of the eight chapters focuses on a different aspect of abiotic stress, presenting reviews of recent advances in the subject. Rather than summarise the contents of each chapter, I'll focus on some of the advances in technologies presented here for elucidating the molecular, genetic and biochemical mechanisms that regulate plant responses to stresses and which also provide opportunities for improving plant performance under abiotic stresses. The last 20 years has seen a revolution in the availability of technologies for this, starting with the development of transformation technologies to study the role of an individual gene, then came molecular marker technologies to study the genetic control of stress responses, and in recent years the '-omics' (genomics, proteomics and metabolomics) have been developed to create an integrated picture of how the plant responds to a particular stress.


Pathogen adaptation carbon carbon dioxide ozone plant plants temperature

Editors and affiliations

  • Luigi Sanità di Toppi
    • 1
  • Barbara Pawlik-Skowrońska
    • 2
  1. 1.Department of Evolutionary and Functional Biology, Section of Plant BiologyUniversity of ParmaParmaItaly
  2. 2.Centre for Ecological Research, Experimental StationPolish Academy of SciencesLublinPoland

Bibliographic information

  • DOI
  • Copyright Information Springer Science+Business Media B.V. 2003
  • Publisher Name Springer, Dordrecht
  • eBook Packages Springer Book Archive
  • Print ISBN 978-90-481-6434-9
  • Online ISBN 978-94-017-0255-3
  • Buy this book on publisher's site